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CURRICULUM VITAE Eloy Ay ´ on–Beato (Dated: Jan 2008) PERSONAL DATA Date of birth: December 1, 1969 Age: 38 years Place of birth: Guanabacoa, Ciudad Habana, CUBA Sex: Male Home address: Corregidora 127, Fracc. Los Angeles, Xalapa, Veracruz, MEXICO. Permanent address: Departamento de F´ ısica, Facultad de F´ ısica e Inteligencia Artificial (FFIA), Universidad Veracruzana (UV), Xalapa, Veracruz, MEXICO. Ph: (52) 228 8172957 Fax: (52) 228 8172855 e–mail: [email protected] BACKGROUND SUMMARY Research interests in: Relativity, Gravitation, and Geometrical Methods in Physics. Ex- perience in: developing “no–hair” theorems for nonlinear fields in black hole physics, the search of regular exact black hole solutions, lower and higher dimensional gravity, and sev- eral related subjects. High expertise in the intensive use of algebraic computation technics. Related contributions published in: Phys. Rev. Lett., Phys. Rev. D, Phy. Lett. B, Class. Quant. Grav., Gen. Rel. Gravit., Annals. Phys., and Int. J. Mod. Phys. A. More than 230 citations (without self-citations) including two TOPCITE papers at SPIRES Database. EDUCATION Undergraduate studies: B.Sc., Faculty of Physics, Havana University (UH), CUBA, 1993. Thesis: Asymptotic Behavior of Scalar Fields Coupled to Gravity. Advisor: Dr. Alejandro Cabo (ICIMAF, CUBA). Graduate studies: Ph.D., Department of Physics, CINVESTAV–IPN, MEXICO, 2000. Thesis: Black Holes: Outside and Inside. 1 Advisor: Dr. Alberto Garc´ ıa (CINVESTAV, MEXICO). Postdoctoral research: Theoretical Physics Lab., CECS, CHILE, 2003-2007 Research: Dr. Jorge Zanelli (CECS, CHILE). 1 Arturo Rosenblueth Prize 2000. Weizmann Prize 2001.

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Page 1: Eloy Ayon{Beato¶ - CINVESTAVmerced/CVeloy.pdf · 2008-02-18 · 5 PRIZES - \Arturo Rosenblueth Prize 2000" to the best Ph.D. Thesis from CINVESTAV in the area of Exact and Natural

CURRICULUM VITAE

Eloy Ayon–Beato(Dated: Jan 2008)

PERSONAL DATA

Date of birth: December 1, 1969 Age: 38 yearsPlace of birth: Guanabacoa, Ciudad Habana, CUBA Sex: MaleHome address: Corregidora 127, Fracc. Los Angeles, Xalapa, Veracruz, MEXICO.Permanent address: Departamento de Fısica, Facultad de Fısica e Inteligencia Artificial(FFIA), Universidad Veracruzana (UV), Xalapa, Veracruz, MEXICO.Ph: (52) 228 8172957 Fax: (52) 228 8172855 e–mail: [email protected]

BACKGROUND SUMMARY

Research interests in: Relativity, Gravitation, and Geometrical Methods in Physics. Ex-perience in: developing “no–hair” theorems for nonlinear fields in black hole physics, thesearch of regular exact black hole solutions, lower and higher dimensional gravity, and sev-eral related subjects. High expertise in the intensive use of algebraic computation technics.Related contributions published in: Phys. Rev. Lett., Phys. Rev. D, Phy. Lett. B, Class.Quant. Grav., Gen. Rel. Gravit., Annals. Phys., and Int. J. Mod. Phys. A. More than 230citations (without self-citations) including two TOPCITE papers at SPIRES Database.

EDUCATION

Undergraduate studies: B.Sc., Faculty of Physics, Havana University (UH), CUBA, 1993.

Thesis: Asymptotic Behavior of Scalar Fields Coupled to Gravity.

Advisor: Dr. Alejandro Cabo (ICIMAF, CUBA).

Graduate studies: Ph.D., Department of Physics, CINVESTAV–IPN, MEXICO, 2000.

Thesis: Black Holes: Outside and Inside.1

Advisor: Dr. Alberto Garcıa (CINVESTAV, MEXICO).

Postdoctoral research: Theoretical Physics Lab., CECS, CHILE, 2003-2007

Research: Dr. Jorge Zanelli (CECS, CHILE).

1 Arturo Rosenblueth Prize 2000.Weizmann Prize 2001.

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PROFESSIONAL EXPERIENCE

Full Professor

Departamento de Fısica, FFIA, Universidad Veracruzana, Xalapa, MEXICO.

from 2007 http://www.uv.mx/dfisica

Post–Doctoral Position

Laboratorio de Fısica Teorica, Centro de Estudios Cientıficos (CECS), Valdivia, CHILE.

2003–2007 http://www.cecs.cl

- Black hole physics.

- Lower and higher dimensional Gravity.

- Exact gravitational waves.

Visiting Researcher

Centro de Estudios Cientıficos (CECS), Valdivia, CHILE.

2002 http://www.cecs.cl

Departamento de Fısica, Universidad del Bio Bio, Concepcion, CHILE.

2002 http://www.ubiobio.cl

Departamento de Fısica, Universidad de Santiago de Chile (USACH), Santiago, CHILE.

2002 http://fisica.usach.cl

Instituto de Fısica, Universidad Catolica de Valparaiso (UCV), Valparaiso, CHILE.

2002 http://fis.ucv.cl

Centro de Investigacion y Estudios Avanzados (CINVESTAV–IPN), Mexico DF, MEXICO.

2000–2001 http://www.fis.cinvestav.mx

- Black hole physics: “no–hair” theorems in alternative theories.

- Reconstruction of the inflationary potential.

- (2+1)–Gravity.

Ph.D. Student

Centro de Investigacion y Estudios Avanzados (CINVESTAV–IPN), Mexico DF, MEXICO.

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1998–2000 http://www.fis.cinvestav.mx

- Black hole physics, the behavior of non–linear fields in presence of black holes: searchof new “no–hair” theorems, and

- Search of regular exact black hole solutions to Einstein equations.

Visiting Scientist

Instituto de Ciencias Nucleares (ICN–UNAM), Mexico DF, MEXICO.

1997 http://www.nuclecu.unam.mx

International Centre for Theoretical Physics (ICTP), Trieste, ITALY.

1995, 96 http://www.ictp.it

Instituto de Fısica de la Universidad de Guanajuato (IFUG), Leon, Gto., MEXICO.

1995 http://www.ifug.ugto.mx

Centro de Investigacion y Estudios Avanzados (CINVESTAV–IPN), Mexico DF, MEXICO.

1995, 96–97 http://www.fis.cinvestav.mx

Junior Researcher

Center of Mathematics and Theoretical Physics (ICIMAF), Havana, CUBA.

1993–1998 http://www.icmf.inf.cu

- Development of asymptotic properties of scalar fields coupled to gravity, under sphericalsymmetry.

- Black hole physics, the classical behavior of non–linear fields with black holes: searchof new “no–hair” theorems.

TEACHING EXPERIENCE

Undergraduate:

- Quantum Mechanics, UV (2008).

- Symmetries Applied to Differential Equations, UV (2008).

- Basic General Relativity, UV (2007).

- Statistical Mechanics II, UV (2007).

- Lab. Sessions, UV (2007).

- Teaching Assistant in Electromagnetism, CINVESTAV (1998).

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- Teaching Assistant in Mechanics, CINVESTAV (1998).

- Introduction to General Relativity, ICIMAF (1994–95).

- Introduction to Quantum Field Theory, ICIMAF (1993).

- Lab. Sessions, UH (1988–91).

Graduate:

- Introduction to Higher-Dimensional Black Holes, CECS (2006).

- Introduction to General Relativity, CECS (2004).

- Topics on Black Hole Physics, CECS (2003).

- Teaching Assistant in Electrodynamics, CINVESTAV (1999).

- Teaching Assistant in Classical Mechanics, CINVESTAV (1998).

THESES ADVISORY

B.Sc.:

- Jose Manuel Perez Sanchez,“No–Scalar–Hair Theorem for Conformally Coupled Massive Fields,”Havana Univ. (1997)Publications: 1, Ref. [36].

- Francisco Javier Gonzalez Alvarez, In process, UV.

- Gerardo Villa Martınez, In process, UV.

- Silvano Ulices Que Salinas, In process, UV.

LANGUAGES

Fluent in English and Spanish.

SNI

National Researcher, degree I (exact sciences area).

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PRIZES

- “Arturo Rosenblueth Prize 2000”to the best Ph.D. Thesis from CINVESTAV in the area of Exact and Natural Sciences,granted by the Centro de Investigacion y de Estudios Avanzados del I.P.N. (Mexico,D.F., September, 2001).

- “Weizmann Prize 2001”to the best Ph.D. Thesis from Mexico in the area of Exact Sciences, granted by the Mex-ican Academy of Sciences and the Association of Friends of the Weizmann Instituteof Science (Mexico, D.F., April, 2002).

RESEARCH GRANTS

- Main Researcher, FONDECYT Grant 1040921 “Topics on Black Holes and High En-ergies,” ≈ 66.000 USD.

- Main Researcher, FONDECYT Grant 7040190 for Stimulating International Cooper-ation, ≈ 3.400 USD.

REFEREE

I am a referee for the following journals: Phys. Rev. Lett., Phys. Rev. D, and Class.Quant. Grav.

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Publications

[1] “Regular Black Hole in General Relativity Coupled to Nonlinear Electrodynamics,”Ayon–Beato, E., Garcıa, A.A.,Phys. Rev. Lett. 80, 5056–5059 (1998). arXiv:gr-qc/9911046.

[2] “About Black Holes with Nontrapping Interior,”Cabo, A., Ayon–Beato, E.,Int. J. Mod. Phys. A14, 2013–2022 (1999). arXiv:gr-qc/9704073.

[3] “Non–Singular Charged Black Hole Solution for Non–Linear Source,”Ayon–Beato, E., Garcıa, A.A.,Gen. Rel. Gravit. 31, 629–633 (1999). arXiv:gr-qc/9911084.

[4] “New Regular Black Hole Solution from Nonlinear Electrodynamics,”Ayon–Beato, E., Garcıa, A.A.,Phys. Lett. B464, 25–29 (1999). arXiv:hep-th/9911174.

[5] “Uniqueness Theorems for Static Black Holes in Metric–Affine Gravity,”Ayon–Beato, E., Garcıa, A.A., Macıas, A., Quevedo, H.,Phys. Rev. D61, 084017 (2000). arXiv:gr-qc/9911069.

[6] “Stewart–Lyth Inverse Problem,”Ayon–Beato, E., Garcıa, A.A., Mansilla, R., Terrero–Escalante, C.A.,Phys. Rev. D62, 103513 (2000). arXiv:astro-ph/0007477.

[7] “No–Hair Theorem for Spontaneously Broken Abelian Models in Static Black Holes,”Ayon–Beato, E.,Phys. Rev. D62, 104004 (2000). arXiv:gr-qc/9611069.

[8] “The Bardeen Model as a Nonlinear Magnetic Monopole,”Ayon–Beato, E., Garcıa, A.A.,Phys. Lett. B493, 149–152 (2000). arXiv:gr-qc/0009077.

[9] “Note on Scalar Fields Non–Minimally Coupled to (2 + 1)–Gravity,”Ayon–Beato, E., Garcıa, A.A., Macıas, A., Perez–Sanchez, J.M.,Phys. Lett. B495, 164–168 (2000). arXiv:gr-qc/0101079.

[10] “Inflationary Scenarios with Scale–Invariant Spectral Tensorial Index,”Terrero–Escalante, C.A., Ayon–Beato, E., Garcıa, A.A.,Phys. Rev. D64, 023503 (2001). arXiv:astro-ph/0101522.

[11] “Static Black Holes of Metric–Affine Gravity in the Presence of Matter,”Ayon–Beato, E., Garcıa, A.A., Macıas, A., Quevedo, H.,Phys. Rev. D64, 024026 (2001). arXiv:gr-qc/0104047.

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[12] “Staticity Theorem for Non–Rotating Black Holes with Non–Minimally Coupled Self–Interacting Scalar Fields,”Ayon–Beato, E.,in Exact Solutions and Scalar Fields in Gravity: Recent Developments, edited by A. Macıas,J.L. Cervantes–Cota, C. Lammerzahl (Kluwer Academic/Plenum Publishers, New York 2001),p. 263. arXiv:gr-qc/9606081.

[13] “No–Scalar–Hair Theorems for Nonminimally Coupled Fields with Quartic Self–Interaction,”Ayon–Beato, E.,Class. Quantum Grav. 19, 5465–5472 (2002). arXiv:gr-qc/0212050.

[14] “Improving the “No–Hair” Theorem for the Proca Field,”Ayon–Beato, E.,in Developments in Mathematical and Experimental Physics Vol. A: Cosmology and Gravi-tation, edited by A. Macıas, F. Uribe, E. Diaz (Kluwer Academic/Plenum Publishers, NewYork 2002), p. 81. arXiv:gr-qc/0210001.

[15] “Birkhoff’s Theorem for Three–Dimensional AdS Gravity,”Ayon–Beato, E., Martınez, C., Zanelli, J.,Phys. Rev. D70, 044027 (2004). arXiv:hep-th/0403227.

[16] “pp Waves of Conformal Gravity with Self–Interacting Source,”Ayon–Beato, E., Hassaıne, M.,Annals Phys. 317, 175–181 (2005). arXiv:hep-th/0409150.

[17] “Four Parametric Regular Black Hole Solution,”Ayon–Beato, E., Garcıa, A.A.,Gen. Rel. Gravit. 37, 635–641 (2005). arXiv:hep-th/0403229.

[18] “Scalar Fields Nonminimally Coupled to pp Waves,”Ayon–Beato, E., Hassaıne, M.,Phys. Rev. D71, 084004 (2005). arXiv:hep-th/0501040.

[19] “Gravitational Cheshire Effect: Nonminimally coupled scalar fields may not curve spacetime,”Ayon–Beato, E., Martınez, C., Troncoso, R., Zanelli, J.,Phys. Rev. D71, 104037 (2005). arXiv:hep-th/0505086.

[20] “Stealth Scalar Field Overflying a 2 + 1 Black Hole,”Ayon–Beato, E., Martınez, C., Zanelli, J.,Gen. Rel. Gravit. 38, 145–152 (2006). arXiv:hep-th/0403228.

[21] “Exploring AdS Waves via nonminimal coupling,”Ayon–Beato, E., Hassaıne, M.,Phys. Rev. D73, 104001 (2006). arXiv:hep-th/0512074.

[22] “Conformally Flat Noncircular Spacetimes,”Ayon–Beato, E., Campuzano, C., Garcıa, A.A.,Phys. Rev. D74, 024014 (2006). arXiv:gr-qc/0506004.

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[23] “Surveying the Three-Dimensional Fixed Points of T-Duality,”Ayon–Beato, E., Giribet, G.,Phys. Rev. D75, 046008 (2007). arXiv:hep-th/0611202.

[24] “Higher-dimensional AdS waves and pp-waves with conformally related sources,”Ayon–Beato, E., Hassaıne, M.,Phys. Rev. D75, 064025 (2007). arXiv:hep-th/0612068.

in Preparation

[25] “A New Hierarchy of Conformally Invariant Wave Equations in Higher Dimensions,”Ayon–Beato, E., Hassaıne, M., Martınez, C.

[26] “Toward a First Principles Derivation of the Higher Dimensional Black Holes from the CarterSeparability Postulate,”Ayon–Beato, E., Anabalon, A.

[27] “Stealths on (A)dS,”Ayon–Beato, E., Martınez, C., Troncoso, R., Zanelli, J.

[28] “Electromagnetic fields in stationary cyclic symmetric 2 + 1 gravity,”Ayon–Beato, E., Garcıa, A.A.

[29] “All G2I invariant Lower Energy String Backgrounds in Three Dimensions,”Ayon–Beato, E., Giribet, G.

[30] “Generalizing Buchdahl Transformations,”Ayon–Beato, E., Hassaıne, M.

Proceedings

[31] “On the Stewart–Lyth Inverse Problem,”Ayon–Beato, E., Garcıa, A.A., Mansilla, R., Terrero–Escalante, C.A.,Proceedings of the III Workshop of the DGFM–SMF, Leon, Mexico, eds. N. Breton, O. Pi-mentel, and J. Socorro (Univ. Gto. 2000).

[32] “Stationary Non-Circular Spacetimes,”Campuzano, C., Garcıa, A.A., Ayon–Beato, E.,in The Tenth Marcel Grossmann Meeting, Rio de Janeiro 2003, edited by M. Novello, S. PerezBergliaffa, and R. Ruffini (World Scientific, Singapore 2005), p. 1941.

[33] “Electromagnetic fields in stationary cyclic symmetric 2 + 1 gravity,”Ayon–Beato, E., Garcıa, A.A., Cataldo, M.,in Boston 2004, Particles, strings and cosmology, edited by G. Alverson, E. Barberis, P. Nath,and M.T. Vaughn (World Scientific, Singapore 2005), p. 554.

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[34] “A New Derivation of the Conformally Flat Stationary Cyclic Non-Circular Spacetimes,”Ayon–Beato, E., C. Campuzano, A. Garcıa,J. Phys. Conf. Ser. 91, 012006 (2007).

Preprints

[35] “On the Static Black Holes of Brans–Dicke Theory,”Ayon–Beato, E.,arXiv:gr-qc/9606082 (new version).

[36] “No–Scalar–Hair Theorem for Conformally Coupled Massive Fields,”Ayon–Beato, E., Perez–Sanchez, J.M.,

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CITES2

–Ref. [1]: TOPCITE = 50+ at SPIRES Database

1. Jhingan, S., Magli, G., in General Relativity, eds. D. Fortunato et al. (Springer–Verlag,Berlin/Heidelberg, 1999).

2. Hehl, F.W., Obukhov, Y.N., in Gyros, Clocks, Interferometers...: Testing RelativisticGravity in Space, eds. C. Lammerzahl et al., Lecture Notes in Physics 562 (Springer,2001).

3. Novello, M., Perez–Bergliaffa, S.E., Salim, J.M., Class. Quant. Grav., 17, 3821 (2000).

4. Wirschins, M., Sood, A., Kunz, J., Phys. Rev. D63, 084002 (2001).

5. Tamaki, T., Torii, T., Phys. Rev. D62, 061501 (2000).

6. Bronnikov, K.A., Phys. Rev. Lett. 85, 4641 (2000).

7. Yajima, H., Tamaki, T., Phys. Rev. D63, 064007 (2001).

8. Bronnikov, K.A., Phys. Rev. D63, 044005 (2001).

9. Gibbons, G.W., Herdeiro, C.A., Phys. Rev. D63, 064006 (2001).

10. Gal’tsov, D.V., Lemos, J.P.S., Class. Quant. Grav. 18, 1715 (2001).

11. Kao, W.F., “Regular Charged Black Hole with a Charged de Sitter Core,”arXiv:hep-th/0009049.

12. Tamaki, T., Torii, T., Phys. Rev. D64, 024027 (2001).

13. Gibbons, G.W., Herdeiro, C.A., Class. Quant. Grav. 18, 1677 (2001).

14. Elizalde, E., Hildebrandt, S.R., “A Family of Regular Quantum Interiors for Non–Rotating Black Holes I: The GRNSS Spacetimes,” arXiv:gr-qc/0103063.

15. Elizalde, E., Hildebrandt, S.R., “A Family of Quantum Interiors for Ordinaryand Stringy Black Holes II: Geometric Considerations and Global Properties,”arXiv:gr-qc/0103064.

16. Chen, J.H., Jing, J.L., Wang, Y.J., Commun. Theor. Phys. 36, 413 (2001).

17. Yazadjiev, S.S., Fiziev, P.P., Boyadjiev, T.L., Todorov, M.D., Mod. Phys. Lett. A16,2143 (2001).

18. DeBenedictis, A., Aruliah, D., Das, A., Gen. Rel. Grav. 34, 365 (2002).

19. Palatnik, D., “Corrected Born–Infeld Theory of Electroweak and GravitationalFields,” arXiv:quant-ph/9608014.

2 Without considering self-citations from author and co-authors.

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20. Burinskii, A., Elizalde, E., Hildebrandt, S.R., Magli, G., Phys. Rev. D65, 064039(2002).

21. Palatnik, D., “Extra–Symmetric Born–Infeld Theory,” arXiv:quant-ph/0202024.

22. Burinskii, A., Hildebrandt, S.R., Phys. Rev. D65, 104017 (2002).

23. Elizalde, E., Hildebrandt, S.R., Phys. Rev. D65, 124024 (2002).

24. Moreno, C., Sarbach, O., Phys. Rev. D67, 024028 (2002).

25. Burinskii, A., Hildebrandt, S.R., Grav. Cosmol. 9, 20 (2003).

26. Salgado, M., Class. Quant. Grav. 20, 4551 (2003).

27. M. Novello and J. M. Salim, in 10th Marcel Grossmann Meeting, eds. M. Novello, S.P.Bergliaffa, R. Ruffini (Hackensack, World Scientific, 2005). p 770.

28. Camara, C.S., de Garcia Maia, M.R., Carvalho, J.C., Lima, J.A.S., Phys. Rev. D69,123504 (2004).

29. D. Palatnik, “BI action for YM and gravitational fields in four dimensions,”arXiv:gr-qc/0404097.

30. N. Breton, Gen. Rel. Grav. 37, 643 (2005).

31. A. Kleber, J. P. S. Lemos and V. T. Zanchin, Grav. Cosmol. 11, 269 (2005).

32. I. Dymnikova, Class. Quant. Grav. 21, 4417 (2004).

33. M. Galvagno and G. Giribet, Eur. J. Phys. 26, S97 (2005).

34. M. Aiello, R. Ferraro and G. Giribet, Class. Quant. Grav. 22, 2579 (2005).

35. A. B. Balakin and J. P. S. Lemos, Class. Quant. Grav. 22, 1867 (2005).

36. H. Nomura and T. Tamaki, Phys. Rev. D71, 124033 (2005).

37. S. S. Yazadjiev, Phys. Rev. D72, 044006 (2005).

38. S. A. Hayward, Phys. Rev. Lett. 96, 031103 (2006).

39. E. F. Eiroa, Phys. Rev. D73, 043002 (2006).

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42. J. Bicak and D. Kubiznak, Phys. Lett. B636, 142 (2006).

43. A. V. B. Arellano and F. S. N. Lobo, Class. Quant. Grav. 23, 5811 (2006).

44. A. Sheykhi and N. Riazi, Phys. Rev. D75, 024021 (2007).

45. K. A. Bronnikov, H. Dehnen and V. N. Melnikov, Gen. Rel. Grav. 39, 973 (2007).

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46. F. S. N. Lobo and A. V. B. Arellano, Class. Quant. Grav. 24, 1069 (2007).

47. S. Ansoldi, P. Nicolini, A. Smailagic, and E. Spallucci, Phys. Lett. B645, 261 (2007).

48. N. Breton and R. Garcia-Salcedo, “Nonlinear Electrodynamics and black holes,”arXiv:hep-th/0702008.

49. J. W. Moffat, “Non-Singular Spherically Symmetric Solution in Einstein-Scalar-TensorGravity,” arXiv:gr-qc/0702070.

50. Y. S. Myung, Y. W. Kim and Y. J. Park, Phys. Lett. B656, 221 (2007).

51. I. Z. Stefanov, S. S. Yazadjiev and M. D. Todorov, Phys. Rev. D75, 084036 (2007).

52. Y. S. Myung, Y. W. Kim and Y. J. Park, Phys. Lett. B659, 832 (2008).

53. Y. S. Myung, Y. W. Kim and Y. J. Park, Phys. Rev. D76, 104045 (2007).

54. Y. S. Myung, Y. W. Kim and Y. J. Park, “Thermodynamics of regular black hole,”arXiv:0708.3145 [gr-qc].

55. I. Z. Stefanov, S. S. Yazadjiev and M. D. Todorov, “Scalar-tensor black holes coupledto Euler-Heisenberg nonlinear electrodynamics,” arXiv:0708.3203 [gr-qc].

56. I. Z. Stefanov, S. S. Yazadjiev and M. D. Todorov, “Phases of 4D Scalar-tensor blackholes coupled to Born-Infeld nonlinear electrodynamics,” arXiv:0708.4141 [gr-qc].

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58. K. Goldstein and H. Yavartanoo, “A note on non-linear electrodynamics, regular blackholes and the entropy function,” arXiv:0711.3374 [hep-th].

59. S. Ansoldi, “Spherical black holes with regular center: a review of existing modelsincluding a recent realization with Gaussian sources,” arXiv:0802.0330 [gr-qc].

–Ref. [2]:

60. Kao, W.F., “Regular Charged Black Hole with a Charged de Sitter Core,”arXiv:hep-th/0009049.

61. M. Novello and J. M. Salim, in 10th Marcel Grossmann Meeting, eds. M. Novello, S.P.Bergliaffa, R. Ruffini (Hackensack, World Scientific, 2005). p 770.

62. M. Aiello, R. Ferraro and G. Giribet, Class. Quant. Grav. 22, 2579 (2005).

63. P. P. Fiziev, Class. Quant. Grav. 23, 2447 (2006).

64. K. Goldstein and H. Yavartanoo, “A note on non-linear electrodynamics, regular blackholes and the entropy function,” arXiv:0711.3374 [hep-th].

65. S. Ansoldi, “Spherical black holes with regular center: a review of existing modelsincluding a recent realization with Gaussian sources,” arXiv:0802.0330 [gr-qc].

–Ref. [3]:

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66. Quiros, I., “Is the Schwarzschild Black Hole Spurious?” arXiv:gr-qc/9903041.

67. Hehl, F.W., Obukhov, Y.N., in Gyros, Clocks, Interferometers...: Testing RelativisticGravity in Space, eds. C. Lammerzahl et al., Lecture Notes in Physics 562 (Springer,2001).

68. Novello, M., Perez–Bergliaffa, S.E., Salim, J.M., Class. Quant. Grav. 17, 3821 (2000).

69. Tamaki, T., Torii, T., Phys. Rev. D62, 061501 (2000).

70. Bronnikov, K.A., Phys. Rev. Lett. 85, 4641 (2000).

71. Yajima, H., Tamaki, T., Phys. Rev. D63, 064007 (2001).

72. Bronnikov, K.A., Phys. Rev. D63, 044005 (2001).

73. Nandi, K.K., Bhadra, A., Alsing, P.M., Nayak, T.B., Int. J. Mod. Phys. D10, 529(2001).

74. Tamaki, T., Torii, T., Phys. Rev. D64 024027 (2001).

75. Gibbons, G.W., Herdeiro, C.A., Class. Quant. Grav. 18, 1677 (2001).

76. Elizalde, E., Hildebrandt, S.R., “A Family of Regular Quantum Interiors for Non–Rotating Black Holes I: The GRNSS Spacetimes,” arXiv:gr-qc/0103063.

77. Elizalde, E., Hildebrandt, S.R., “A Family of Quantum Interiors for Ordinaryand Stringy Black Holes II: Geometric Considerations and Global Properties,”arXiv:gr-qc/0103064.

78. Yazadjiev, S.S., Fiziev, P.P., Boyadjiev, T.L., Todorov, M.D., Mod. Phys. Lett. A16,2143 (2001).

79. DeBenedictis, A., Aruliah, D., Das, A., Gen. Rel. Grav. 34, 365 (2002).

80. Palatnik, D., “Corrected Born–Infeld Theory of Electroweak and GravitationalFields,” arXiv:quant-ph/9608014.

81. Burinskii, A., Elizalde, E., Hildebrandt, S.R., Magli, G., Phys. Rev. D65, 064039(2002).

82. Palatnik, D., “Extra–Symmetric Born–Infeld Theory,” arXiv:quant-ph/0202024.

83. Burinskii, A., Hildebrandt, S.R., Phys. Rev. D65, 104017 (2002).

84. Elizalde, E., Hildebrandt, S.R., Phys. Rev. D65, 124024 (2002).

85. Moreno, C., Sarbach, O., Phys. Rev. D67, 024028 (2002).

86. Burinskii, A., Hildebrandt, S.R., Grav. Cosmol. 9, 20 (2003).

87. M. Novello and J. M. Salim, in 10th Marcel Grossmann Meeting, eds. M. Novello, S.P.Bergliaffa, R. Ruffini (Hackensack, World Scientific, 2005). p 770.

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88. D. Palatnik, “BI action for YM and gravitational fields in four dimensions,”arXiv:gr-qc/0404097.

89. N. Breton, Gen. Rel. Grav. 37, 643 (2005).

90. I. Dymnikova, Class. Quant. Grav. 21, 4417 (2004).

91. M. Galvagno and G. Giribet, Eur. J. Phys. 26, S97 (2005).

92. M. Aiello, R. Ferraro and G. Giribet, Class. Quant. Grav. 22, 2579 (2005).

93. H. Nomura and T. Tamaki, Phys. Rev. D71, 124033 (2005).

94. S. S. Yazadjiev, Phys. Rev. D72, 044006 (2005).

95. A. V. B. Arellano and F. S. N. Lobo, Class. Quant. Grav. 23, 7229 (2006).

96. A. V. B. Arellano and F. S. N. Lobo, Class. Quant. Grav. 23, 5811 (2006).

97. A. Sheykhi and N. Riazi, Phys. Rev. D75, 024021 (2007).

98. F. S. N. Lobo and A. V. B. Arellano, Class. Quant. Grav. 24, 1069 (2007).

99. N. Breton and R. Garcia-Salcedo, “Nonlinear Electrodynamics and black holes,”arXiv:hep-th/0702008.

100. M. H. Dehghani, A. Sheykhi and S. H. Hendi, Phys. Lett. B659, 476 (2008).

101. J. Diaz-Alonso and D. Rubiera-Garcia, “Soliton solutions in relativistic field theoriesand gravitation,” arXiv:0712.1702 [hep-th].

102. S. Ansoldi, “Spherical black holes with regular center: a review of existing modelsincluding a recent realization with Gaussian sources,” arXiv:0802.0330 [gr-qc].

–Ref. [4]: TOPCITE = 50+ at SPIRES Database

103. Hehl, F.W., Obukhov, Y.N., in Gyros, Clocks, Interferometers...: Testing RelativisticGravity in Space, eds. C. Lammerzahl et al., Lecture Notes in Physics 562 (Springer,2001).

104. Novello, M., Perez–Bergliaffa, S.E., Salim, J.M., Class. Quant. Grav., 17, 3821 (2000).

105. Wirschins, M., Sood, A., Kunz, J., Phys. Rev. D63, 084002 (2001).

106. Tamaki, T., Torii, T., Phys. Rev. D62, 061501 (2000).

107. Bronnikov, K.A., Phys. Rev. Lett. 85, 4641 (2000).

108. Yajima, H., Tamaki, T., Phys. Rev. D63, 064007 (2001).

109. Bronnikov, K.A., Phys. Rev. D63, 044005 (2001).

110. Kao, W.F., “Regular Charged Black Hole with a Charged de Sitter Core,”arXiv:hep-th/0009049.

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111. Elizalde, E., Hildebrandt, S.R., “Regular Quantum Interiors for Black Holes,”arXiv:gr-qc/0007030.

112. Matyjasek, J., Phys. Rev. D63, 084004 (2001).

113. Radinschi, I., Mod. Phys. Lett. A16, 673 (2001).

114. Tamaki, T., Torii, T., Phys. Rev. D64 024027 (2001).

115. Gibbons, G.W., Herdeiro, C.A., Class. Quant. Grav. 18, 1677 (2001).

116. Elizalde, E., Hildebrandt, S.R., “A Family of Regular Quantum Interiors for Non–Rotating Black Holes I: The GRNSS Spacetimes,” arXiv:gr-qc/0103063.

117. Elizalde, E., Hildebrandt, S.R., “A Family of Quantum Interiors for Ordinaryand Stringy Black Holes II: Geometric Considerations and Global Properties,”arXiv:gr-qc/0103064.

118. Radinschi, I., “Energy Associated with a Charged Regular Black Hole,”arXiv:gr-qc/0103110.

119. Radinschi, I., “On the Bergmann Energy–Momentum Complex of a Charged RegularBlack Hole,” arXiv:gr-qc/0104004.

120. Yazadjiev, S.S., Fiziev, P.P., Boyadjiev, T.L., Todorov, M.D., Mod. Phys. Lett. A16,2143 (2001).

121. DeBenedictis, A., Aruliah, D., Das, A., Gen. Rel. Grav. 34, 365 (2002).

122. Palatnik, D., “Corrected Born–Infeld Theory of Electroweak and GravitationalFields,” arXiv:quant-ph/9608014.

123. Burinskii, A., Elizalde, E., Hildebrandt, S.R., Magli, G., Phys. Rev. D65, 064039(2002).

124. Palatnik, D., “Extra–Symmetric Born–Infeld Theory,” arXiv:quant-ph/0202024.

125. Burinskii, A., Hildebrandt, S.R., Phys. Rev. D65, 104017 (2002).

126. Elizalde, E., Hildebrandt, S.R., Phys. Rev. D65, 124024 (2002).

127. Berej, W., Matyjasek, J., Phys. Rev. D66, 024022 (2002).

128. Holdom, B., Phys. Rev. D66, 084010 (2002).

129. Moreno, C., Sarbach, O., Phys. Rev. D67, 024028 (2002).

130. Hildebrandt, S.R., Gen. Rel. Grav. 34, 159 (2002).

131. Burinskii, A., Hildebrandt, S.R., Grav. Cosmol. 9, 20 (2003).

132. Yang, I-C., Radinschi, I., Chin. J. Phys. 42, 40 (2004).

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133. M. Novello and J. M. Salim, in 10th Marcel Grossmann Meeting, eds. M. Novello, S.P.Bergliaffa, R. Ruffini (Hackensack, World Scientific, 2005). p 770.

134. Matyjasek, J., Phys. Rev. D70, 047504 (2004).

135. Sharif, M., Nuov. Cim. B118, 669 (2003).

136. D. Palatnik, “BI action for YM and gravitational fields in four dimensions,”arXiv:gr-qc/0404097.

137. N. Breton, Gen. Rel. Grav. 37, 643 (2005).

138. I. Dymnikova, Class. Quant. Grav. 21, 4417 (2004).

139. M. Galvagno and G. Giribet, Eur. J. Phys. 26, S97 (2005).

140. M. Aiello, R. Ferraro and G. Giribet, Class. Quant. Grav. 22, 2579 (2005).

141. N. Breton, Phys. Rev. D72, 044015 (2005).

142. H. Nomura and T. Tamaki, Phys. Rev. D71, 124033 (2005).

143. S. S. Yazadjiev, Phys. Rev. D72, 044006 (2005).

144. S. Kar and S. Majumdar, Int. J. Mod. Phys. A21, 6087 (2006).

145. M. Salti and O. Aydogdu, Int. J. Theor. Phys. 45, 2481 (2006).

146. A. V. B. Arellano and F. S. N. Lobo, Class. Quant. Grav. 23, 7229 (2006).

147. W. Berej, J. Matyjasek, D. Tryniecki and M. Woronowicz, Gen. Rel. Grav. 38, 885(2006).

148. I. Dymnikova, Phys. Lett. B639, 368 (2006).

149. A. V. B. Arellano and F. S. N. Lobo, Class. Quant. Grav. 23, 5811 (2006).

150. A. Sheykhi and N. Riazi, Phys. Rev. D75, 024021 (2007).

151. G. G. L. Nashed, “Regular Charged Solutions in Teleparallel Theory of Gravity,”arXiv:gr-qc/0610058.

152. I. L. Zhogin, “Topological charges and quasi-charges in Absolute Parallelism,”arXiv:gr-qc/0610076.

153. F. S. N. Lobo and A. V. B. Arellano, Class. Quant. Grav. 24, 1069 (2007).

154. N. Breton and R. Garcia-Salcedo, “Nonlinear Electrodynamics and black holes,”arXiv:hep-th/0702008.

155. Y. S. Myung, Y. W. Kim and Y. J. Park, Phys. Lett. B659, 832 (2008).

156. Y. S. Myung, Y. W. Kim and Y. J. Park, Phys. Rev. D76, 104045 (2007).

157. M. H. Dehghani, A. Sheykhi and S. H. Hendi, Phys. Lett. B659, 476 (2008).

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158. J. Matyjasek, Phys. Rev. D76, 084003 (2007).

159. K. Goldstein and H. Yavartanoo, “A note on non-linear electrodynamics, regular blackholes and the entropy function,” arXiv:0711.3374 [hep-th].

160. S. Ansoldi, “Spherical black holes with regular center: a review of existing modelsincluding a recent realization with Gaussian sources,” arXiv:0802.0330 [gr-qc].

161. D. h. Yeom and H. Zoe, “Constructing a Counterexample to the Black Hole Comple-mentarity,” arXiv:0802.1625 [gr-qc].

–Ref. [5]:

162. Toussaint, M., Gen. Rel. Grav. 32, 1689 (2000).

163. Mielke, E. W., Rincon–Maggiolo, A.A., Gen. Rel. Grav. 35, 771 (2003).

–Ref. [6]

164. Mielke, E.W., Schunk, F.E, in Exact Solutions and Scalar Fields in Gravity: RecentDevelopments, edited by A. Macıas, J.L. Cervantes–Cota, C. Lammerzahl (KluwerAcademic/Plenum Publishers, New York 2001), pp. 185–194.

165. Easther, R., Kinney, W.H., Phys. Rev. D67, 043511 (2003).

166. Kinney, W.H., Kolb, E.W., Melchiorri, A., Riotto, A., Phys. Rev. D69, 103516 (2004).

167. A. Vallinotto, E. J. Copeland, E. W. Kolb, A. R. Liddle and D. A. Steer, Phys. Rev.D69, 103519 (2004).

168. W. H. Kinney, E. W. Kolb, A. Melchiorri and A. Riotto, Phys. Rev. D74, 023502(2006).

–Ref. [7]:

169. J. D. Bekenstein, in Cosmology and Gravitation, ed. M. Novello (Atlantisciences,France 2000), pp. 1–85.

170. S. L. Adler, “Adventures in Theoretical Physics: Selected Papers of Stephen L. Adler– Drafts of Commentaries,” arXiv:hep-ph/0505177.

–Ref. [8]:

171. Moreno, C., Sarbach, O., Phys. Rev. D67, 024028 (2002).

172. Menezes, R., Nascimento, J.R., Ribeiro, R.F., Wotzasek, C., Phys. Lett. B550, 201(2002).

173. Santiago–German, W., Phys. Rev. D68, 084018 (2003).

174. N. Breton, Gen. Rel. Grav. 37, 643 (2005).

175. A. Kleber, J. P. S. Lemos and V. T. Zanchin, Grav. Cosmol. 11, 269 (2005).

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176. M. Galvagno and G. Giribet, Eur. J. Phys. 26, S97 (2005).

177. M. Aiello, R. Ferraro and G. Giribet, Class. Quant. Grav. 22, 2579 (2005).

178. A. B. Balakin and J. P. S. Lemos, Class. Quant. Grav. 22, 1867 (2005).

179. J. P. S. Lemos and V. T. Zanchin, J. Math. Phys. 47, 042504 (2006).

180. W. Berej, J. Matyjasek, D. Tryniecki and M. Woronowicz, Gen. Rel. Grav. 38, 885(2006).

181. F. S. N. Lobo and A. V. B. Arellano, Class. Quant. Grav. 24, 1069 (2007).

182. N. Breton and R. Garcia-Salcedo, “Nonlinear Electrodynamics and black holes,”arXiv:hep-th/0702008.

183. J. P. S. Lemos and O. B. Zaslavskii, Phys. Rev. D76, 084030 (2007).

184. J. Matyjasek, Phys. Rev. D76, 084003 (2007).

185. A. B. Balakin, V. V. Bochkarev and J. P. S. Lemos, “Non-minimal coupling forthe gravitational and electromagnetic fields: black hole solutions and solitons,”arXiv:0712.4066 [gr-qc].

186. S. Ansoldi, “Spherical black holes with regular center: a review of existing modelsincluding a recent realization with Gaussian sources,” arXiv:0802.0330 [gr-qc].

187. J. P. S. Lemos and V. T. Zanchin, “Bonnor stars in d spacetime dimensions,”arXiv:0802.0530 [gr-qc].

–Ref. [9]:

188. Gegenberg, J., Martınez, C., Troncoso, R., Phys. Rev. D67, 084007 (2003).

189. M. Hassaıne, J. Math. Phys. 47, 033101 (2006).

190. C. Martinez, J. P. Staforelli, and R. Troncoso, Phys. Rev. D74, 044028 (2006).

191. C. Martinez and R. Troncoso, Phys. Rev. D74, 064007 (2006).

192. M. Hassaıne, J. Phys. A 39, 8675 (2006).

193. G. D. Dotti, R. J. Gleiser and C. Martinez, “Static black hole solutions with a selfinteracting conformally coupled scalar field,” arXiv:0710.1735 [hep-th].

–Ref. [10]:

194. A. Vallinotto, E. J. Copeland, E. W. Kolb, A. R. Liddle and D. A. Steer, Phys. Rev.D69, 103519 (2004).

–Ref. [11]:

195. S. I. Vacaru, “Generalized Finsler geometry in Einstein, string and Metric–AffineGravity,” arXiv:hep-th/0310132.

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196. S. I. Vacaru, E. Gaburov and D. Gontsa, “A method of constructing off–diagonalsolutions in metric-affine and string gravity,” arXiv:hep-th/0310133.

197. S. Vacaru, P. Stavrinos, E. Gaburov and D. Gonta, “Clifford and Riemann-Finslerstructures in geometric mechanics and gravity,” arXiv:gr-qc/0508023.

–Ref. [12]:

198. J. D. Bekenstein, in Cosmology and Gravitation, ed. M. Novello (Atlantisciences,France 2000), pp. 1–85.

–Ref. [13]:

199. Nucamendi, U., Salgado, M., Phys. Rev. D68, 044026 (2003).

200. Salgado, M., Class. Quant. Grav. 20, 4551 (2003).

201. J. Estevez-Delgado and T. Zannias, Phys. Rev. D70, 064038 (2004).

202. C. Martınez, R. Troncoso and J. Zanelli, Phys. Rev. D70, 084035 (2004).

203. J. Estevez-Delgado and T. Zannias, Class. Quant. Grav. 21, 5147 (2004).

204. E. Winstanley, Class. Quant. Grav. 22, 2233 (2005).

205. M. Salgado, Class. Quant. Grav. 23, 4719 (2006).

206. C. Martinez, J. P. Staforelli, and R. Troncoso, Phys. Rev. D74, 044028 (2006).

207. C. Martinez and R. Troncoso, Phys. Rev. D74, 064007 (2006).

208. I. K. Wehus and F. Ravndal, J. Phys. Conf. Ser. 66, 012024 (2007).

209. G. D. Dotti, R. J. Gleiser and C. Martinez, “Static black hole solutions with a selfinteracting conformally coupled scalar field,” arXiv:0710.1735 [hep-th].

–Ref. [14]:

M. Hejna, “Symmetric affine theories and nonlinear Einstein-Proca system,”arXiv:gr-qc/0611118.

–Ref. [15]:

210. J. Matyjasek, O.B. Zaslavskii, Class. Quant. Grav. 21, 4283 (2004).

211. M. McGuigan, “Noncritical M-theory: Three dimensions,” arXiv:hep-th/0408041.

212. M.I. Park, “Thoughts on the Area Theorem,” arXiv:hep-th/0611048.

213. G. de Berredo-Peixoto and M. O. Katanaev, Phys. Rev. D75, 024004 (2007).

–Ref. [16]:

214. R. Jackiw, AIP Conf. Proc. 805, 283 (2006).

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–Ref. [17]:

215. I. Dymnikova, Class. Quant. Grav. 21, 4417 (2004).

216. A. B. Balakin and J. P. S. Lemos, Class. Quant. Grav. 22, 1867 (2005).

217. H. Nomura and T. Tamaki, Phys. Rev. D71, 124033 (2005).

218. W. Berej, J. Matyjasek, D. Tryniecki and M. Woronowicz, Gen. Rel. Grav. 38, 885(2006).

219. J. Matyjasek, Phys. Rev. D76, 084003 (2007).

220. S. Ansoldi, “Spherical black holes with regular center: a review of existing modelsincluding a recent realization with Gaussian sources,” arXiv:0802.0330 [gr-qc].

–Ref. [18]:

221. R. Jackiw, AIP Conf. Proc. 805, 283 (2006).

–Ref. [19]:

222. M. Hassaıne, J. Math. Phys. 47, 033101 (2006).

223. D. C. Robinson, Gen. Rel. Grav. 38, 153 (2006).

224. D. A. Demir and B. Pulice, Phys. Lett. B638, 1 (2006).

225. M. Hassaıne, J. Phys. A 39, 8675 (2006).

226. N. Banerjee, R. K. Jain and D. P. Jatkar, Gen. Rel. Grav. 40, 93 (2008).

227. I. Papadimitriou, JHEP 0705, 075 (2007).

–Ref. [20]:

228. M. Hassaıne, J. Math. Phys. 47, 033101 (2006).

229. D. C. Robinson, Gen. Rel. Grav. 38, 153 (2006).

230. M. Hassaıne, J. Phys. A 39, 8675 (2006).

–Ref. [35]:

231. J. D. Bekenstein, in Cosmology and Gravitation, ed. M. Novello (Atlantisciences,France 2000), pp. 1–85.

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SEMINARS, SCHOOLS, and CONFERENCES

1. CECS Summer Mini-Workshop on Theoretical Physics, CECS, Valdivia, Chile, 2008.

2. Claudio Fest: Quantum Mechanics of Fundamental Systems, the Quest for Beauty andSimplicity, CECS, Valdivia, Chile, 2008.

3. VII Mexican Workshop on Gravitation and Mathematical Physics, Monterrey, Mexico,2007.

4. II Colloquium on Gravitation and Mathematical Physics, IFUG, Leon, Mexico, 2007.

5. Research Seminar, Physics Department UV, Xalapa, Mexico, 2007.

6. SUSY and String Phenomenology, Dual C-P Institute of High Energy PhysicsUC/BUAP, Puebla, Mexico, 2007.

7. IV Xalapa Meeting of Physics, Physics Department UV, Xalapa, Mexico, 2007.

8. CECS Winter Workshop on Theoretical Physics, CECS, Valdivia, Chile, 2006.

9. Several Research Seminars, Theoretical Physics Lab. CECS, Valdivia, Chile, 2006.

10. III Xalapa Meeting of Physics, Physics Department UV, Xalapa, Mexico, 2006.

11. Research Seminar, Physics Department UV, Xalapa, Mexico, 2006.

12. Research Seminar, Physics Institute PUCV, Valparaiso, Chile, 2006.

13. School on String Theory, Physics Institute PUCV, Valparaiso, Chile, 2006.

14. CECS Summer Extended Workshop on Theoretical Physics, CECS, Valdivia, Chile,2006.

15. III Chilean School on Astrophysics, Cosmology and Gravitation, Physics DepartmentUSACH, Santiago, Chile, 2005.

16. Research Seminar, Physics Institute PUCV, Valparaiso, Chile, 2005.

17. Several Research Seminars, Theoretical Physics Lab. CECS, Valdivia, Chile, 2005.

18. CECS Summer Extended Workshop on Theoretical Physics, CECS, Valdivia, Chile,2005.

19. Several Research Seminars, Theoretical Physics Lab. CECS, Valdivia, Chile, 2004.

20. II Chilean School on Astrophysics, Cosmology and Gravitation, Physics DepartmentUniv. de Concepcion, Concepcion, Chile, 2004.

21. CECS Winter School on Theoretical Physics, CECS, Valdivia, Chile, 2004.

22. Seminar within the graduate course on General Relativity, Physics DepartmentUniv. de Concepcion, Concepcion, Chile, 2004.

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23. CECS Summer Meeting on Theoretical Physics, CECS, Valdivia, Chile, 2004.

24. Several Research Seminars, Theoretical Physics Lab. CECS, Valdivia, Chile, 2003.

25. I Chilean School on Astrophysics, Cosmology and Gravitation, Physics InstitutePUCV, Valparaiso, Chile, 2003.

26. CECS Winter School on Theoretical Physics, CECS, Valdivia, Chile, 2003.

27. Invited Seminar, Physics Department UV, Xalapa, Mexico, 2003.

28. V Mexican School on Gravitation and Mathematical Physics, The Early Universe andObservational Cosmology, Playa del Carmen, Mexico, 2002.

29. XIII Chilean Symposium of Physics, Concepcion, Chile, 2002.

30. Departmental Colloquium, Physics Department Univ. de Concepcion, Concepcion,Chile, 2002.

31. General Colloquium, CECS, Valdivia, Chile, 2002.

32. Research Seminar, Theoretical Physics Lab. CECS, Valdivia, Chile, 2002.

33. Departmental Colloquium, Physics Department USACH, Santiago, Chile, 2002.

34. IV Mexican Workshop on Gravitation and Mathematical Physics, Chapala, Mexico,2001.

35. Invited Conference, Faculty of Sciences UAEM, Cuernavaca, Mexico, 2001.

36. Gravitation Seminar, ICN–UNAM, Mexico D.F., 2001.

37. I Mexican Meeting on Mathematical and Experimental Physics, El Colegio Nacional,Mexico D.F., 2001.

38. Colloquium of Relativity and Mathematical Physics, Physics DepartmentCINVESTAV–IPN, Mexico D.F., 2001.

39. IX Annual Meeting of the Gravitation and Mathematical Physics Division of S.M.F.,CINVESTAV–IPN, Mexico D.F., 2001.

40. IV Mexican School on Gravitation and Mathematical Physics, Membranes 2000, Hu-atulco, Mexico, 2000.

41. Mexican Meeting on Exact Solutions and Scalar Fields in Gravity, in Honour of H.Dehnen & D. Kramer, CINVESTAV–IPN, Mexico D.F., 2000.

42. Gravity & Society on the Dawn of the New Millenium, Mexico D.F., 2000.

43. III Mexican Workshop on Gravitation and Mathematical Physics, Leon, Mexico, 1999.

44. Workshop on Numerical Relativity, Physics Department CINVESTAV–IPN, MexicoD.F., 1999.

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45. VII Annual Meeting of the Gravitation and Mathematical Physics Division of S.M.F.,ININ, E. M., Mexico, 1999.

46. Research Seminar, ININ, E. M., Mexico, 1998.

47. III Mexican School on Gravitation and Mathematical Physics, Black Holes, Classicaland Quantum, Mazatlan, Mexico, 1998.

48. Research Seminar “Marcos Moshinsky,” IFUG, Leon, Mexico, 1998.

49. Departmental Colloquium, Physics Department CINVESTAV–IPN, Mexico D.F.,1998.

50. Gravitation and Mathematical Physics Ph.D. Students Seminar, Physics DepartmentCINVESTAV–IPN, Mexico D.F., 1998.

51. VI Annual Meeting of the Gravitation and Mathematical Physics Division of S.M.F.,ICN–UNAM, Mexico D.F., 1998.

52. II Mexican Workshop on Gravitation and Mathematical Physics, Xalapa, Mexico,1997.

53. Meeting on Gauge Theories of Gravity, in honor of F. W. Hehl, UAM–I, Mexico D.F.,1997.

54. I Caribbean Workshop on Particles and Fields (within CIMAF 97), Havana, Cuba,1997.

55. II Mexican School on Gravitation and Mathematical Physics, Tlaxcala, Mexico, 1996.

56. Summer School in High Energy Phys. and Cosmology, ICTP, Trieste, Italy, 1996.

57. Spring School and Workshop on String Theory, Gauge Theory and Quantum Gravity,ICTP, Trieste, Italy, 1995.

58. Research Seminar “Marcos Moshinsky,” IFUG, Leon, Mexico, 1995.

59. I National Workshop on Non–Linear Systems, Havana Univ., Habana, Cuba, 1994.

60. I Meeting CINVESTAV–ICIMAF, ICIMAF, Habana, Cuba, 1993.