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Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

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Page 1: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Crystal collimation for LHC

Valery BiryukovIHEP Protvino

Vincenzo GuidiFerrara University and INFN

Walter ScandaleCERN

CERN, Geneva, 24 April 2003

Page 2: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Borrowed from Ray Fliller’s talk at Paris EPAC 2002

Page 3: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Crystal Channeling

Page 4: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Beam line (70 m long) made of 3 crystals, IHEP

Page 5: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

• Beam focusing by crystal

Page 6: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003
Page 7: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003
Page 8: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003
Page 9: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003
Page 10: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003
Page 11: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Crystal design as used at IHEP Protvino and RHIC Crystal is 3 to 5 mm along the beam

Page 12: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003
Page 13: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Crystal

5mm

Beam Direction

Crystal Courtesy of IHEP, Protvino

Page 14: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

New crystal design (“strip”) gave 85% efficiency at IHEP

Page 15: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003
Page 16: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Typical beam phase space at crystal location, IHEP

Page 17: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

1- circulating beam, 2- extracted beam, IHEP

Page 18: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Crystal extraction efficiency as measured since Dec 1997.85% is measured even when all stored beam is dumped onto crystal

Page 19: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003
Page 20: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Deflected (left) and incident (right) beams as seen downstream of the crystal

• Prior to the test, the crystal was exposed in the ring to 50-ms pulses of very intense beam (about 1014 proton hits per pulse).

• No damage of crystal was seen in the test, after this extreme exposure.

Page 21: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Beam profile at collimator face with NO crystal, 70 GeV

Page 22: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Misaligned x

Page 23: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Crystal collimation

Page 24: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Effy vs Energy

Page 25: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

45 GeV

Page 26: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

12 GeV

Page 27: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Crystal lifetime is order of 5*1020 proton/cm2

Page 28: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

RHIC Crystal Collimator Setup

8 Upstream PIN diodes

4 Downstream PIN diodes

Data fill focus on upstream PIN diodes

Page 29: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Layout of RHIC experiment on crystal collimation

Page 30: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003
Page 31: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

RHIC measurements, EPAC 2002

Page 32: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Simulations of LHC crystal collimation

Page 33: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Simulations with smaller bending, 0.1 mrad

Page 34: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Two bending options compared: 0.2 and 0.1 mrad

Page 35: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Efficiency vs bending angle

Page 36: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Background suppression factor vs crystal bending

Page 37: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

FNAL simulations for Tevatron crystal scraping, PAC 1999

Page 38: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Conclusion

• Simulations and experiments promise

10-fold improvement in backgrounds

at TeV accelerators if bent crystal is used as primary scraper.

• No problems with high intensity or lifetime.

Page 39: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Extraction parameters

• Protons • Energy at 1.3-70 GeV• Intensity 1012 protons

in spills of 2 s duration• Efficiency greater than

85%• Equivalent to 1000 T

dipole magnetic fieldExtraction efficiency vs. crystal length at 70 GeV

Page 40: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Structure of the bending crystal

y

x

z50

0.52

• Dimensions

0.5250mm3

• 1/R is the curvature

experienced by channelled

protons

Page 41: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Bending device

• Bending exploits anticlastic effects due to anysotropy of crystalline Si

• For the (111) direction the sample takes the shape of a saddle

Page 42: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Preparation of the Si samples I

• Starting material is prime-grade, (111) oriented 525-m-thick silicon wafer

• In previous runs there came out that a surface layer as thick as 30 m was rich in scratches, dislocations, line defects and anomalies that would reduce channelling efficiency

• Such a layer originated in the mechanical cutting for manufacturing the samples

• Thus we attempted removal of the layer

Page 43: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

Preparation of the Si samples II

• Preliminary cleaning to organic and metallic impurities from the surface of the wafers by H2O2, NH4OH, HF, HCl,...

• Coverage of the largest surfaces by Apiezon wax• Cutting of the samples by a diamond-blade saw

avoiding alignment with major crystalline axes.

• Planar etching (HF, HNO3 and CH3COOH, 2:15:5) with a timing set for 30 m thinning.

More info in Rev. Sci. Instrum. 73 (2002) 3170-3173

Page 44: Crystal collimation for LHC Valery Biryukov IHEP Protvino Vincenzo Guidi Ferrara University and INFN Walter Scandale CERN CERN, Geneva, 24 April 2003

7 meter

VACUUM PIPE

CRYSTAL

S1

S4S3

S2

EM

Images of the beam deflected through mechanically treated (left) and chemically polished crystals (right)