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Characterisation of non- classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz Faculty of Physics University of Warsaw Poland Piotr Kolenderski Robert Frankowski Konrad Banaszek Institute of Physics Nicolaus Copernicus University Toruń, Poland

Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

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Page 1: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Characterisation of non-classical light sources for quantum information technologies

Characterisation of non-classical light sources for quantum information technologies

Wojciech WasilewskiMichał KarpińskiPiotr Wasylczyk

Czesław RadzewiczFaculty of Physics

University of WarsawPoland

Piotr KolenderskiRobert FrankowskiKonrad BanaszekInstitute of PhysicsNicolaus Copernicus UniversityToruń, Poland

Page 2: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Parametric down-conversionParametric down-conversion

sp

i

Energy conservation:

Momentum conservation:

p = s + i

kp ks + ki

Page 3: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Twin beamsTwin beams

Page 4: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Fibre couplingFibre coupling

Page 5: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Fourier Transform SpectroscopyFourier Transform Spectroscopy

Page 6: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Common-path interferometerCommon-path interferometer

Page 7: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Joint spectrum measurementJoint spectrum measurement

W. Wasilewski, P. Wasylczyk, P. Kolenderski, K. B., and C. Radzewicz,Opt. Lett. 31, 1130 (2006)

Page 8: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

InterferogramInterferogram

-100 -80 -60 -40 -20 0 20 40 60 80

-100

-80

-60

-40

-20

0

20

40

60

80

100

-100 -80 -60 -40 -20 0 20 40 60 80 100

-80

-60

-40

-20

0

20

40

60

80

100

Page 9: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Experiment vs. theoryExperiment vs. theory

Page 10: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Schmidt decompositionSchmidt decomposition

Page 11: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Mode pairsMode pairs

…what about the mode of one photon?

Page 12: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Two-photon interferenceTwo-photon interference

&

Probability amplitudes:

– + –

Photon indistinguishability =

mode matching

Page 13: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Coincidence probabilityCoincidence probability

&

Page 14: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Single pulseSingle pulse

t

t’

Page 15: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Double pulseDouble pulse

t

t’

Page 16: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Experimental schemeExperimental scheme

fLO

ALOr

t1 t2

&BS1 BS2

D2

D1M1

M2

W. Wasilewski, P. Kolenderski, and R. Frankowski,Phys. Rev. Lett. 99, 123601 (2007)

Page 17: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Simulated interferogramSimulated interferogram

Page 18: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Fourier transformFourier transform

Page 19: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Experimental setupExperimental setup

RegA

t1

t

X

FP C 50/ 50

D 1

D 2

I F

FC

D M

BGD M

I LFL

FC

PHW P

BS XSH

ND

W. Wasilewski, P. Kolenderski, and R. Frankowski,Phys. Rev. Lett. 99, 123601 (2007)

Page 20: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

ResultsResults

Page 21: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Output wave functionOutput wave function

Fiber coupling:

Brigthness: Purity:

Page 22: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

OptimizationOptimizationB

rig

htn

ess

Pu

rity

P. Kolenderski,W. Wasilewski, and K.B.,arXiv:0905.0009Phys. Rev. A (in press)

Geometric decorrelation:

A. U’Ren, K. B., and I. A. Walmsley, Quant. Inf. Comp. 3, 480 (2003).

Page 23: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Spectral filteringSpectral filtering

L = 1 mm, ws = wi = 100 mm, p = 100 fs

Page 24: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Multiphoton statisticsMultiphoton statistics

Losses

Page 25: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Multimode modelMultimode model

losses

losses Equivalent number of

(equally probable) modes

M

Squeezing strength r

Page 26: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Experimental setupExperimental setup

W. Wasilewski, C. Radzewicz, R. Frankowski, and K. Banaszek,Phys. Rev. A 78, 033831 (2008)

Page 27: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Two-beam photon statisticsTwo-beam photon statistics

Page 28: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Equivalent number of modesEquivalent number of modes

no filters 10 nm filters + 5 nm filters

Page 29: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Overall detection efficiencyOverall detection efficiency

no filters 10 nm filters + 5 nm filters

Page 30: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Contamination coefficientsContamination coefficients

Page 31: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Two-photon contaminationTwo-photon contamination

no filters 10 nm filters + 5 nm filters

Page 32: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Four-photon contaminationFour-photon contamination

No interference filters

Page 33: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

Non-linear waveguideNon-linear waveguide

M. Karpiński, C. Radzewicz, and K.B.,Appl. Phys. Lett. 94,181105 (2009)

Page 34: Characterisation of non-classical light sources for quantum information technologies Wojciech Wasilewski Michał Karpiński Piotr Wasylczyk Czesław Radzewicz

ConclusionsConclusions

• “Toolbox” for measuring spectral properties

• Modal structure an issue in multiphoton interference

• Spectral filtering sensible option for bulk sources

• Higher-order terms dangerous!