DocumentCode :
1121313
Title :
Single-Photon Detection System for Quantum Optics Applications
Author :
Korneev, Alexander ; Vachtomin, Yury ; Minaeva, Olga ; Divochiy, Alexander ; Smirnov, Konstantin ; Okunev, Oleg ; Gol´tsman, Gregory ; Zinoni, C. ; Chauvin, Nicolas ; Balet, Laurent ; Marsili, Francesco ; Bitauld, David ; Alloing, Blandine ; Li, Lianhe ;
Author_Institution :
Dept. of Physics, Moscow State Pedagogical Univ., Moscow, Russia
Volume :
13
Issue :
4
fYear :
2007
Firstpage :
944
Lastpage :
951
Abstract :
We describe the design and characterization of a fiber-coupled double-channel single-photon detection system based on superconducting single-photon detectors (SSPD), and its application for quantum optics experiments on semiconductor nanostructures. When operated at 2-K temperature, the system shows 10% quantum efficiency at 1.3-¿m wavelength with dark count rate below 10 counts per second and timing resolution <100 ps. The short recovery time and absence of afterpulsing leads to counting frequencies as high as 40 MHz. Moreover, the low dark count rate allows operation in continuous mode (without gating). These characteristics are very attractive-as compared to InGaAs avalanche photodiodes-for quantum optics experiments at telecommunication wavelengths. We demonstrate the use of the system in time-correlated fluorescence spectroscopy of quantum wells and in the measurement of the intensity correlation function of light emitted by semiconductor quantum dots at 1300 nm.
Keywords :
III-V semiconductors; avalanche photodiodes; fluorescence spectroscopy; gallium compounds; indium compounds; infrared detectors; photodetectors; photon counting; semiconductor quantum dots; semiconductor quantum wells; avalanche photodiodes; fiber coupled double channel single photon detection; intensity correlation function; light emittion; quantum efficiency; quantum optics applications; quantum wells; semiconductor nanostructures; semiconductor quantum dots; size 1300 nm; superconducting single photon detectors; temperature 2 K; time correlated fluorescence spectroscopy; wavelength 1.3 mum; Fluorescence; Frequency; Indium gallium arsenide; Optical design; Quantum dots; Semiconductor nanostructures; Spectroscopy; Stimulated emission; Temperature; Timing; Antibunching; single-photon sources; superconducting single-photon detectors (SSPD); superconducting thin films; time-correlated single-photon counting (TCSPC);
fLanguage :
English
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
1077-260X
Type :
jour
DOI :
10.1109/JSTQE.2007.903856
Filename :
4303044
Link To Document :
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