Title :
Comprehensive Characterization of InGaAs–InP Avalanche Photodiodes at 1550 nm With an Active Quenching ASIC
Author :
Zhang, Jun ; Thew, Rob ; Gautier, Jean-Daniel ; Gisin, Nicolas ; Zbinden, Hugo
Author_Institution :
Group of Appl. Phys., Univ. of Geneva, Geneva
fDate :
7/1/2009 12:00:00 AM
Abstract :
We present an active quenching application-specific integrated circuit (ASIC), for use in conjunction with InGaAs-InP avalanche photodiodes (APDs), for 1550-nm single-photon detection. To evaluate its performance, we first compare its operation with that of standard quenching electronics. We then test four InGaAs-InP APDs using the ASIC, operating both in the free-running and gated modes, to study more general behavior. We investigate not only the standard parameters under different working conditions but also parameters such as charge persistence and quenching time. We also use the multiple trapping model to account for the afterpulsing behavior in the gated mode, and further propose a model to take account of the afterpulsing effects in the free-running mode. Our results clearly indicate that the performance of APDs with an on-chip quenching circuit significantly surpasses the conventional quenching electronics and makes them suitable for practical applications, e.g., quantum cryptography.
Keywords :
III-V semiconductors; application specific integrated circuits; avalanche photodiodes; gallium arsenide; indium compounds; integrated optoelectronics; quantum optics; radiation quenching; InGaAs-InP; active quenching ASIC; afterpulsing effect; application-specific integrated circuit; avalanche photodiode comprehensive characterization; free-running mode; gated mode; multiple trapping model; on-chip quenching circuit; single-photon detection; standard quenching electronics; wavelength 1550 nm; Absorption; Application specific integrated circuits; Avalanche photodiodes; Circuit testing; Cryptography; Electronic equipment testing; Employee welfare; Impact ionization; Indium gallium arsenide; Indium phosphide; ASIC; SPAD; avalanche photodiodes (APDs); quantum cryptography; single-photon detection; telecom wavelengths;
Journal_Title :
Quantum Electronics, IEEE Journal of
DOI :
10.1109/JQE.2009.2013210