Hadfield Robert H, Stevens Martin J, Gruber Steven S, Miller Aaron J, Schwall Robert E, Mirin Richard P, Nam Sae Woo
Opt Express. 2005 Dec 26;13(26):10846-53. doi: 10.1364/opex.13.010846.
Superconducting single photon detectors (SSPD) based on nanopatterned niobium nitride wires offer single photon counting at fast rates, low jitter, and low dark counts, from visible wavelengths well into the infrared. We demonstrate the first use of an SSPD, packaged in a commercial cryocooler, for single photon source characterization. The source is an optically pumped, microcavity-coupled InGaAs quantum dot, emitting single photons at 902 nm. The SSPD replaces the second silicon Avalanche Photodiode (APD) in a Hanbury-Brown Twiss interferometer measurement of the source second-order correlation function, g(2)( ?). The detection efficiency of the superconducting detector system is >2 % (coupling losses included). The SSPD system electronics jitter is 170 ps, versus 550 ps for the APD unit, allowing the source spontaneous emission lifetime to be measured with improved resolution.
基于纳米图案氮化铌线的超导单光子探测器(SSPD)能够在从可见光波长到红外波段实现快速单光子计数、低抖动和低暗计数。我们展示了首次将封装在商用低温冷却器中的SSPD用于单光子源表征。该单光子源是一个光泵浦、微腔耦合的InGaAs量子点,在902nm处发射单光子。在对该源的二阶关联函数g(2)(τ)进行的Hanbury-Brown Twiss干涉仪测量中,SSPD取代了第二个硅雪崩光电二极管(APD)。超导探测器系统的探测效率大于2%(包括耦合损耗)。SSPD系统电子学抖动为170ps,而APD单元为550ps,从而能够以更高的分辨率测量源的自发发射寿命。