Pomarico Enrico, Sanguinetti Bruno, Thew Rob, Zbinden Hugo
Group of Applied Physics, University of Geneva, 1211 Geneva, Switzerland.
Opt Express. 2010 May 10;18(10):10750-9. doi: 10.1364/OE.18.010750.
In this paper we present a photon number resolving detector at infrared wavelengths, operating at room temperature and with a large dynamic range. It is based on the up-conversion of a signal at 1559 nm into visible wavelength and on its detection by a thermoelectrically cooled multi-pixel silicon avalanche photodiodode, also known as a Silicon Photon Multiplier. With the appropriate up-conversion this scheme can be implemented for arbitrary wavelengths above the visible spectral window. The preservation of the poissonian statistics when detecting coherent states is studied and the cross-talk effects on the detected signal can be easily estimated in order to calibrate the detector. This system is well suited for measuring very low intensities at infrared wavelengths and for analyzing multiphoton quantum states.
在本文中,我们展示了一种红外波长的光子数分辨探测器,它在室温下工作且具有大动态范围。它基于将1559nm的信号上转换为可见光波长,并通过热电冷却的多像素硅雪崩光电二极管(也称为硅光子倍增器)进行检测。通过适当的上转换,该方案可用于可见光光谱窗口以上的任意波长。研究了检测相干态时泊松统计的保留情况,并且可以很容易地估计对检测信号的串扰效应,以便校准探测器。该系统非常适合测量红外波长下的极低强度以及分析多光子量子态。