Single-photon avalanche diodes (SPADs) that are sensitive to photons in the Short-wave infrared and extended short-wave infrared (SWIR and eSWIR) spectra are important components for communication, ranging, and low-light level imaging. The high gain, low excess noise factor, and widely tunable bandgap of AlxIn1-xAsySb1-yavalanche photodiodes (APDs) make them a suitable candidate for these applications. In this work, we report single-photon-counting results for a separate absorption, charge, and multiplication (SACM) Geiger-mode SPAD within a gated-quenching circuit. The single-photon avalanche probabilities surpass 80% at 80 K, corresponding with single-photon detection efficiencies of 33% and 12% at 1.55 µm and 2 µm, respectively.
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Yuan, Yuan ; Zheng, Jiyuan ; Rockwell, Ann K. ; March, Stephen D. ; Bank, Seth R. ; Campbell, Joe C. ( , IEEE Photonics Technology Letters)
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Yao, Ziheng ; Semenenko, Vyacheslav ; Zhang, Jiawei ; Mills, Scott ; Zhao, Xiaoguang ; Chen, Xinzhong ; Hu, Hai ; Mescall, Ryan ; Ciavatti, Thomas ; March, Stephen ; et al ( , Optics Express)
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Walker, Emily S. ; Muschinske, Sarah ; Brennan, Christopher J. ; Na, Seung Ryul ; Trivedi, Tanuj ; March, Stephen D. ; Sun, Yukun ; Yang, Tianhao ; Yau, Alice ; Jung, Daehwan ; et al ( , Physical Review Materials)