InGaAs/InP Avalanche Photodiode for Single Photon Detection with Zinc Diffusion Process Using Metal Organic Chemical Vapor Deposition

Authors
Lee, In JoonLee, Min SooKim, Min SuJun, Dong-HwanJeong, Hae YongKim, SanginHan, Sang-wookMoon, Sung
Issue Date
2016-05
Publisher
AMER SCIENTIFIC PUBLISHERS
Citation
JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, v.16, no.5, pp.5155 - 5158
Abstract
In this paper, we describe a design, simulation, and fabrication of an InGaAs/InP single photon avalanche photodiode (SPAD), which requires a much higher gain, compared to APD's for conventional optical communications. To achieve a higher gain, an efficient multiplication width control is essential because it significantly affects the overall performance including not only gain but also noise characteristics. Normally, the multiplication layer width is controlled by the Zinc diffusion process. For the reliable and controllable diffusion process, we used metal organic chemical vapor deposition (MOCVD). The controllability of the proposed diffusion process is proved by the diffusion depth measurement of the fabricated devices which show the proportional dependence on the square root of the diffusion time. As a result, we successfully implemented the SPAD that exhibits a high gain enough to detect single photons and a very low dark current level of about 0.1 nA with 0.95 breakdown voltage. The single photon detection efficiency of 15% was measured at the 100 kHz gate pulse rate and the temperature of 230 K.
Keywords
QUANTUM KEY DISTRIBUTION; HIGH-SPEED; MULTIPLICATION LAYERS; SUPPRESSION; QUANTUM KEY DISTRIBUTION; HIGH-SPEED; MULTIPLICATION LAYERS; SUPPRESSION; Avalanche Photodiode; Single Photon Detector; Quantum
ISSN
1533-4880
URI
https://pubs.kist.re.kr/handle/201004/124134
DOI
10.1166/jnn.2016.12245
Appears in Collections:
KIST Article > 2016
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