• Title/Summary/Keyword: Geiger-mode APD

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3-Dimensional LADAR Optical Detector Development in Geiger Mode Operation (Geiger Mode로 동작하는 3차원 LADAR 광수신기 개발)

  • Choi, Soon-Gyu;Shin, Jung-Hwan;Kang, Sang-Gu;Hong, Jung-Ho;Kwon, Yong-Joon;Kang, Eung-Cheol;Lee, Chang-Jae
    • Korean Journal of Optics and Photonics
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    • v.24 no.4
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    • pp.176-183
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    • 2013
  • In this paper, we report the design, fabrication and characterization of the 3-Dimensional optical receiver for a Laser Detection And Ranging (LADAR) system. The optical receiver is composed of three parts; $16{\pm}16$ Geiger Mode InGaAs Avalanche Photodiode (APD) array device operated at 1560 nm wavelength, Read Out Integrated Circuit (ROIC) measuring the Time-Of-Flight (TOF) of the return signal reflected from target objects, a package and cooler maintaining the proper operational condition of the detector and control electronics. We can confirm that the LADAR system can detect the signal from a target up to 1.2 km away, and it showed low Dark Count Rate (DCR) of less than 140 kHz, and higher than 28%-Photon Detection Efficiency (PDE). This is considered to be the best performance of the $16{\pm}16$ FPA APD optical receiver for a LADAR system.

Geiger-mode characteristics of avalanche photodiodes for low-light-level detection at 1.55 ${\mu}$m (1.55 ${\mu}$m파장의 저광량을 검출을 위한 APD의 자이거 모드 특성)

  • Jang, Hyeon-Ju;Hwang, In-Gak;Choe, Yong-Seok;Lee, Yong-Hui
    • Proceedings of the Optical Society of Korea Conference
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    • 2004.02a
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    • pp.288-289
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    • 2004
  • The performance of the InGaAs/InP avalanche photodidodes operated in Geiger-mode was investigated for 1550nm wavelengths at room temperature. We find the optimal operating points where the high quantum detection efficiency and low dark current are achieved. For the optical pulse detection, the gated-mode is used to reduce the dark current.

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양자암호시스템을 위한 단일광자검출기

  • Lee, Min-Su;Kim, Yong-Su;Han, Sang-Uk;Mun, Seong-Uk
    • Information and Communications Magazine
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    • v.32 no.8
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    • pp.62-68
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    • 2015
  • 본고에서는 차세대 보안통신 기술로 주목 받고 있는 양자암호시스템의 핵심 모듈인 단일광자 검출기의 최신 연구동향과 KIST 연구개발 내용에 대해 기술한다. 현재 상용화 수준으로까지 발전한 유선 양자암호 시스템에서는 성능, 소형화, 가격 등의 장점으로 인해 주로 InGaAs/InP avalanche photo diode (APD)를 이용한 단일광자검출기가 사용되고 있다. 유선 양자암호에서 사용하는 1550nm 통신 파장대의 단일광자가 갖는 에너지는 0.8 eV로 매우 미약한 수준이기 때문에 신호 검출을 위해 APD소자를 내부 증폭 이득이 무한대인 가이거모드(Geiger mode)에서 동작시킨다. 매우 높은 증폭비는 신호 검출뿐만 아니라 노이즈에도 동일하게 영향을 미치기 때문에 주변환경 노이즈에 의한 검출기 오동작 문제가 심각하게 발생한다. 따라서 단일광자검출기 구현에서 가장 중요한 기술은 소자 및 검출기 모듈에서 발생하는 노이즈의 영향을 최소화 시켜주는 것이다. 전세계적으로 검출기의 대표적인 노이즈인 after pulse를 저감 시키기 위한 연구가 매우 활발히 이루어지고 있는데 대표적으로 self-differencing, auxiliary signal, integrating, double balanced 등의 방법이 제시되고 있다. 본고에서는 각각의 최신 기술들에 대한 비교 분석 및 이를 바탕으로 현재 KIST에서 진행하고 있는 양자암호시스템을 위한 단일광자검출기 기술 개발에 대해 서술한다.

Improved Circuits for Single-photon Avalanche Photodiode Detectors

  • Kim, Kyunghoon;Lee, Junan;Song, Bongsub;Burm, Jinwook
    • JSTS:Journal of Semiconductor Technology and Science
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    • v.14 no.6
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    • pp.789-796
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    • 2014
  • A CMOS photo detection bias quenching circuit is developed to be used with single photon avalanche photodiodes (SPADs) operating in Geiger mode for the detection of weak optical signals. The proposed bias quenching circuits for the performance improvement reduce the circuit size as well as improve the performance of the quenching operation. They are fabricated in a $0.18-{\mu}m$ standard CMOS technology to verify the effectiveness of this technique with the chip area of only $300{\mu}m^2$, which is about 60 % of the previous reported circuit. Two types of proposed circuits with resistive and capacitive load demonstrated improved performance of reduced quenching time. With a commercial APD by HAMAMATSU, the dead time can be adjusted as small as 50 ns.

Outlier Detection from High Sensitive Geiger Mode Imaging LIDAR Data retaining a High Outlier Ratio (높은 이상점 비율을 갖는 고감도 가이거모드 영상 라이다 데이터로부터 이상점 검출)

  • Kim, Seongjoon;Lee, Impyeong;Lee, Youngcheol;Jo, Minsik
    • Korean Journal of Remote Sensing
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    • v.28 no.5
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    • pp.573-586
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    • 2012
  • Point clouds acquired by a LIDAR(Light Detection And Ranging, also LADAR) system often contain erroneous points called outliers seeming not to be on physical surfaces, which should be carefully detected and eliminated before further processing for applications. Particularly in case of LIDAR systems employing with a Gieger-mode array detector (GmFPA) of high sensitivity, the outlier ratio is significantly high, which makes existing algorithms often fail to detect the outliers from such a data set. In this paper, we propose a method to discriminate outliers from a point cloud with high outlier ratio acquired by a GmFPA LIDAR system. The underlying assumption of this method is that a meaningful targe surface occupy at least two adjacent pixels and the ranges from these pixels are similar. We applied the proposed method to simulated LIDAR data of different point density and outlier ratio and analyzed the performance according to different thresholds and data properties. Consequently, we found that the outlier detection probabilities are about 99% in most cases. We also confirmed that the proposed method is robust to data properties and less sensitive to the thresholds. The method will be effectively utilized for on-line realtime processing and post-processing of GmFPA LIDAR data.