A silicon avalanche photodiode for single optical photon counting in the Geiger mode

1997 ◽  
Vol 60 (1-3) ◽  
pp. 98-102 ◽  
Author(s):  
W.J Kindt ◽  
N.H Shahrjerdy ◽  
H.W van Zeijl
Author(s):  
Takeshi Nakamori ◽  
Yuga Ouchi ◽  
Risa Ogihara ◽  
Toshio Terasawa ◽  
Yuhei Kato ◽  
...  

Abstract We have developed a sensor system based on an optical photon-counting imager with high timing resolution, aiming for highly time-variable astronomical phenomena. The detector is a monolithic Geiger-mode avalanche photodiode array customized in a Multi-Pixel Photon Counter with a response time on the order of nanoseconds. This paper evaluates the basic performance of the sensor and confirms the gain linearity, uniformity, and low dark count. We demonstrate the system’s ability to detect the period of a flashing light-emitting diode, using a data acquisition system developed to obtain the light curve with a time bin of 100 μs. The Crab pulsar was observed using a 35-cm telescope without cooling, and the equipment detected optical pulses with a period consistent with the data from the radio ephemeris. Although improvements to the system will be necessary for more reliability, the system has been proven to be a promising device for exploring the time-domain optical astronomy.


2012 ◽  
Vol 49 (12) ◽  
pp. 121202
Author(s):  
王弟男 Wang Dinan ◽  
陈长青 Chen Changqing ◽  
王挺峰 Wang Tingfeng

2013 ◽  
Vol 10 (10) ◽  
pp. 105201 ◽  
Author(s):  
Hui-Ming Qu ◽  
Yi-Fan Zhang ◽  
Zhong-Jie Ji ◽  
Qian Chen

Author(s):  
Brian F. Aull ◽  
Daniel R. Schuette ◽  
Douglas J. Young ◽  
David M. Craig ◽  
Bradley J. Felton ◽  
...  

Entropy ◽  
2021 ◽  
Vol 23 (11) ◽  
pp. 1499
Author(s):  
Mingwei Huang ◽  
Zijing Zhang ◽  
Jiaheng Xie ◽  
Jiahuan Li ◽  
Yuan Zhao

Photon counting lidar for long-range detection faces the problem of declining ranging performance caused by background noise. Current anti-noise methods are not robust enough in the case of weak signal and strong background noise, resulting in poor ranging error. In this work, based on the characteristics of the uncertainty of echo signal and noise in photon counting lidar, an entropy-based anti-noise method is proposed to reduce the ranging error under high background noise. Firstly, the photon counting entropy, which is considered as the feature to distinguish signal from noise, is defined to quantify the uncertainty of fluctuation among photon events responding to the Geiger mode avalanche photodiode. Then, the photon counting entropy is combined with a windowing operation to enhance the difference between signal and noise, so as to mitigate the effect of background noise and estimate the time of flight of the laser pulses. Simulation and experimental analysis show that the proposed method improves the anti-noise performance well, and experimental results demonstrate that the proposed method effectively mitigates the effect of background noise to reduce ranging error despite high background noise.


2020 ◽  
Vol 237 ◽  
pp. 07026
Author(s):  
Peng Ge ◽  
Cong Chen ◽  
Zhen Shang ◽  
Yanen Fan ◽  
Jingjing Guo ◽  
...  

Photon-counting detector array is very desired for high-resolution laser imaging based on direct time-of-flight measurement. Such systems have potential applications in remote sensing with long distances. We will perform three-dimensional imaging using a large InGaAs Geiger-mode avalanche photodiode array which has single-photon sensitivity. To improve the image quality with only a few photon detections, the photon counting imaging process is analyzed and a regularization method based on pixel spatial correlation is employed for image reconstruction. The performance of the method is compared with that of conventional maximum likelihood estimation on intensity and range image reconstructions of a building about six hundred meters away.


2008 ◽  
Author(s):  
Rengarajan Sudharsanan ◽  
Ping Yuan ◽  
Joseph Boisvert ◽  
Paul McDonald ◽  
Takahiro Isshiki ◽  
...  

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