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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/20564
Title: Comprehensive Studies of High-Linearity Position-Sensitivity Detectors With Theoretical Consideration on Lateral Photovoltaic Currents
Authors: Chia-Hua Huang
Hao Lo
Chieh Lo
Wen-Shiung Lour 
Keywords: SOLAR-CELLS;SENSORS;SILICON
Issue Date: Sep-2020
Publisher: IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Journal Volume: 8
Journal Issue: 1
Start page/Pages: 92-98
Source: IEEE J ELECTRON DEVI
Abstract: 
Detective properties of a GaAs-based position sensitive detector (PSD) employing a very thin, highly doped p(& x002B;)-GaAs layer as a resistive layer were investigated. In addition to photovoltaic voltages, photovoltaic currents from a three-terminal PSD with two lateral electrodes and one transverse common electrode were also studied. In particular, lateral photovoltaic currents flowing into the two lateral electrodes and/or their differential values, instead of transverse photovoltaic currents were used as output signals. To do so, a PSD itself without power supply was proposed to realize its suitability for applications. When a 2 mW 638 nm light spot was used as an input, a position sensitivity of $38.5\mu \text{A}$ /mm, a correlation coefficient (or linearity) of & x003E; 0.999, and a nonlinearity (or position error) of 1.25& x0025; were obtained for our GaAs-based PSD with a long distance of 14 mm between two lateral electrodes. Besides, an equivalent circuit with a point solar cell was proposed to successfully explain these photovoltaic currents found in various configured 2-terminal and 3-terminal PSDs.
URI: http://scholars.ntou.edu.tw/handle/123456789/20564
ISSN: 2168-6734
DOI: 10.1109/JEDS.2020.2965200
Appears in Collections:07 AFFORDABLE & CLEAN ENERGY
電機工程學系

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