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首页> 外文期刊>The European physical journal. Applied physics >Numerical investigation of the effect of optical pulse position on the response of an unbiased BGMSM photodetector using ADI method
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Numerical investigation of the effect of optical pulse position on the response of an unbiased BGMSM photodetector using ADI method

机译:利用ADI方法对光脉冲位置对无偏BGMSM光电探测器响应的影响进行数值研究

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摘要

A numerical method for describing the electrical response of a Back-Gated Metal-Semiconductor- Metal Photodetector (BGMSM-PD) to an impinging optical pulse on the active region of the device is presented. In the absence of external voltage, the main mechanism for the transport of photo-generated carriers is diffusion mechanism. Two nonlinear differential equations describe the behavior of photocarriers' densities in the device medium with respect to time and position. Having linearized the parabolic partial differential equations, the time evolution of carrier densities is calculated using the Alternating Direction Implicit (ADI) method. The numerical results show good agreement with the experimental data. Both experimental and numerical findings confirm that the electrical response of the device to optical pulses with spatial FWHM comparable with the width of the active region is dependent on pulse position on the active region. This feature of the device makes it to be a good candidate as position sensors in places where micro-positioning is required.
机译:提出了一种数值方法,用于描述背栅金属半导体金属光电探测器(BGMSM-PD)对器件有源区域上入射光脉冲的电响应。在没有外部电压的情况下,光生载流子传输的主要机制是扩散机制。两个非线性微分方程描述了器件介质中光载流子的密度相对于时间和位置的行为。将抛物线偏微分方程线性化后,使用交替方向隐式(ADI)方法计算载流子密度的时间演化。数值结果与实验数据吻合良好。实验和数值结果均证实,器件对具有与有源区的宽度相当的空间FWHM的光脉冲的电响应取决于有源区上的脉冲位置。该设备的这一特性使其成为需要微定位的位置的位置传感器的理想选择。

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