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- W3045759914 abstract "Abstract In this paper, using finite element method, a Back-Gated metal-semiconductor-metal photodetector is numerically modeled and compared with the experimental results. To do this, the time-dependent continuity equations coupled with Poisson's equation have been scaled down, discretized in two space dimensions, and solved for nn, np, and ϕ variables by the Galerkin method. The I–V characteristics of this photodetector are obtained to check the validity of our calculation. The transient response of the device and their FWHM are calculated at different negative voltage applied to the back-gate. We found that the transient response of the BGMSM photodetector is highly sensitive to the beam position and, also, the FWHM is decreased with increasing the back-gating voltage. Besides, the electrostatic potential, electron, and hole number of densities profiles are numerically presented." @default.
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- W3045759914 date "2020-11-01" @default.
- W3045759914 modified "2023-10-17" @default.
- W3045759914 title "Numerical and experimental study of a Back-Gated metal-semiconductor-metal photodetector using finite element method" @default.
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- W3045759914 doi "https://doi.org/10.1016/j.physb.2020.412406" @default.
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