Simulation of THz Oscillations in Semiconductor Devices Based on Balance Equations

Author:

Linn TobiasORCID,Bittner Kai,Brachtendorf Hans Georg,Jungemann Christoph

Abstract

AbstractInstabilities of electron plasma waves in high-mobility semiconductor devices have recently attracted a lot of attention as a possible candidate for closing the THz gap. Conventional moments-based transport models usually neglect time derivatives in the constitutive equations for vectorial quantities, resulting in parabolic systems of partial differential equations (PDE). To describe plasma waves however, such time derivatives need to be included, resulting in hyperbolic rather than parabolic systems of PDEs; thus the fundamental nature of these equation systems is changed completely. Additional nonlinear terms render the existing numerical stabilization methods for semiconductor simulation practically useless. On the other hand there are plenty of numerical methods for hyperbolic systems of PDEs in the form of conservation laws. Standard numerical schemes for conservation laws, however, are often either incapable of correctly handling the large source terms present in semiconductor devices due to built-in electric fields, or rely heavily on variable transformations which are specific to the equation system at hand (e.g. the shallow water equations), and can not be generalized easily to different equations. In this paper we develop a novel well-balanced numerical scheme for hyperbolic systems of PDEs with source terms and apply it to a simple yet non-linear electron transport model.

Funder

Deutsche Forschungsgemeinschaft

Austrian Science Fund

Publisher

Springer Science and Business Media LLC

Subject

Computational Theory and Mathematics,General Engineering,Theoretical Computer Science,Software,Applied Mathematics,Computational Mathematics,Numerical Analysis

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1. Modeling of Antenna-Coupled Si MOSFETs in the Terahertz Frequency Range;IEEE Transactions on Terahertz Science and Technology;2024-05

2. Device Simulation of the Dyakonov-Shur Plasma Instability for THz Wave Generation;2022 IEEE Latin American Electron Devices Conference (LAEDC);2022-07-04

3. Ultrafast dynamics of carriers and phonons of photoinjected double-plasma in aluminium nitride;Revista Mexicana de Física;2021-07-15

4. Hot carrier dynamics of photoinjected plasma in indium nitride;The European Physical Journal B;2021-04

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