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A complete multifluid model for bipolar semiconductors, with interacting carriers, phonons, and photons

机译:双极半导体的完整多流体模型,具有相互作用的载体,声子和光子

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If electrons (e) and holes (h) in metals or semiconductors are heated to the temperatures T-e and T-h greater than the lattice temperature, the electron-phonon interaction causes energy relaxation. In the non-uniform case a momentum relaxation occurs as well. In view of such an application, a new model, based on an asymptotic procedure for solving the kinetic equations of carriers, phonons, and photons, is proposed, which gives naturally the displaced Maxwellian at the leading order. Several generation-recombination (GR) events occur in bipolar semiconductors. In the presence of photons the most important ones are the radiative GR events, direct, indirect, and exciton-catalyzed. Phonons and photons are treated here as a participating species, with their own equation. All the phonon-photon interactions are accounted for. Moreover, carrier-photon (Compton) interactions are introduced, which make complete the model. After that, balance equations for the electron number, hole number, energy densities, and momentum densities are constructed, which constitute now a system of macroscopic equations for the chemical potentials (carriers), the temperatures (carriers and bosons), and the drift velocities (carriers and bosons). In the drift-diffusion approximation the constitutive laws are derived and the Onsager relations recovered, even in the presence of an external magnetic field.
机译:如果金属或半导体中的电子(E)和孔(H)被加热到高于晶格温度的温度T-E和T-H,则电子 - 声子相互作用导致能量松弛。在非均匀的情况下,也发生动量松弛。鉴于这种应用,提出了一种基于用于解决载流子,声子和光子的动力学方程的渐近程序的新模型,这在领先订单中自然地给出了所流离失所的Maxwellian。几种一代重组(GR)事件发生在双极半导体中。在光子存在下,最重要的是辐射GR事件,直接,间接和激子催化。声子和光子在此处理为参与物种,其等式。占了所有Phonon-Photon互动。此外,引入了载体 - 光子(康普顿)相互作用,其完成了模型。之后,构建电子数,孔数,能量密度和动量密度的平衡方程,其构成了用于化学电位(载体),温度(载体和玻源)的宏观方程的系统,以及漂移速度(运输车和玻色子)。在漂移扩散近似值中,即使在存在外部磁场的情况下,也导出了本构规则,并且恢复了onEnager关系。

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