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Energy transport modeling of graded AlGaAs/GaAs HBTs: importance of giving adequate transport parameters

机译:梯度AlGaAs / GaAs HBT的能量输运模型:给出足够的输运参数的重要性

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AlGaAs/GaAs HBTs have received great interest for applications to high-speed and high-frequency devices and ICs. Since nonequilibrium carrier transport becomes important in the HBTs, carrier energy must be considered in the modeling of them. For this purpose, an energy transport model that uses hydrodynamic equations derived from the Boltzmann equation is attractive and has been applied to AlGaAs/GaAs HBTs. In the HBTs, material parameters should depend on material composition as well as carrier energy and the doping densities. However, up to now, methods of giving parameters in the transport equations were too crude. A constant value of energy relaxation time was assumed and parameters for GaAs at a certain doping density were also assumed for all x in Al/sub x/Ga/sub 1-x/As. In this work, a method of giving composition-, doping-, and energy-dependent transport parameters is proposed, and successfully applied to the simulation of AlGaAs/GaAs HBTs.
机译:AlGaAs / GaAs HBT对高速和高频设备和IC的应用引起了极大的兴趣。由于非平衡载流子传输在HBT中变得很重要,因此在对其进行建模时必须考虑载流子能量。为此,使用从玻耳兹曼方程式导出的流体动力学方程式的能量传输模型具有吸引力,并已应用于AlGaAs / GaAs HBT。在HBT中,材料参数应取决于材料组成以及载流子能量和掺杂密度。但是,到目前为止,在输运方程中给出参数的方法还太粗糙。对于Al / sub x / Ga / sub 1-x / As中的所有x,假定能量弛豫时间为常数,并假定在一定掺杂密度下GaAs的参数。在这项工作中,提出了一种给出组成,掺杂和能量相关的输运参数的方法,并将其成功地应用于AlGaAs / GaAs HBT的模拟。

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