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Semiclassical theory of shot noise in ballistic n+in+ semiconductor structures: relevance of Pauli and long range Coulomb interactions

机译:弹道n + in +半导体结构中散粒噪声的半经典理论:保利和远距离库仑相互作用的相关性

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摘要

We work out a semiclassical theory of shot noise in ballistic n+-i-n+ semiconductor structures aiming at studying two fundamental physical correlations coming from Pauli exclusion principle and long-range Coulomb interaction. The theory provides a unifying scheme which, in addition to the current-voltage characteristics, describes the suppression of shot noise due to Pauli and Coulomb correlations in the whole range of system parameters and applied bias. The whole scenario is summarized by a phase diagram in the plane of two dimensionless variables related to the sample length and contact chemical potential. Here different regions of physical interest can be identified where only Coulomb or only Pauli correlations are active, or where both are present with different relevance. The predictions of the theory are proven to be fully corroborated by Monte Carlo simulations.
机译:我们研究了弹道n + -i-n +半导体结构中散粒噪声的半经典理论,旨在研究来自Pauli排除原理和远程库仑相互作用的两个基本物理相关性。该理论提供了一种统一方案,该方案除了提供电流-电压特性外,还描述了在系统参数和施加偏置的整个范围内,由于Pauli和库仑相关性而引起的散粒噪声的抑制。在两个与样品长度和接触化学势有关的无量纲变量的平面中,通过相图概括了整个场景。在这里,只有库仑或保利相关性处于活动状态,或者两者都具有不同相关性,才能识别出不同的身体兴趣区域。蒙特卡罗模拟已完全证实了该理论的预测。

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