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Saturation of charge carrier velocity with increasing electric fields: Theoretical investigations for pure organic crystals - art. no. 205104

机译:电场增加时电荷载流子速度的饱和:纯有机晶体的理论研究-艺术。没有。 205104

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摘要

Should one expect injected charge carrier velocities to saturate as the applied electric field is increased simply because of the nonparabolicity of bands? Does the apparent saturation observed in recent experiments in hydrocarbon crystals signify, as supposed in some current interpretations of the data, that the carrier motion is coherent or bandlike and that the disappearance of the saturation at higher temperatures is indicative of a crossover from coherent to incoherent motion? These questions are addressed with the help of general theoretical investigations involving Drude-like considerations, quantum kinetic equations, and a Fokker-Planck analysis. [References: 31]
机译:仅仅由于带的非抛物线性,是否应该期望注入的电荷载流子速度随着施加电场的增加而饱和?正如当前对数据的某些解释所假定的那样,最近在烃晶体中观察到的表观饱和度是否表明载流子运动是相干的或带状的,并且在高温下饱和度的消失表明从相干到不相干的过渡运动?这些问题可以通过涉及德鲁德式考虑,量子动力学方程式和福克-普朗克分析的一般理论研究来解决。 [参考:31]

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