论文标题

二维Holstein的有机分子晶体的电子传输中的电子传输:非平衡的Green功能形式主义和Boltzmann传输框架(一种广义的数学解决方案)

Electronic Transport in Electron-Phonon Gas of Two-Dimensional Holstein's Organic Molecular-Crystal: Non-equilibrium Green's Function Formalism & Boltzmann Transport Framework (A Generalized Mathematical Solution)

论文作者

Bishnoi, Bhupesh

论文摘要

We have presented a consistent electronic transport framework for the two-dimensional extended Holstein's organic molecular-crystal based upon complete quantum-mechanical treatment through the non-equilibrium Green's function (NEGF) formalism and corresponding one-to-one semi-classical framework based upon Boltzmann transport theory for the narrow-bandwidth electronic energy organic semiconductor crystal material and device.在此过程中,我们通过Feynman的示意技术与声音和极性声音模式与声音和极性声音模式进行了电子自我能量相互作用,以研究合并的电子传输。此外,基于现代有机设备行业的特定有机半导体晶体和有机聚合物,上述可以轻松扩展三个和四个声子相互作用。

We have presented a consistent electronic transport framework for the two-dimensional extended Holstein's organic molecular-crystal based upon complete quantum-mechanical treatment through the non-equilibrium Green's function (NEGF) formalism and corresponding one-to-one semi-classical framework based upon Boltzmann transport theory for the narrow-bandwidth electronic energy organic semiconductor crystal material and device. In this process, we have formulated electronic self-energy interaction with acoustic and polar optical phonon mode with one phonon and two phonon interactions through Feynman's diagrammatic techniques to investigate combined electronic transport. Furthermore, the aforementioned can readily expand for the three and four phonon interactions on choice based upon the particular class of organic semiconductor crystal and organic polymers for the modern organic device industry.

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