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具有少量平面和费米子能隙产生的约化量子电动力学

Reduced QED with Few Planes and Fermion Gap Generation.

作者信息

Gorbar Eduard V, Gusynin Valery P, Parymuda Maxim R

机构信息

Department of Physics, Taras Shevchenko National Kyiv University, 03022 Kyiv, Ukraine.

Bogolyubov Institute for Theoretical Physics, 03143 Kyiv, Ukraine.

出版信息

Entropy (Basel). 2023 Sep 9;25(9):1317. doi: 10.3390/e25091317.

Abstract

The formalism of reduced quantum electrodynamics is generalized to the case of heterostructures composed of a few atomically thick layers, and the corresponding effective (2+1)-dimensional gauge theory is formulated. This dimensionally reduced theory describes charged fermions confined to planes and contains vector fields with Maxwell's action modified by non-local form factors whose explicit form is determined. Taking into account the polarization function, the explicit formulae for the screened electromagnetic interaction are presented in the case of two and three layers. For a heterostructure with two atomically thick layers and charged fermions described by the massless Dirac equation, the dynamical gap generation of the excitonic type is studied. It is found that additional screening due to the second layer increases the value of the critical coupling constant for the gap generation compared to that in graphene.

摘要

约化量子电动力学的形式体系被推广到由几个原子厚度的层组成的异质结构情形,并构建了相应的有效(2 + 1)维规范理论。这个降维理论描述了局限于平面的带电费米子,并包含矢量场,其麦克斯韦作用由非局部形状因子修正,该形状因子的显式形式已确定。考虑到极化函数,给出了两层和三层情形下屏蔽电磁相互作用的显式公式。对于由两个原子厚度的层和由无质量狄拉克方程描述的带电费米子组成的异质结构,研究了激子型的动态能隙产生。结果发现,与石墨烯相比,由于第二层导致的额外屏蔽增加了能隙产生的临界耦合常数的值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7267/10528318/537665e45062/entropy-25-01317-g001.jpg

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