Gromov Andrey, Cho Gil Young, You Yizhi, Abanov Alexander G, Fradkin Eduardo
Department of Physics and Astronomy, Stony Brook University, Stony Brook, New York 11794, USA.
Department of Physics and Institute for Condensed Matter Theory, University of Illinois, 1110 W. Green St., Urbana, Illinois 61801-3080, USA.
Phys Rev Lett. 2015 Jan 9;114(1):016805. doi: 10.1103/PhysRevLett.114.016805. Epub 2015 Jan 7.
We consider the geometric part of the effective action for the fractional quantum Hall effect (FQHE). It is shown that accounting for the framing anomaly of the quantum Chern-Simons theory is essential to obtain the correct gravitational linear response functions. In the lowest order in gradients, the linear response generating functional includes Chern-Simons, Wen-Zee, and gravitational Chern-Simons terms. The latter term has a contribution from the framing anomaly which fixes the value of thermal Hall conductivity and contributes to the Hall viscosity of the FQH states on a sphere. We also discuss the effects of the framing anomaly on linear responses for non-Abelian FQH states.
我们考虑分数量子霍尔效应(FQHE)有效作用量的几何部分。结果表明,考虑量子陈 - 西蒙斯理论的框架反常对于获得正确的引力线性响应函数至关重要。在梯度的最低阶,线性响应生成泛函包括陈 - 西蒙斯项、温 - 泽项和引力陈 - 西蒙斯项。后一项有来自框架反常的贡献,它确定了热霍尔电导率的值,并对球面上FQH态的霍尔黏度有贡献。我们还讨论了框架反常对非阿贝尔FQH态线性响应的影响。