Balram Ajit C, Tőke Csaba, Jain J K
Department of Physics, 104 Davey Lab, Pennsylvania State University, University Park, Pennsylvania 16802, USA.
BME-MTA Exotic Quantum Phases "Lendület" Research Group, Budapest University of Technology and Economics, Institute of Physics, Budafoki út 8, H-1111 Budapest, Hungary.
Phys Rev Lett. 2015 Oct 30;115(18):186805. doi: 10.1103/PhysRevLett.115.186805. Epub 2015 Oct 29.
While an ordinary Fermi sea is perturbatively robust to interactions, the paradigmatic composite-fermion (CF) Fermi sea arises as a nonperturbative consequence of emergent gauge fields in a system where there was no Fermi sea to begin with. A mean-field picture suggests two Fermi seas, of composite fermions made from electrons or holes in the lowest Landau level, which occupy different areas away from half filling and thus appear to represent distinct states. Using the microscopic theory of composite fermions, which satisfies particle-hole symmetry in the lowest Landau level to an excellent approximation, we show that the Fermi wave vectors at filling factors ν and 1-ν are equal when expressed in units of the inverse magnetic length, and are generally consistent with the experimental findings of Kamburov et al. [Phys. Rev. Lett. 113, 196801 (2014)]. Our calculations suggest that the area of the CF Fermi sea may slightly violate the Luttinger area rule.
虽然普通费米海对相互作用具有微扰稳健性,但典型的复合费米子(CF)费米海是在一个原本不存在费米海的系统中,由涌现规范场的非微扰结果产生的。平均场图像表明存在两个费米海,它们由最低朗道能级中的电子或空穴构成的复合费米子组成,占据远离半填充的不同区域,因此似乎代表不同的状态。利用复合费米子的微观理论,该理论在最低朗道能级中极好地满足粒子 - 空穴对称性,我们表明,当以逆磁长度为单位表示时,填充因子为ν和1 - ν时的费米波矢相等,并且总体上与坎布罗夫等人的实验结果一致[《物理评论快报》113, 196801 (2014)]。我们的计算表明,CF费米海的面积可能会略微违反卢廷格面积规则。