Wang Jie
Department of Physics, Princeton University, Princeton, New Jersey 08544, USA.
Phys Rev Lett. 2019 Jun 28;122(25):257203. doi: 10.1103/PhysRevLett.122.257203.
Composite Fermi liquids (CFLs) are compressible states that can occur for 2D interacting fermions confined in the lowest Landau level at certain Landau level fillings. They have been understood as Fermi seas formed by composite fermions which are bound states of electromagnetic fluxes and electrons as reported by Halperin, Lee, and Read [Phys. Rev. B 47, 7312 (1993)PRBMDO0163-182910.1103/PhysRevB.47.7312]. At half filling, an explicitly particle-hole symmetric theory based on Dirac fermions was proposed by Son [Phys. Rev. X 5, 031027 (2015)PRXHAE2160-330810.1103/PhysRevX.5.031027] as an alternative low energy description. In this work, we investigate the Berry curvature of CFL model wave functions at a filling fraction of one-quarter, and observe that it is uniformly distributed over the Fermi sea except at the center where an additional π phase was found. Motivated by this, we propose an effective theory which generalizes Son's half filling theory, by internal gauge flux attachment, to all filling fractions in which fermionic CFLs can occur. The numerical results support the idea of internal gauge flux attachment.
复合费米液体(CFLs)是一种可压缩态,它可能出现在二维相互作用费米子被限制在最低朗道能级且处于特定朗道能级填充率的情况下。正如哈尔珀林、李和里德所报道的那样[《物理评论B》47, 7312 (1993)PRBMDO0163 - 182910.1103/PhysRevB.47.7312],它们被理解为由复合费米子形成的费米海,复合费米子是电磁通量和电子的束缚态。在半填充时,索恩[《物理评论X》5, 031027 (2015)PRXHAE2160 - 330810.1103/PhysRevX.5.031027]提出了一种基于狄拉克费米子的明确的粒子 - 空穴对称理论,作为一种替代的低能描述。在这项工作中,我们研究了填充率为四分之一时CFL模型波函数的贝里曲率,并且观察到除了在发现有额外π相位的中心处,它在费米海上是均匀分布的。受此启发,我们提出了一种有效理论,通过内部规范通量附着,将索恩的半填充理论推广到所有可能出现费米子CFL的填充率。数值结果支持了内部规范通量附着的观点。