Dong Junkai, Wang Jie, Ledwith Patrick J, Vishwanath Ashvin, Parker Daniel E
Department of Physics, Harvard University, Cambridge, Massachusetts 02138, USA.
Center of Mathematical Sciences and Applications, Harvard University, Cambridge, Massachusetts 02138, USA.
Phys Rev Lett. 2023 Sep 29;131(13):136502. doi: 10.1103/PhysRevLett.131.136502.
The pursuit of exotic phases of matter outside of the extreme conditions of a quantizing magnetic field is a long-standing quest of solid state physics. Recent experiments have observed spontaneous valley polarization and fractional Chern insulators in zero magnetic field in twisted bilayers of MoTe_{2}, at partial filling of the topological valence band (ν=-2/3 and -3/5). We study the topological valence band at half filling, using exact diagonalization and density matrix renormalization group calculations. We discover a composite Fermi liquid (CFL) phase even at zero magnetic field that covers a large portion of the phase diagram near twist angle ∼3.6°. The CFL is a non-Fermi liquid phase with metallic behavior despite the absence of Landau quasiparticles. We discuss experimental implications including the competition between the CFL and a Fermi liquid, which can be tuned with a displacement field. The topological valence band has excellent quantum geometry over a wide range of twist angles and a small bandwidth that is, remarkably, reduced by interactions. These key properties stabilize the exotic zero field quantum Hall phases. Finally, we present an optical signature involving "extinguished" optical responses that detects Chern bands with ideal quantum geometry.
在没有量子化磁场的极端条件下探索奇异物质相是固态物理学长期以来的追求。最近的实验在MoTe₂ 扭曲双层的零磁场中,在拓扑价带部分填充(ν = -2/3和-3/5)时观察到了自发谷极化和分数陈绝缘体。我们使用精确对角化和密度矩阵重整化群计算研究了半填充时的拓扑价带。我们发现即使在零磁场下也存在一个复合费米液体(CFL)相,它覆盖了扭曲角约为3.6°附近相图的很大一部分。CFL是一种非费米液体相,尽管没有朗道准粒子,但具有金属行为。我们讨论了实验意义,包括CFL与费米液体之间的竞争,这可以通过位移场进行调节。拓扑价带在很宽的扭曲角范围内具有出色的量子几何结构,并且带宽很小,值得注意的是,带宽会因相互作用而减小。这些关键特性稳定了奇异的零场量子霍尔相。最后,我们提出了一种涉及“熄灭”光学响应的光学特征,可用于检测具有理想量子几何结构的陈带。