分数阶量子反常霍尔态的单粒子谱函数

IF 3.7 2区 物理与天体物理 Q1 Physics and Astronomy
Fabian Pichler, Wilhelm Kadow, Clemens Kuhlenkamp, Michael Knap
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引用次数: 0

摘要

分数阶量子霍尔态是具有拓扑有序态的最突出的例子,承载着带有分数阶电荷的激励。最近在扭曲MoTe2和石墨烯基异质结构中的实验提供了分数量子反常霍尔(FQAH)态的证据,这些态可以自发地打破时间反转对称性并在没有外部磁场的情况下持续存在。理解这些状态的独特性质需要表征它们的低能量激发。为此,我们建立了FQAH态能量和动量分辨的单粒子谱函数的部分子理论。我们明确地考虑了几个实验观察到的填充分数以及半填充陈恩带中的复合费米液体。电荷分馏表现在几乎与动量无关的光谱中,其特征峰系列由填充分数确定。部分描述定性地捕获了我们的数值精确对角化结果。此外,我们还讨论了陈恩带的有限带宽和非理想量子几何对分数化激发的影响。我们的工作表明,能量和动量分辨的电子单粒子谱函数提供了一个有价值的工具来表征微晶格中FQAH态的分形激发。2025年由美国物理学会出版
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Single-particle spectral function of fractional quantum anomalous Hall states
Fractional quantum Hall states are the most prominent example of states with topological order, hosting excitations with fractionalized charge. Recent experiments in twisted MoTe2 and graphene-based heterostructures provided evidence of fractional quantum anomalous Hall (FQAH) states, which spontaneously break time-reversal symmetry and persist even without an external magnetic field. Understanding the unique properties of these states requires the characterization of their low-energy excitations. To that end, we construct a parton theory for the energy- and momentum-resolved single-particle spectral function of FQAH states. We explicitly consider several experimentally observed filling fractions as well as a composite Fermi liquid in the half-filled Chern band. Charge fractionalization manifests itself in nearly momentum-independent spectra with a characteristic series of peaks determined from the filling fraction. The parton description qualitatively captures our numerical exact diagonalization results. Additionally, we discuss how the finite bandwidth of the Chern band and the nonideal quantum geometry affect the fractionalized excitations. Our work demonstrates that the energy- and momentum-resolved electronic single-particle spectral function provides a valuable tool to characterize fractionalized excitations of FQAH states in moiré lattices. Published by the American Physical Society 2025
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来源期刊
Physical Review B
Physical Review B 物理-物理:凝聚态物理
CiteScore
6.70
自引率
32.40%
发文量
0
审稿时长
3.0 months
期刊介绍: Physical Review B (PRB) is the world’s largest dedicated physics journal, publishing approximately 100 new, high-quality papers each week. The most highly cited journal in condensed matter physics, PRB provides outstanding depth and breadth of coverage, combined with unrivaled context and background for ongoing research by scientists worldwide. PRB covers the full range of condensed matter, materials physics, and related subfields, including: -Structure and phase transitions -Ferroelectrics and multiferroics -Disordered systems and alloys -Magnetism -Superconductivity -Electronic structure, photonics, and metamaterials -Semiconductors and mesoscopic systems -Surfaces, nanoscience, and two-dimensional materials -Topological states of matter
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