Panda Animesh, Banerjee Sumilan, Randeria Mohit
Centre for Condensed Matter Theory, Department of Physics, Indian Institute of Science, Bangalore 560012, India.
Department of Physics, The Ohio State University, Columbus, OH 43210.
Proc Natl Acad Sci U S A. 2022 Oct 18;119(42):e2208373119. doi: 10.1073/pnas.2208373119. Epub 2022 Oct 10.
The observation of [Formula: see text]-periodic behavior in Kondo insulators and semiconductor quantum wells challenges the conventional wisdom that quantum oscillations (QOs) necessarily arise from Fermi surfaces in metals. We revisit recently proposed theories for this phenomenon, focusing on a minimal model of an insulator with a hybridization gap between two opposite-parity light and heavy mass bands with an inverted band structure. We show that there are characteristic differences between the QO frequencies in the magnetization and the low-energy density of states (LE-DOS) of these insulators, in marked contrast to metals where all observables exhibit oscillations at the same frequency. The magnetization oscillations arising from occupied Landau levels occur at the same frequency that would exist in the unhybridized case. The LE-DOS oscillations in a disorder-free system are dominated by gap-edge states and exhibit a beat pattern between two distinct frequencies at low temperature. Disorder-induced in-gap states lead to an additional contribution to the DOS at the unhybridized frequency. The temperature dependence of the amplitude and phase of the magnetization and DOS oscillations are also qualitatively different and show marked deviations from the Lifshitz-Kosevich form well known in metals. We also compute transport to ensure that we are probing a regime with insulating upturns in the direct current (DC) resistivity.
在近藤绝缘体和半导体量子阱中观察到的[公式:见正文]周期性行为,挑战了量子振荡(QOs)必然源于金属费米面的传统观念。我们重新审视了最近针对这一现象提出的理论,重点关注一个具有相反宇称的轻质量和重质量能带之间存在杂化能隙且能带结构反转的绝缘体的最小模型。我们表明,这些绝缘体的磁化强度和低能态密度(LE-DOS)中的量子振荡频率存在特征差异,这与所有可观测量都以相同频率振荡的金属形成显著对比。由占据的朗道能级引起的磁化振荡频率与未杂化情况下的频率相同。在无无序系统中,LE-DOS振荡由能隙边缘态主导,并且在低温下在两个不同频率之间呈现拍频模式。无序诱导的能隙态会在未杂化频率处对态密度产生额外贡献。磁化强度和态密度振荡的幅度和相位的温度依赖性在定性上也有所不同,并且与金属中众所周知的 Lifshitz-Kosevich 形式有明显偏差。我们还计算了输运性质,以确保我们所研究的是直流(DC)电阻率出现绝缘性上升的区域。