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金属中准粒子寿命的量子振荡。

Quantum oscillations of the quasiparticle lifetime in a metal.

机构信息

TUM School of Natural Sciences, Department of Physics, Technical University of Munich, Garching, Germany.

Munich Center for Quantum Science and Technology (MCQST), Munich, Germany.

出版信息

Nature. 2023 Sep;621(7978):276-281. doi: 10.1038/s41586-023-06330-y. Epub 2023 Aug 2.

DOI:10.1038/s41586-023-06330-y
PMID:37532938
Abstract

Following nearly a century of research, it remains a puzzle that the low-lying excitations of metals are remarkably well explained by effective single-particle theories of non-interacting bands. The abundance of interactions in real materials raises the question of direct spectroscopic signatures of phenomena beyond effective single-particle, single-band behaviour. Here we report the identification of quantum oscillations (QOs) in the three-dimensional topological semimetal CoSi, which defy the standard description in two fundamental aspects. First, the oscillation frequency corresponds to the difference of semiclassical quasiparticle (QP) orbits of two bands, which are forbidden as half of the trajectory would oppose the Lorentz force. Second, the oscillations exist up to above 50 K, in strong contrast to all other oscillatory components, which vanish below a few kelvin. Our findings are in excellent agreement with generic model calculations of QOs of the QP lifetime (QPL). Because the only precondition for their existence is a nonlinear coupling of at least two electronic orbits, for example, owing to QP scattering on defects or collective excitations, such QOs of the QPL are generic for any metal featuring Landau quantization with several orbits. They are consistent with certain frequencies in topological semimetals, unconventional superconductors, rare-earth compounds and Rashba systems, and permit to identify and gauge correlation phenomena, for example, in two-dimensional materials and multiband metals.

摘要

经过近一个世纪的研究,令人费解的是,非相互作用能带的有效单粒子理论能够非常好地解释金属的低激发态。在实际材料中存在大量相互作用,这就提出了一个问题,即是否存在超越有效单粒子、单能带行为的直接光谱特征。在这里,我们报告了在三维拓扑半金属 CoSi 中量子振荡(QO)的识别,这在两个基本方面违背了标准描述。首先,振荡频率对应于两个能带的半经典准粒子(QP)轨道的差异,由于轨迹的一半将与洛伦兹力相反,因此这一半轨道是被禁止的。其次,这些振荡在高达 50 K 以上的温度下存在,与所有其他振荡分量形成鲜明对比,后者在几开尔文以下就消失了。我们的发现与 QP 寿命(QPL)的 QO 的通用模型计算非常吻合。因为它们存在的唯一前提是至少两个电子轨道的非线性耦合,例如,由于 QP 在缺陷或集体激发上的散射,这种 QPL 的 QO 对于任何具有 Landau 量子化和多个轨道的金属都是通用的。它们与拓扑半金属、非常规超导体、稀土化合物和 Rashba 系统中的某些频率一致,并允许识别和衡量相关现象,例如在二维材料和多带金属中。

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本文引用的文献

1
Effect of the Interlayer Ordering on the Fermi Surface of Kagome Superconductor CsV_{3}Sb_{5} Revealed by Quantum Oscillations.量子振荡揭示层间有序对 Kagome 超导体 CsV₃Sb₅ 费米面的影响
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Network of Topological Nodal Planes, Multifold Degeneracies, and Weyl Points in CoSi.CoSi中拓扑节面网络、多重简并和外尔点
Phys Rev Lett. 2022 Jul 8;129(2):026401. doi: 10.1103/PhysRevLett.129.026401.
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Quasi-symmetry protected topology in a semi-metal.
半金属中的准对称保护拓扑结构。
Nat Phys. 2022 Jul;18(7):813-818. doi: 10.1038/s41567-022-01604-0. Epub 2022 May 16.
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Quantum Transport Evidence of Topological Band Structures of Kagome Superconductor CsV_{3}Sb_{5}.Kagome超导体CsV₃Sb₅拓扑能带结构的量子输运证据
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Strong Interminivalley Scattering in Twisted Bilayer Graphene Revealed by High-Temperature Magneto-Oscillations.高温磁振荡揭示扭曲双层石墨烯中的强谷间散射
Phys Rev Lett. 2021 Jul 30;127(5):056802. doi: 10.1103/PhysRevLett.127.056802.
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Anomalous Conductance Oscillations in the Hybridization Gap of InAs/GaSb Quantum Wells.砷化铟/锑化镓量子阱杂化能隙中的异常电导振荡。
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