Magnetoquantum Oscillations in the Specific Heat of a Topological Kondo Insulator
arXiv:2204.05392 · doi:10.1088/1361-648X/ac7d2b
Abstract
Surprisingly, magnetoquantum oscillations (MQO) characteristic of a metal with a Fermi surface have been observed in measurements of the topological Kondo insulator SmB6. As these MQO have only been observed in measurements of magnetic torque (dHvA) and not in measurements of magnetoresistance (SdH), a debate has arisen as to whether the MQO are an extrinsic effect arising from rare-earth impurities, defects, and/or aluminum inclusions or an intrinsic effect revealing the existence of charge-neutral excitations. We report here the first observation of magnetoquantum oscillations in the low-temperature specific heat of SmB6. The observed frequencies and their angular dependence for these flux-grown samples are consistent with previous results based on magnetic torque for SmB6 but the inferred effective masses are significantly larger than previously reported. Such oscillations can only be observed if the MQO are of bulk thermodynamic origin; the measured magnetic-field dependent oscillation amplitude and effective mass allow us to rule out suggestions of an extrinsic, aluminium inclusion-based origin for the MQO.
arXiv admin note: substantial text overlap with arXiv:2111.03758
References in corpus (5)
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Cited by in corpus (4)
- Quantum Oscillations in the Magnetisation and Density of States of Insulators
- Wide Range Thin-FIlm Ceramic Metal-Alloy Thermometers with Low Magnetoresistance
- Resolving the Thermal Paradox: Many-body localization or fractionalization?
- Theoretical investigation of quantum oscillations of specific heat in Kondo insulators