Inhomogeneity identification by measuring magnetic quantum oscillations

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초록

This study explores the identification of sample inhomogeneity via magnetic quantum oscillations analysis in semimetal NbSb2. By doping Bi and Cr, we obtained a homogenous Bi-doped sample and an inhomogeneous Crdoped sample, whose homogeneity was confirmed by comparing the magnetic quantum oscillation before and after grinding the samples. The magnetic quantum oscillations in the inhomogeneous sample exhibited a distinct phase shift and unusual field-dependent amplitude, believed to result from a non-uniform Fermi energy. The analysis of the magnetic quantum oscillations demonstrated that the homogeneous Bi-doped sample can be interpreted by the symmetric and Lorentzian effective Fermi energy distribution, while the inhomogeneous Crdoped sample exhibited an asymmetric distribution, illustrating an unconventional violation of the LifshitzKosevich formula. This research provides a novel method for identifying material inhomogeneity and mitigating potential misinterpretations of magnetic quantum oscillations' unusual phase, commonly seen as a nontrivial Berry phase indicator in topological materials studies.

키워드

InhomogeneityNon-uniform compositionde haas-van alphen effectANDERSON LOCALIZATIONCARRIER MOBILITYDEFECTSMAGNETORESISTANCEDISLOCATIONSELECTRONSGROWTHPHASELAYER
제목
Inhomogeneity identification by measuring magnetic quantum oscillations
저자
Lee, Sang-EonJung, Myung-Hwa
DOI
10.1016/j.physb.2023.415321
발행일
2023-12-01
유형
Article
저널명
Physica B: Condensed Matter
670