Inhomogeneity identification by measuring magnetic quantum oscillations
arXiv:2507.23246 · doi:10.1016/j.physb.2023.415321
Abstract
This study explores the identification of sample inhomogeneity via magnetic quantum oscillations analysis in semimetal NbSb. By doping Bi and Cr, we obtained a homogeneous Bi-doped sample and an inhomogeneous Cr-doped 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 Cr-doped sample exhibited an asymmetric distribution, illustrating an unconventional violation of the Lifshitz-Kosevich 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.
21 pages, 4 figures
References in corpus (17)
- Experimental Observation of Quantum Hall Effect and Berry's Phase in Graphene
- Quantum transport evidence for a three-dimensional Dirac semimetal phase in Cd3As2
- Evolution of the Fermi surface of BaFe_2(As_{1-x}P_x)_2 on entering the superconducting dome
- Anisotropic giant magnetoresistance in NbSb2
- Fermi level tuning and a large activation gap achieved in the topological insulator Bi_{2}Te_{2}Se by Sn doping
- Non-saturating magnetoresistance of inhomogeneous conductors: comparison of experiment and simulation
- Linear magnetoresistance in metals: guiding center diffusion in a smooth random potential
- Modern semiclassical theory of magnetic transport and breakdown
- Quantum oscillation studies of the Fermi surface of iron-pnictide superconductors
- Topo-fermiology
- Colossal Nernst power factor in topological semimetal NbSb
- Catalyst-Free Growth of Millimeter-Long Topological Insulator Bi2Se3 Nanoribbons and the Observation of pi Berry Phase
- Experimental realization of a topological p-n junction by intrinsic defect-grading
- Quantum oscillations from the reconstructed Fermi surface in electron-doped cuprate superconductors
- Topological phase transition with nanoscale inhomogeneity in (BiIn)Se
- Orbit topology analysed from phase shift of magnetic quantum oscillations in three-dimensional Dirac semimetal
- Fermi surface magnetization of Fe-doped NbSb investigated by magnetic quantum oscillations