Please use this identifier to cite or link to this item: https://dspace.iiti.ac.in/handle/123456789/8852
Title: Type-II Dirac states in full Heusler compounds XInPd2 (X = Ti, Zr, and Hf)
Authors: Pathak, Biswarup
Keywords: Calculations;Chemical analysis;Fermi surface;Platinum compounds;Scanning tunneling microscopy;Tellurium compounds;Chemical environment;Crystal-field splitting;First-principles calculation;Heusler compound;Lifshitz transition;Lorentz symmetry breaking;Mirror symmetry;Scanning tunneling spectroscopy;Crystal symmetry
Issue Date: 2019
Publisher: American Physical Society
Citation: Mondal, C., Barman, C. K., Pathak, B., & Alam, A. (2019). Type-II dirac states in full heusler compounds XInPd2 (X = ti, zr, and hf). Physical Review B, 10(24) doi:10.1103/PhysRevB.100.245151
Abstract: We predict three full Heusler compounds XInPd2 (X = Zr, Hf, and Ti) to be potential candidates for type-II Dirac semimetals. The crystal symmetry of these compounds have appropriate chemical environment with a unique interplay of inversion, time-reversal, and mirror symmetries. These symmetries help to give six pairs of type-II Dirac nodes on the C4-rotation axis, closely located at/near the Fermi level. Using first-principles calculations, symmetry arguments, and crystal-field splitting analysis, we illustrate the occurrence of such Dirac nodes in these compounds. Bulk Fermi surfaces have been studied to understand the Lorentz symmetry breaking and Lifshitz transition (LT) of Fermi surfaces. Bulk nodes are projected on the (001) and (111) surfaces, which form the surface Fermi arcs, that can further be detected by probes such as angle resolved photo-emission and scanning tunneling spectroscopy. By analyzing the evolution of arcs with changing chemical potential, we prove the fragile nature and the absence of topological protection of the Dirac arcs. Our predicted compounds overcome the limitations of the previously reported PtTe2 class of compounds. © 2019 American Physical Society.
URI: https://doi.org/10.1103/PhysRevB.100.245151
https://dspace.iiti.ac.in/handle/123456789/8852
ISSN: 2469-9950
Type of Material: Journal Article
Appears in Collections:Department of Chemistry

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