Six-fold degenerate fermions in PdSb<sub>2</sub>
ORAL
Abstract
Pyrite-type cubic PdSb2 possess six-fold degenerate fermions protected by the non-symmorphic symmetry. By measuring the magnetic field (H) dependence of the magnetic torque τ(H) in single crystalline PdSb2, we observe the de Haas-van Alphen (dHvA) oscillations. In analyzing the the dHvA oscillations with H // [111] direction, five frequencies are identified: Fα = 100 T, Fβ = 127 T, Fγ = 175 T, Fη = 338 T, and Fξ = 436 T. By fitting the experimental data using the Lifshitz-Kosevich equation , the effective masses of these bands are obtained with m*α = 0.062m0, m*β = 0.086m0, m*γ = 0.26m0, m*η = 0.34m0, and m*ξ = 0.42(m0 is the free electron mass). Further analysis of the dHvA oscillations reveals that two of the lightest pockets (α and β) at the R point in the Brillouin zone exhibit non-trivial Berry phase (ΦBα = 0.91π and ΦBβ = 0.83π). These are two of the six-fold degenerate bands at the Fermi level.
*This work is supported by DOE through DE-SC0012432. A portion of this work was performed at the National High Magnetic Field Laboratory, which is supported by National Science Foundation Cooperative Agreement No. DMR-1644779 and the State of Florida.
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Presenters
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Ramakanta Chapai
- Louisiana State University