Spin Zero Effect in Dirac Semimetal ZrTe<sub>5</sub>
ORAL
Abstract
One of the characteristics of topological materials is their non-trivial Berry phase. Experimental determination of this phase largely relies on a phase analysis of quantum oscillations. We study the angular dependence of the oscillations in a Dirac material ZrTe5 and observe a striking spin zero effect, i.e., vanishing oscillations accompanied with a phase inversion. This indicates that the Berry phase in ZrTe5 remains non-trivial for arbitrary field direction, in contrast with previous reports. The Zeeman splitting is found to be proportional to the magnetic field based on the condition for the spin zero effect in a Dirac band. Moreover, it is suggested that the Dirac band in ZrTe5 is likely transformed into a line-node other than Weyl points for the field directions at which the spin zero occurs. The results underline a largely overlooked spin factor when determining the Berry phase from quantum oscillations.
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Presenters
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Jingyue Wang
Peking Univ, School of Physics, Peking Univerisity
Authors
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Jingyue Wang
Peking Univ, School of Physics, Peking Univerisity
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Jingjing Niu
Peking Univ
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Baoming Yan
Peking Univ
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Xinqi Li
Peking Univ
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Ran Bi
Peking Univ, Peking University
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Yuan Yao
Institute of Physics CAS
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Dapeng Yu
Southern University of Science and Technology of China, Southern University of Science and Technology, South University of Science and Technology of China, Shenzhen Key Laboratory of Quantum Science and Engineering, and Department of Physics, South University of Science and Technology
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Xiaosong Wu
Peking Univ, Peking University, School of Physics, Peking Univerisity