Berry curvature generation detected by Nernst responses in ferroelectric Weyl semimetal

Author:

Zhang Cheng-Long,Liang TianORCID,Bahramy M. S.,Ogawa Naoki,Kocsis Vilmos,Ueda KentaroORCID,Kaneko YoshioORCID,Kriener MarkusORCID,Tokura YoshinoriORCID

Abstract

The quest for nonmagnetic Weyl semimetals with high tunability of phase has remained a demanding challenge. As the symmetry-breaking control parameter, the ferroelectric order can be steered to turn on/off the Weyl semimetals phase, adjust the band structures around the Fermi level, and enlarge/shrink the momentum separation of Weyl nodes which generate the Berry curvature as the emergent magnetic field. Here, we report the realization of a ferroelectric nonmagnetic Weyl semimetal based on indium-doped Pb1−xSnxTe alloy in which the underlying inversion symmetry as well as mirror symmetry are broken with the strength of ferroelectricity adjustable via tuning the indium doping level and Sn/Pb ratio. The transverse thermoelectric effect (i.e., Nernst effect), both for out-of-plane and in-plane magnetic field geometry, is exploited as a Berry curvature–sensitive experimental probe to manifest the generation of Berry curvature via the redistribution of Weyl nodes under magnetic fields. The results demonstrate a clean, nonmagnetic Weyl semimetal coupled with highly tunable ferroelectric order, providing an ideal platform for manipulating the Weyl fermions in nonmagnetic systems.

Funder

MEXT | JST | Core Research for Evolutional Science and Technology

MEXT | JST | Precursory Research for Embryonic Science and Technology

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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