作者
Stanislaw Galeski, Toni Ehmcke, R Wawrzyńczak, Pedro Mercado Lozano, Kyungjune Cho, Ankit Sharma, Souvik Das, F Küster, Paolo Sessi, Manuel Brando, R Küchler, Anastasios Markou, M König, P Swekis, C Felser, Y Sassa, Qiang Li, G Gu, MV Zimmermann, Oleh Ivashko, Dennis I Gorbunov, Sergei Zherlitsyn, Tobias Förster, SSP Parkin, Joachim Wosnitza, Tobias Meng, Johannes Gooth
发表日期
2021/5/27
期刊
Nature communications
卷号
12
期号
1
页码范围
3197
出版商
Nature Publishing Group UK
简介
The quantum Hall effect (QHE) is traditionally considered to be a purely two-dimensional (2D) phenomenon. Recently, however, a three-dimensional (3D) version of the QHE was reported in the Dirac semimetal ZrTe5. It was proposed to arise from a magnetic-field-driven Fermi surface instability, transforming the original 3D electron system into a stack of 2D sheets. Here, we report thermodynamic, spectroscopic, thermoelectric and charge transport measurements on such ZrTe5 samples. The measured properties: magnetization, ultrasound propagation, scanning tunneling spectroscopy, and Raman spectroscopy, show no signatures of a Fermi surface instability, consistent with in-field single crystal X-ray diffraction. Instead, a direct comparison of the experimental data with linear response calculations based on an effective 3D Dirac Hamiltonian suggests that the quasi-quantization of the observed Hall response …
引用总数
2020202120222023202415141414
学术搜索中的文章
S Galeski, T Ehmcke, R Wawrzyńczak, PM Lozano… - Nature communications, 2021