论文标题

磁场引起的LIFSHITZ过渡的签名,在拓扑半学Zrte $ _5 $的超量化极限下

Signatures of a magnetic-field-induced Lifshitz transition in the ultra-quantum limit of the topological semimetal ZrTe$_5$

论文作者

Galeski, S., Legg, H. F., Wawrzyńczak, R., Förster, T., Zherlitsyn, S., Gorbunov, D., Lozano, P. M., Li, Q., Gu, G. D., Felser, C., Wosnitza, J., Meng, T., Gooth, J

论文摘要

长期以来,在强磁场上实现的电子液体的量子极限(QL)已被提议容纳大量的物质状态。 QL中的电子状态是例如准尺寸(1D),这意味着易于不稳定性的完美嵌套的费米表面。尽管QL通常需要不可实现的磁场,但已证明拓扑半学ZRTE $ _5 $仅在仅几个特斯拉的字段到达QL。在这里,我们通过电气传输和超声测量的组合来表征Zrte $ _5 $的QL $ _5 $。我们发现,Zrte $ _5 $中的Zeeman效应可以有效地调整具有磁场的1D Landau带结构。这导致Lifshitz过渡到1D Weyl制度,可以实现完美的电荷中立性。由于没有不稳定性驱动的相转换破坏了研究的田间强度和温度的一维电子液体,因此我们的分析确立了Zrte $ _5 $作为一个彻底理解的平台,可在较低的温度下诱导更多外来相互作用驱动的相位。

The quantum limit (QL) of an electron liquid, realised at strong magnetic fields, has long been proposed to host a wealth of strongly correlated states of matter. Electronic states in the QL are, for example, quasi-one dimensional (1D), which implies perfectly nested Fermi surfaces prone to instabilities. Whereas the QL typically requires unreachably strong magnetic fields, the topological semimetal ZrTe$_5$ has been shown to reach the QL at fields of only a few Tesla. Here, we characterize the QL of ZrTe$_5$ at fields up to 64 T by a combination of electrical-transport and ultrasound measurements. We find that the Zeeman effect in ZrTe$_5$ enables an efficient tuning of the 1D Landau band structure with magnetic field. This results in a Lifshitz transition to a 1D Weyl regime in which perfect charge neutrality can be achieved. Since no instability-driven phase transitions destabilise the 1D electron liquid for the investigated field strengths and temperatures, our analysis establishes ZrTe$_5$ as a thoroughly understood platform for potentially inducing more exotic interaction-driven phases at lower temperatures.

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