arXiv · 2104.06668
Field induced hysteretic structural phase switching and possible CDW in Re-doped MoTe$_2$
Abstract
Novel electronic systems displaying exotic physical properties can be derived from complex topological materials through chemical doping. MoTe$_2$, the candidate type-II Weyl semimetal shows dramatically enhanced superconductivity up to 4.1 K upon Re doping in Mo sites. Based on bulk transport and local scanning tunneling microscopy (STM) here we show that Re doping also leads to the emergence of a possible charge density wave (CDW) phase in Re$_{0.2}$Mo$_{0.8}$Te$_2$. In addition, the tunneling $I-V$ characteristics display non-linearity and hysteresis which is commensurate with a hysteresis observed in the change in tip-height ($z$) as a function of applied voltage $V$. The observations indicate an electric field induced hysteretic switching consistent with piezoelectricity and possible ferroelectricity.
Explore related subjects
Keep this discovery
Aastha Vasdev, Suman Kamboj, Anshu Sirohi, Manasi Mandal, Sourav Marik, Ravi Prakash Singh, Goutam Sheet. 2021-04-14. Field induced hysteretic structural phase switching and possible CDW in Re-doped MoTe$_2$. https://doi.org/10.1088/1361-648x%2Fabf883
Cite the original work for its findings. Save a collection to share your selection of sources.