Effects of strain-tunable valleys on charge transport in bismuth

Author:

Hosoi Suguru1ORCID,Tachibana Fumu1ORCID,Sakaguchi Mai1,Ishida Kentaro1,Shimozawa Masaaki1ORCID,Izawa Koichi1ORCID,Fuseya Yuki2ORCID,Kinoshita Yuto3ORCID,Tokunaga Masashi3ORCID

Affiliation:

1. Osaka University

2. University of Electro-Communications

3. The University of Tokyo

Abstract

The manipulation of the valley degree of freedom can boost the technological development of novel functional devices based on valleytronics. The current mainstream platform for valleytronics is to produce a monolayer with inversion asymmetry, in which the strain-band engineering through the substrates can serve to improve the performance of valley-based devices. However, pinpointing the effective role of strain is inevitable for the precise design of the desired valley structure. Here, we demonstrate the charge transport under continuously controllable external strain for bulk bismuth crystals with three equivalent electron valleys and one hole valley. The strain response of resistance, namely elastoresistance, exhibits evolutions in both antisymmetric and symmetric channels with decreasing temperature. The elastoresistance behaviors mainly reflect the significant changes in valley density depending on the symmetry of induced strain, evidenced by our strain-dependent quantum oscillation measurements and first-principles band calculations under strain. These facts suggest the successful tuning and evaluation of the valley populations through strain-dependent charge valley transport. Published by the American Physical Society 2024

Funder

Japan Society for the Promotion of Science

Osaka University

Publisher

American Physical Society (APS)

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