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Hydrostatic strain-induced reversible phase transition in bilayer MoS<sub>2</sub>

ORAL

Abstract

In current topics of van der Waals (vdW) homo- and hetero-bilayers, strain has been recognized as a new tuning tool to control the electronic structures of vdW bilayers. Both in-plane and out-of-plane strains can impact the electronic coupling between the vdW layers and can be used to tailor the electronic structure. We have used a diamond cell to apply hydrostatic pressure to tune the coupling of vdW bilayers and observe the dynamic response of the electronic and atomic structures using in-situ optical and Raman spectroscopies. Most interestingly, we find there exists a critical pressure above which the bilayer stacking configuration changes from a conventional HMX-stacking into an HMM stacking, with a sudden shift in in-plane alignment. Moreover, we find this is a reversal phase transition accompanied by a hysteresis loop analogous to a ferroelectric phase transition. First-principle calculations reproduce quantitatively the phase transition pressure. The accompanied hysteresis can be understood in terms of the kinetic barrier between the two configurations.

Presenters

  • Chih-Kang Shih

    University of Texas at Austin

Authors

  • Wei-Ting Hsu

    Natl Tsing Hua Univ

  • Jiamin Quan

    University of Texas at Austin

  • Joshua A Leveillee

    University of Texas at Austin

  • Wen-Hao Chang

    Academia Sinica, Department of Electrophysics, National Yang Ming Chiao Tung University, Hsinchu 30010, Taiwan, National Yang Ming Chiao Tung University

  • Xiaoqin Elaine Li

    University of Texas at Austin

  • Jung-Fu Lin

    Jackson School of Geosciences, The University of Texas at Austin, The University of Texas at Austin, Department of Geological Sciences, Jackson School of Geosciences, The University of Texas at Austin, Austin, TX 78712, USA

  • Feliciano Giustino

    University of Texas, University of Texas at Austin, The University of Texas at Austin

  • Chih-Kang Shih

    University of Texas at Austin