APS Logo

Visualizing Moiré ferroelectricity by plasmons and nano-photocurrent in twisted WSe<sub>2</sub> structures

ORAL

Abstract

Ferroelectricity, with spontaneous electric polarization, in two dimensional (2D) materials enriches assembled van der Waals heterostructures with intriguing properties. Recently, the already wide spectrum of ferroelectric physics and applications has further broadened following the discovery of moiré ferroelectricity at the interfaces of stacked 2D materials. In these moiré ferroelectric materials, the polarization amplitude and its switching are expected to be governed by the local stacking configurations. In addition, it has been extensively predicated that such ferroelectric domains could influence both optical and optoelectronic responses. However, probing these properties remains challenging because the moiré scale is far below the optical diffraction limit. Here, we employ scattering-type scanning near-field optical microscopy (s-SNOM) and photocurrent nanoscopy to study the ferroelectricity in marginally twisted WSe2 at the nanometer scale. The ferroelectric domains are visualized via the plasmonic excitation. Ferroelectric polarization direction and magnitude can be extracted from the plasmonic excitation spectra. Moreover, the photocurrent nanoscope demonstrates that the optoelectronic properties can be non-volatilely modulated by the ferroelectric domains. These findings offer a new paradigm for studying ferroelectricity and open up new prospects for optoelectronic devices.

Presenters

  • Shuai Zhang

    Columbia University, Department of Physics, Columbia University, New York, NY, USA

Authors

  • Shuai Zhang

    Columbia University, Department of Physics, Columbia University, New York, NY, USA

  • Yang Liu

    Columbia University

  • Zhiyuan Sun

    Tsinghua University, Harvard University

  • Xinzhong Chen

    Stony Brook University (SUNY)

  • Baichang Li

    Columbia University

  • Samuel L Moore

    Columbia University

  • Song Liu

    Kansas State University, Columbia University

  • Sebastian E Rossi

    Columbia University

  • Jordan M Fonseca

    University of Washington

  • Birui Yang

    Columbia University

  • Matthew Fu

    Columbia University

  • Tsaichun Pan

    Columbia University

  • Dorri Halbertal

    Columbia Univ

  • Xinyi Xu

    Columbia Universtiy, Columbia University, Department of Mechanical Engineering, Columbia University, New York, NY, USA

  • P J Schuck

    Columbia University, Department of Mechanical Engineering, Columbia University, New York, NY, USA

  • Xiaodong Xu

    University of Washington

  • Xiaoyang Zhu

    Columbia University, Department of Chemistry, Columbia 424 University, New York, New York 10027, United States

  • Abhay N Pasupathy

    Brookhaven National Laboratory & Columbia University, Columbia University

  • Mengkun Liu

    Stony Brook University (SUNY)

  • Michael M Fogler

    University of California, San Diego

  • James C Hone

    Columbia University

  • Dmitri N Basov

    Columbia University, Department of Physics, Columbia University, New York, NY, USA