APS Logo

Imaging stress and magnetsm at high pressures using quamtum sensors in a two-dimensional material

ORAL

Abstract

Pressure provides a powerful toolbox for altering material properties, leading to the discovery of novel phases and transitions. To investigate two-dimensional (2D) materials under hydrostatic pressure, local sensors near the target materials provide critical insights into their behavior. In this work, we demonstrate the capability to image mechanical stress and magnetism inside a diamond anvil cell, by directly transferring the hexagonal boron nitride flakes containing boron-vacancy (VB) centers. For stress, we find that the susceptibility of VB centers is over three times greater than that of their three-dimensional counterpart --- nitrogen-vacancy centers in diamond, allowing for precise stress measurement. For magnetism, we utilize VB centers to explore the pressure tuning of magnetism in the room temperature 2D magnet, chromium telluride. Our work opens new avenues for probing pressure-dependent phenomena in heterogeneous materials with embedded quantum sensors.

Presenters

  • Guanghui He

    Washington University, St. Louis, Washington University in St. Louis

Authors

  • Guanghui He

    Washington University, St. Louis, Washington University in St. Louis

  • Ruotian Gong

    Washington University in St. Louis

  • Zhipan Wang

    Harvard University, Harvard Univeristy

  • Zhongyuan Liu

    Washington University in St. Louis

  • Ariana Lerena Riofrio

    Santa Clara University

  • Yinyao Shi

    Washington University, St. Louis

  • Changyu Yao

    Washington University, St. Louis

  • Mingfeng Chen

    Washington University in St. Louis, Washington University in St Louis

  • Zackary R Rehfuss

    Washington University, St. Louis

  • Jeonghoon Hong

    Indiana University Bloomington

  • Thomas Poirier

    Kansas State University

  • Sheng Ran

    Washington University, St. Louis

  • Xi Wang

    WUSTL, Washington University in St Louis, Washington University

  • James Edgar

    Kansas State University

  • Shixiong Zhang

    Indiana University Bloomington

  • Norman Y Yao

    Harvard University

  • Chong Zu

    Washington University, St. Louis