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Spatio-temporal Probing of a Photoexcited Jointly Commensurate Charge Density Wave

ORAL

Abstract

Commensuration, the condition in which the ratio between two physical quantities is a rational number, can give rise to various exotic phenomena that affect both electrons and the underlying lattice in quantum materials. This concept is particularly important in charge density waves (CDWs), which are periodic modulations of electron density resulting from the interplay between electronic and lattice degrees of freedom. Beyond the conventional incommensurate and commensurate CDWs, a new type called a jointly commensurate CDW (JC-CDW) was discovered in the layered material EuTe4, where multiple coexisting incommensurate CDWs collectively exhibit commensurability. However, the collective response of the individual CDWs that form a JC-CDW to external perturbations, such as light irradiation, remains unknown. In this work, we address this challenge by employing a combination of time-resolved techniques to directly probe the dynamics of CDWs in EuTe4 upon photoexcitation. Time-resolved X-ray diffraction is used to simultaneously probe both the amplitude and phase dynamics of the JC-CDW in a time domain, while complementary ultrafast electron diffraction further reveals that the real-space shape of the topological defects seeded in the photoexcited JC-CDW is a shear. These findings not only establish the unique persistence of JC-CDWs out of equilibrium but also present a new platform for the optical manipulation of topological defects.

Presenters

  • Kyoung Hun Oh

    Massachusetts Institute of Technology

Authors

  • Kyoung Hun Oh

    Massachusetts Institute of Technology

  • Yifan Su

    Massachusetts Institute of Technology

  • Honglie Ning

    Massachusetts Institute of Technology, MIT

  • Baiqing Lv

    Shanghai Jiao Tong University

  • Alfred Zong

    Stanford University

  • Dong Wu

    Beijing Academy of Quantum Information Sciences

  • Gyeongbo Kang

    Pohang Accelerator Laboratory

  • Hyeongi Choi

    Pohang Accelerator Laboratory

  • Hyun-Woo J Kim

    POSTECH

  • Seunghyuk Ha

    POSTECH

  • Jaehwon Kim

    POSTECH

  • Xiaozhe Shen

    SLAC, SLAC National Accelerator Laboratory

  • Duan Luo

    SLAC, SLAC National Accelerator Laboratory

  • Stephen Weathersby

    SLAC

  • Patrick L Kramer

    SLAC

  • Xinxin Cheng

    SLAC

  • Suchismita Sarker

    Cornell High Energy Synchrotron Source, CHESS, Cornell University, Cornell

  • Jacob Ruff

    Cornell University

  • B. J. Kim

    POSTECH, Department of Physics, Pohang University, Pohang University of Science and Technology

  • Nan-Lin Wang

    Peking Univ

  • Hoyoung Jang

    Pohang Accelerator Laboratory

  • Nuh Gedik

    Massachusetts Institute of Technology