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Ultrafast Electron Diffraction in Charge Density Wave State of TiSe<sub>2</sub>

ORAL

Abstract

We probe the ultrafast laser response in thin TiSe2 single crystals below and above the CDW transition temperature using ultrafast electron diffraction. The electron-phonon dynamics is initiated by 150 fs pulses centered at 400 nm. While we observe a comparably fast initial diffraction intensity decay at room temperature, we do not observe any bi-exponential dynamics that was previously reported in the dynamics of <110> peaks at fluences above 1 mJ/cm2 with 800 nm centered excitation. On the other hand, at temperatures below the CDW transition temperature bi-exponential dynamics is observed above the threshold fluence of 0.5 mJ/cm2. This threshold fluence is more than two times larger than the threshold fluence for CDW melting with an 800 nm pump. Bi-exponential behaviour is linked to a strong electron-phonon coupling process followed by a slower electron-lattice equilibration. This shows the importance of the Jahn-Teller mechanism for charge density wave formation in TiSe2. We will also present ultrafast electron diffraction results on CuxTiSe2 single crystals.

Presenters

  • Paul Xhori

    Physics, Drexel University

Authors

  • Paul Xhori

    Physics, Drexel University

  • Anton Anikin

    Physics, Drexel University

  • Jacob Bolduc

    Materials Science and Engineering, Drexel University

  • Shalin Patel

    Physics, Drexel University

  • Maher Harb

    Physics and Materials Science and Engineering, Drexel University

  • Goran Karapetrov

    Physics and Materials Science and Engineering, Drexel University, Department of Physics & Department of Materials Science and Engineering, Drexel University, Physics and Materials Science and Engineering, Drexel Univiversity