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Crystallization of polarons through charge and spin ordering transitions in 1T-TaS2

Author

Listed:
  • E. S. Bozin

    (Brookhaven National Laboratory)

  • M. Abeykoon

    (Brookhaven National Laboratory)

  • S. Conradson

    (Jozef Stefan Institute)

  • G. Baldinozzi

    (Université Paris-Saclay, bât Eiffel, Gif-sur-Yvette)

  • P. Sutar

    (Jozef Stefan Institute)

  • D. Mihailovic

    (Jozef Stefan Institute)

Abstract

The interaction of electrons with the lattice in metals can lead to reduction of their kinetic energy to the point where they may form heavy, dressed quasiparticles—polarons. Unfortunately, polaronic lattice distortions are difficult to distinguish from more conventional charge- and spin-ordering phenomena at low temperatures. Here we present a study of local symmetry breaking of the lattice structure on the picosecond timescale in the prototype layered dichalcogenide Mott insulator 1T-TaS2 using X-ray pair-distribution function measurements. We clearly identify symmetry-breaking polaronic lattice distortions at temperatures well above the ordered phases, and record the evolution of broken symmetry states from 915 K to 15 K. The data imply that charge ordering is driven by polaron crystallization into a Wigner crystal-like state, rather than Fermi surface nesting or conventional electron-phonon coupling. At intermediate temperatures the local lattice distortions are found to be consistent with a quantum spin liquid state.

Suggested Citation

  • E. S. Bozin & M. Abeykoon & S. Conradson & G. Baldinozzi & P. Sutar & D. Mihailovic, 2023. "Crystallization of polarons through charge and spin ordering transitions in 1T-TaS2," Nature Communications, Nature, vol. 14(1), pages 1-9, December.
  • Handle: RePEc:nat:natcom:v:14:y:2023:i:1:d:10.1038_s41467-023-42631-6
    DOI: 10.1038/s41467-023-42631-6
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    as
    1. E. S. Bozin & W. G. Yin & R. J. Koch & M. Abeykoon & Y. S. Hor & H. Zheng & H. C. Lei & C. Petrovic & J. F. Mitchell & S. J. L. Billinge, 2019. "Local orbital degeneracy lifting as a precursor to an orbital-selective Peierls transition," Nature Communications, Nature, vol. 10(1), pages 1-7, December.
    2. C. J. Butler & M. Yoshida & T. Hanaguri & Y. Iwasa, 2020. "Mottness versus unit-cell doubling as the driver of the insulating state in 1T-TaS2," Nature Communications, Nature, vol. 11(1), pages 1-6, December.
    3. Doohee Cho & Sangmo Cheon & Ki-Seok Kim & Sung-Hoon Lee & Yong-Heum Cho & Sang-Wook Cheong & Han Woong Yeom, 2016. "Nanoscale manipulation of the Mott insulating state coupled to charge order in 1T-TaS2," Nature Communications, Nature, vol. 7(1), pages 1-6, April.
    4. Liguo Ma & Cun Ye & Yijun Yu & Xiu Fang Lu & Xiaohai Niu & Sejoong Kim & Donglai Feng & David Tománek & Young-Woo Son & Xian Hui Chen & Yuanbo Zhang, 2016. "A metallic mosaic phase and the origin of Mott-insulating state in 1T-TaS2," Nature Communications, Nature, vol. 7(1), pages 1-8, April.
    5. Jan Ravnik & Michele Diego & Yaroslav Gerasimenko & Yevhenii Vaskivskyi & Igor Vaskivskyi & Tomaz Mertelj & Jaka Vodeb & Dragan Mihailovic, 2021. "A time-domain phase diagram of metastable states in a charge ordered quantum material," Nature Communications, Nature, vol. 12(1), pages 1-8, December.
    6. Y. D. Wang & W. L. Yao & Z. M. Xin & T. T. Han & Z. G. Wang & L. Chen & C. Cai & Yuan Li & Y. Zhang, 2020. "Band insulator to Mott insulator transition in 1T-TaS2," Nature Communications, Nature, vol. 11(1), pages 1-7, December.
    7. Eylon Persky & Anders V. Bjørlig & Irena Feldman & Avior Almoalem & Ehud Altman & Erez Berg & Itamar Kimchi & Jonathan Ruhman & Amit Kanigel & Beena Kalisky, 2022. "Magnetic memory and spontaneous vortices in a van der Waals superconductor," Nature, Nature, vol. 607(7920), pages 692-696, July.
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