Mapping the nonequilibrium order parameter of a quasi-two dimensional charge density wave system

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Abstract

The driving force of a charge density wave (CDW) transition in quasi-two dimensional systems is still debated, while being crucial in understanding electronic correlation in such materials. Here we use femtosecond time- and angle-resolved photoemission spectroscopy combined with computational methods to investigate the coherent lattice dynamics of a prototypical CDW system. The photo-induced temporal evolution of the periodic lattice distortion associated with the amplitude mode reveals the dynamics of the free energy functional governing the order parameter. Our approach establishes that optically-induced screening rather than CDW melting at the electronic level leads to a transiently modified potential which explains the anharmonic behaviour of the amplitude mode and discloses the structural origin of the symmetry-breaking phase transition.

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Sayers, C. J., Zhang, Y., Sanders, C. E., Chapman, R. T., Wyatt, A. S., Chatterjee, G., … Carpene, E. (2024). Mapping the nonequilibrium order parameter of a quasi-two dimensional charge density wave system. Communications Physics, 7(1). https://doi.org/10.1038/s42005-024-01879-0

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