2022
DOI: 10.1038/s41598-022-22055-w
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Super-resolved time–frequency measurements of coupled phonon dynamics in a 2D quantum material

Abstract: Methods to probe and understand the dynamic response of materials following impulsive excitation are important for many fields, from materials and energy sciences to chemical and neuroscience. To design more efficient nano, energy, and quantum devices, new methods are needed to uncover the dominant excitations and reaction pathways. In this work, we implement a newly-developed superlet transform—a super-resolution time-frequency analytical method—to analyze and extract phonon dynamics in a laser-excited two-di… Show more

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References 33 publications
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