Phonon state tomography decomposes electron-phonon wavefunctions via MPS to reconstruct electronic correlations from phonon occupancy data in optically excited metals.
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SSH electron-phonon coupling yields higher superconducting Tc than Holstein coupling in QMC simulations by enhancing both electron pairing and Cooper-pair phase coherence.
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Phonon state tomography of electron correlation dynamics in optically excited solids
Phonon state tomography decomposes electron-phonon wavefunctions via MPS to reconstruct electronic correlations from phonon occupancy data in optically excited metals.
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High-temperature superconductivity induced by the Su-Schrieffer-Heeger electron-phonon coupling
SSH electron-phonon coupling yields higher superconducting Tc than Holstein coupling in QMC simulations by enhancing both electron pairing and Cooper-pair phase coherence.