UDG Lab - Quantum Materials in Motion
UDG Lab - Quantum Materials in Motion
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Shunsuke A. Sato
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Technical review: Time-dependent density functional theory for attosecond physics ranging from gas-phase to solids
Floquet band engineering in action
Controlling Floquet states on ultrashort time scales
Attosecond dynamics of core excitons
First-principles modelling for time-resolved ARPES under different pump-probe conditions
Floquet engineering the band structure of materials with optimal control theory
Simulating Terahertz Field-Induced Ferroelectricity in Quantum Paraelectric SrTiO3
Time- and angle-resolved photoelectron spectroscopy of strong-field light-dressed solids: Prevalence of the adiabatic band picture
Quantum paraelectric phase of SrTiO3 from first principles
The ferroelectric photo ground state of SrTiO3: Cavity materials engineering
Unravelling the intertwined atomic and bulk nature of localised excitons by attosecond spectroscopy
Direct Measurement of Electron-Phonon Coupling with Time-Resolved ARPES
Dynamical amplification of electric polarization through nonlinear phononics in 2D SnTe
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