The Pauli principle and nuclear spin isomers of ammonia molecules significantly reshape collective light-matter coupling in infrared cavities, demonstrated via numerical simulations for two molecules and an analytical model for ensembles.
\ Shirley ,\ title title Solution of the schr\"odinger equation with a hamiltonian periodic in time , \ 10.1103/PhysRev.138.B979 journal journal Phys
5 Pith papers cite this work. Polarity classification is still indexing.
citation-role summary
citation-polarity summary
verdicts
UNVERDICTED 5roles
background 1polarities
background 1representative citing papers
Total spectral weight across Floquet-Volkov sidebands is conserved under below-gap driving in two semiconductors, as measured by TrARPES.
Quantum many-body scars in a kicked long-range Ising model produce time-translation symmetry breaking via π-paired Floquet doublets, yielding period-doubling oscillations that scale to last exponentially long in system size for selected initial states.
FDQPTs occur in periodically flux-quenched XY chains when a Floquet quench fidelity condition is met together with appropriate segment durations, generalizing single-quench fidelity to periodic drives.
Quasi-periodic driving of a four-level system creates temporal analogs of quantum spin Hall and higher-order topological insulators, yielding quantized energy exchange rates between drives due to synthetic edge or corner modes.
citing papers explorer
-
Nuclear Spin Isomers and the Pauli Principle in Polaritonic Chemistry
The Pauli principle and nuclear spin isomers of ammonia molecules significantly reshape collective light-matter coupling in infrared cavities, demonstrated via numerical simulations for two molecules and an analytical model for ensembles.
-
Occupation Dynamics of Floquet-Volkov States and Spectral Sum Rule
Total spectral weight across Floquet-Volkov sidebands is conserved under below-gap driving in two semiconductors, as measured by TrARPES.
-
Quantum many-body scars leading to time-translation symmetry breaking in kicked interacting spin models
Quantum many-body scars in a kicked long-range Ising model produce time-translation symmetry breaking via π-paired Floquet doublets, yielding period-doubling oscillations that scale to last exponentially long in system size for selected initial states.
-
Floquet dynamical quantum phase transitions in periodically flux-quenched systems
FDQPTs occur in periodically flux-quenched XY chains when a Floquet quench fidelity condition is met together with appropriate segment durations, generalizing single-quench fidelity to periodic drives.
-
Topological energy pumping in a quasi-periodically driven four-level system
Quasi-periodic driving of a four-level system creates temporal analogs of quantum spin Hall and higher-order topological insulators, yielding quantized energy exchange rates between drives due to synthetic edge or corner modes.