Pulse excitation to continuous-wave excitation in a low-dimensional interacting quantum system
arXiv:1605.01537 · doi:10.1103/PhysRevB.94.115152
Abstract
Real-time dynamics in one-dimensional transverse Ising model coupled with the time-dependent oscillating field is analyzed by using the infinite time-evolving block decimation algorithm and the Floquet theory. In particular, the transient dynamics induced by the pulse field and their connections to the dynamics by a continuous-wave field are focused on. During the pulse-field irradiation, the order parameter shows a characteristic oscillation, in which the frequency shifts from the pulse-field frequency. This is considered as a kind of the Rabi oscillation, but the frequency strongly depends on the intersite Ising interaction. After turning off the pulse field, the oscillation remains with a frequency and a damping constant . In the case of low fluence, both and are scaled by the pulse amplitude in a wide range of the parameter values of the model. In the case of high fluence, and are arranged by a product of the pulse amplitude and the pulse width. This implies that the dynamics after turning off the pulse field are decided by a population of the excited state when the pulse field is turned off.
8 pages, 6 figures
References in corpus (10)
- Photovoltaic Hall effect in graphene
- Classical simulation of infinite-size quantum lattice systems in one spatial dimension
- Optically induced superconductivity in striped La2-xBaxCuO4 by polarization-selective excitation in the near infrared
- Nonequilibrium Steady State of Photoexcited Correlated Electrons in the Presence of Dissipation
- Photo-induced states in a Mott insulator
- Optical freezing of charge motion in an organic conductor
- Phase diagram and collective excitation in excitonic insulator: from the orbital physics viewpoint
- Photoinduced in-gap excitations in the one-dimensional extended Hubbard model
- Photoinduced correlated electron dynamics in a two-leg ladder Hubbard system
- Negative-Temperature State Formed and Interactions Inverted by Symmetric Monocycle Optical Pulse Excitation
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