Manifestation of anomalous Floquet states with longevity in dynamic fractional Stark ladder with high AC electric fields
arXiv:1511.08719 · doi:10.1016/j.physe.2016.04.021
Abstract
We examine a resonance structure of Floquet state in dynamic fractional Stark ladder (DFSL) realized in biased semiconductor superlattices driven by a terahertz cw laser on the basis of the R-matrix Floquet theory. To do this, we calculate an excess density of state corresponding to lifetime of the Floquet state with a fractional matching ratio , where is the ratio of a Bloch frequency to a laser frequency , namely, . The results for demonstrate the appearance of discernibly large peaks associated with Floquet states with longevity in a region of relatively high laser-intensity. The underlying physics is discussed in terms of an analytical expression of and the associated Green function in which ponderomotive couplings are included in a non-perturbative way.
8 pages, 5 figures