Generating large complete momentum gaps in temporally modulated dispersive media
作者:Yao‐Ting Wang, Y.K. Chen · 发表于:Applied Physics Letters · 年份:2025 · DOI:10.1063/5.0249939 · 被引用次数:5 · 研究领域:Orbital Angular Momentum in Optics、Cold Atom Physics and Bose-Einstein Condensates、Random lasers and scattering media
This study investigates the generation of a large complete momentum gap (k-gap) in the Lorentzian media with a plasma frequency varying periodically in time. By using the energy expression for the Lorentz model, Maxwell's equations are reformulated as a time-dependent Hamiltonian, allowing an analytical solution of the Floquet band structure. Our simulations reveal a large complete k-gap whose width remains nearly unchanged as the resonance frequency ω0 increases. Numerical analyses further indicate that the k-gap emerges when the modulation frequency Ω approaches the magnitude of unmodulated plasma frequency ωp0. This large k-gap, in contrast to those in previous studies on Floquet systems, suggests potential applications for the developments in non-Hermitian physics or gain mechanisms.