论文标题
飞行原子后反应,并从真空中机械产生的光子
Flying atom back-reaction and mechanically generated photons from vacuum
论文作者
论文摘要
我们研究了在超肌耦合方案中的光 - 物质相互作用时,两级原子穿过光子腔的动力学。我们采用了封闭的完整量子描述,该描述还考虑了原子中心运动的量化,除了其内部自由度和量化的光子腔场。我们发现,根据两个关键的功绩数字,可以实现多种定性不同的动力学状态:动能与裸露的激发能之间的比率,以及这些裸露能量的产物与原子在腔中飞行的时间。根据这些功绩数字的值,原子可以由\ emph {pressed}真空反射,或者可以将其动能的一部分转换为可能从腔内发出的真实激发。在第一种情况下,原子会根据将能量暂时存储到虚拟激发为基础的\ emph {量子再生制动}机制。
We investigate the dynamics of a two-level atom flying through a photonic cavity when the light-matter interaction is in the ultrastrong coupling regime. We adopt a closed full quantum description that takes into account the quantization of the atom center-of-mass motion in addition to its internal degree of freedom and to the quantized photonic cavity field. We find that multiple qualitatively different dynamical regimes are achievable according to two key figures of merit: the ratio between the kinetic energy and the bare excitation energies, and the product of these bare energies with the time the atom takes to fly through the cavity. According to the values of those figures of merit, the atom can be reflected by the \emph{dressed} vacuum, or can convert part of its kinetic energy into real excitations which might be emitted out of the cavity. In the first case, the atom experiences a \emph{quantum regenerative braking} mechanism, based on temporary storage of energy into virtual excitations.