论文标题
纠缠自由电子和光激发
Entangling free electrons and optical excitations
论文作者
论文摘要
飞行颗粒与光学纳米腔之间的非弹性相互作用产生了纠缠状态,其中后者的某些激发与前者的能量或动量变化。特别是,自由电子和纳米腔模式的纠缠为与电子的强相互作用能力相关的吸引力。但是,由于缺乏对所得状态混合物缺乏外部选择性,通过电子相互作用与光腔相互作用可以实现的纠缠程度受到严重限制。在这里,我们提出了一种方案,以在腔体和可分离的自由电子状态中指定的光激发之间产生纯粹的纠缠。具体而言,我们塑造了电子波功能曲线,以大大减少可访问腔模式的数量,并同时将它们与靶向电子散射方向相关联。我们通过对银纳米颗粒中的自由电子纠缠的理论描述来体现这一概念,以及非有机分子中的原子振动。可以通过其电子组件进一步传播生成的纠缠,以将量子相互作用扩展到当前探索的协议之外。
The inelastic interaction between flying particles and optical nanocavities gives rise to entangled states in which some excitations of the latter are paired with changes in the energy or momentum of the former. In particular, entanglement of free electrons and nanocavity modes opens appealing opportunities associated with the strong interaction capabilities of the electrons. However, the degree of entanglement that is currently achievable by electron interaction with optical cavities is severely limited by the lack of external selectivity over the resulting state mixtures. Here, we propose a scheme to generate pure entanglement between designated optical excitations in a cavity and separable free-electron states. Specifically, we shape the electron wave-function profile to dramatically reduce the number of accessible cavity modes and simultaneously associate them with targeted electron scattering directions. We exemplify this concept through a theoretical description of free-electron entanglement with degenerate and nondegenerate plasmon modes in silver nanoparticles as well as atomic vibrations in an inorganic molecule. The generated entanglement can be further propagated through its electron component to extend quantum interactions beyond currently explored protocols.