论文标题
光机电两光子跳
Optomechanical Two-Photon Hopping
论文作者
论文摘要
跳跃机制在多体物理学中出现的集体现象中起关键作用。创建和控制显示此功能的系统的能力对于下一代量子技术很重要。在这里,我们研究了两个通过振动的双面完美镜子隔开的空腔,并表明,在当前可用的实验参数中,该系统显示了两个电磁谐振器之间的光子对跳跃。特别是,两光子跳跃不是造成隧道的造成的,而是由于更高阶段的共鸣过程。从经典问题开始,振动镜完全分离了腔的两侧,我们量化了系统,然后两侧可以相互作用。这打开了研究光学晶格中光子对传播的新机制的可能性。
The hopping mechanism plays a key role in collective phenomena emerging in many-body physics. The ability to create and control systems that display this feature is important for next generation quantum technologies. Here we study two cavities separated by a vibrating two-sided perfect mirror and show that, within currently available experimental parameters, this system displays photon-pair hopping between the two electromagnetic resonators. In particular, the two-photon hopping is not due to tunneling, but rather to higher order resonant processes. Starting from the classical problem, where the vibrating mirror perfectly separates the two sides of the cavity, we quantize the system and then the two sides can interact. This opens the possibility to investigate a new mechanism of photon-pair propagation in optomechanical lattices.