论文标题
带有巨型发射器的量子光学的碰撞图片
Collisional picture of quantum optics with giant emitters
论文作者
论文摘要
与传统的量子光学方法相比,对发射极和骨磁场之间的弱相互作用的有效描述提供了简单的直观图片,以及关节发射极端动力学的有效计算工具。在这里,这种碰撞方法扩展到许多发射器(原子或谐振器),每种发射器通常都在许多耦合点(“巨型”发射极)与场相互作用。在微不足道的延误的政权中,统一描述每碰撞的统一性尤其具有手性起源的贡献,从而导致有效的哈密顿量。图片应用于在任意的白色噪声高斯状态下耦合到(通常是手性)波导场的一组巨大原子的lindblad主方程(ME),该原子将其凝结到单个方程式中,并扩展到单个方程式中,并扩展了各种量子光学光学和波导的MES。还制定了与选定的光电检测方案相对应的有效的哈密顿量和跳跃操作员。
The effective description of the weak interaction between an emitter and a bosonic field as a sequence of two-body collisions provides a simple intuitive picture compared to traditional quantum optics methods as well as an effective calculation tool of the joint emitter-field dynamics. Here, this collisional approach is extended to many emitters (atoms or resonators), each generally interacting with the field at many coupling points ("giant" emitter). In the regime of negligible delays, the unitary describing each collision in particular features a contribution of a chiral origin resulting in an effective Hamiltonian. The picture is applied to derive a Lindblad master equation (ME) of a set of giant atoms coupled to a (generally chiral) waveguide field in an arbitrary white-noise Gaussian state, which condenses into a single equation and extends a variety of quantum optics and waveguide-QED MEs. The effective Hamiltonian and jump operators corresponding to a selected photodetection scheme are also worked out.