论文标题
一个rydberg switch thewavelength Atomic阵列
A subwavelength atomic array switched by a single Rydberg atom
论文作者
论文摘要
在单个量子的水平上增强光结合对量子科学中的众多应用至关重要。已发现亚波长原子阵列的合作光学响应为这种强烈的光耦合打开了新的途径,同时可以访问光场多种空间模式。据报道,有效的单模单模自由空间耦合已报道,但是对外向光场模式的空间控制仍然难以捉摸。在这里,我们使用单个受控的Ancilla原子在自由空间中的亚波长阵列形成的原子薄镜子的光学响应进行了这种空间控制。切换行为由小rydberg分数与原子镜的混合控制,因此与Ancilla相互作用。在Ancilla原子上驱动Rabi振荡,我们证明了对阵列的传播和反射的连贯控制。这些结果代表了迈向实现量子相干跨面的一步,该量子的纠缠受控的原子 - 光子纠缠以及光的量子状态的确定性工程。
Enhancing light-matter coupling at the level of single quanta is essential for numerous applications in quantum science. The cooperative optical response of subwavelength atomic arrays has been found to open new pathways for such strong light-matter couplings, while simultaneously offering access to multiple spatial modes of the light field. Efficient single-mode free-space coupling to such arrays has been reported, but the spatial control over the modes of outgoing light fields has remained elusive. Here, we demonstrate such spatial control over the optical response of an atomically thin mirror formed by a subwavelength array of atoms in free space using a single controlled ancilla atom excited to a Rydberg state. The switching behavior is controlled by the admixture of a small Rydberg fraction to the atomic mirror, and consequently strong dipolar Rydberg interactions with the ancilla. Driving Rabi oscillations on the ancilla atom, we demonstrate coherent control of the transmission and reflection of the array. These results represent a step towards the realization of quantum coherent metasurfaces, the demonstration of controlled atom-photon entanglement and deterministic engineering of quantum states of light.