论文标题
部分可观测时空混沌系统的无模型预测
Light-mediated strong coupling between a mechanical oscillator and atomic spins one meter apart
论文作者
论文摘要
量子系统之间的工程强大相互作用对于量子物理和技术的许多现象至关重要。通常,强耦合依赖于短距离力或将系统放置在高质量的电磁谐振器中,从而将耦合范围限制为小距离。我们在室温环境中使用自由空间激光束在一米的距离内强烈地将集体原子旋转和微电膜搭配。耦合是高度可调的,可以观察正常模式分裂,相干能量交换振荡,两模式的热噪声挤压和耗散耦合。我们对工程师的连贯长距离相互作用与光线相互作用的方法使以模块化的方式将截然不同的系统求助,从而为量子控制和相干反馈网络打开了一系列机会。
Engineering strong interactions between quantum systems is essential for many phenomena of quantum physics and technology. Typically, strong coupling relies on short-range forces or on placing the systems in high-quality electromagnetic resonators, restricting the range of the coupling to small distances. We use a free-space laser beam to strongly couple a collective atomic spin and a micromechanical membrane over a distance of one meter in a room-temperature environment. The coupling is highly tunable and allows the observation of normal-mode splitting, coherent energy exchange oscillations, two-mode thermal noise squeezing and dissipative coupling. Our approach to engineer coherent long-distance interactions with light makes it possible to couple very different systems in a modular way, opening up a range of opportunities for quantum control and coherent feedback networks.