论文标题
工程性熵力允许超腹部动力反击
Engineered entropic forces allow ultrastrong dynamical backaction
论文作者
论文摘要
当限制在光学腔内时,光会施加强辐射压力。结合动态背离,这可以实现重要过程,例如激光冷却,以及从精度传感器到量子记忆和接口的应用。但是,辐射压力的大小受到光子和声子之间的能量不匹配的约束。在这里,我们使用光吸收引起的熵力克服了这一障碍。我们表明,熵力可以超过八个数量级的辐射压力,并使用超氟第三次谐振器证明这一点。我们开发一个框架来设计熵力的动态背相位,将其应用于阈值以比以前的工作低三个数量级的阈值来实现声子激光。我们的结果提出了在量子设备中开发熵力并研究非线性流体现象(例如湍流和孤子子)的途径。
When confined within an optical cavity, light can exert strong radiation pressure forces. Combined with dynamical backaction, this enables important processes such as laser cooling, and applications ranging from precision sensors to quantum memories and interfaces. However, the magnitude of radiation pressure forces is constrained by the energy mismatch between photons and phonons. Here, we overcome this barrier using entropic forces arising from the absorption of light. We show that entropic forces can exceed the radiation pressure force by eight orders of magnitude, and demonstrate this using a superfluid helium third-sound resonator. We develop a framework to engineer the dynamical backaction from entropic forces, applying it to achieve phonon lasing with a threshold three orders of magnitude lower than previous work. Our results present a pathway to exploit entropic forces in quantum devices, and to study nonlinear fluid phenomena such as turbulence and solitons.