论文标题
参数增强的相互作用和光子压力kerr放大器中的非平凡浴动力学
Parametrically enhanced interactions and non-trivial bath dynamics in a photon-pressure Kerr amplifier
论文作者
论文摘要
两个超导电路之间的光子压力耦合是一个有前途的平台,用于研究新型参数方案中的辐射压力耦合以及射频频率(RF)量子光子学和量子限制的RF感应的发展。到目前为止,光子压力耦合电路的内在约瑟夫森非线性尚未被认为是增强设备或新型实验方案的潜在资源。在这里,我们在RF电路和包含超导量子干扰装置(Squid)的微波腔之间实现光子压力耦合,该量子可以用作Josephson参数放大器(JPA)。我们展示了基于KERR的光子压力单光子耦合率的增强,并在放大器方向上提高了一个数量级的协作性。此外,我们表征了RF回路的上向上和KERR扩增的残留热波动,并观察到腔内放大会减少测量不精确。最后,我们证明了RF模式的边带冷却不仅限于量子噪声扩增引起的有效放大器模式温度,因此我们通过两阶段扩增过程引起的非平凡浴动力学来解释。我们的结果表明,如何将Kerr非线性,尤其是Josephson参数放大如何用作增强的光子压力系统和Kerr腔光力学的资源。
Photon-pressure coupling between two superconducting circuits is a promising platform for investigating radiation-pressure coupling in novel parameter regimes and for the development of radio-frequency (RF) quantum photonics and quantum-limited RF sensing. So far, the intrinsic Josephson nonlinearity of photon-pressure coupled circuits has not been considered a potential resource for enhanced devices or novel experimental schemes. Here, we implement photon-pressure coupling between a RF circuit and a microwave cavity containing a superconducting quantum interference device (SQUID) which can be operated as a Josephson parametric amplifier (JPA). We demonstrate a Kerr-based enhancement of the photon-pressure single-photon coupling rate and an increase of the cooperativity by one order of magnitude in the amplifier regime. In addition, we characterize the upconverted and Kerr-amplified residual thermal fluctuations of the RF circuit, and observe that the intracavity amplification reduces the measurement imprecision. Finally, we demonstrate that RF mode sideband-cooling is surprisingly not limited to the effective amplifier mode temperature arising from quantum noise amplification, which we explain by non-trivial bath dynamics due to a two-stage amplification process. Our results demonstrate how Kerr nonlinearities and in particular Josephson parametric amplification can be utilized as resource for enhanced photon-pressure systems and Kerr cavity optomechanics.