论文标题
通过量子散射对光子的非弹性散射
Inelastic scattering of a photon by a quantum phase-slip
论文作者
论文摘要
单个光子的自发衰变本质上是一个臭名昭著的过程,无论频率范围如何。我们报告说,高阻力超导波导中的量子相距波动可以将单个入射微波光子分成大量的低能量光子,并具有近单位概率。潜在的非弹性光子光子相互作用在非线性光学元件中没有类似物。取而代之的是,在Luttinger液体中量子杂质的新模型的框架中,没有可调节的参数来解释测得的衰减速率。我们的结果将电路量子电动力学与二维边界量子场理论中的临界现象联系起来,这在强相关系统的物理学中很重要。光子寿命数据代表了经过验证和有用的量子多体模拟的罕见例子。
Spontaneous decay of a single photon is a notoriously inefficient process in nature irrespective of the frequency range. We report that a quantum phase-slip fluctuation in high-impedance superconducting waveguides can split a single incident microwave photon into a large number of lower-energy photons with a near unit probability. The underlying inelastic photon-photon interaction has no analogs in non-linear optics. Instead, the measured decay rates are explained without adjustable parameters in the framework of a new model of a quantum impurity in a Luttinger liquid. Our result connects circuit quantum electrodynamics to critical phenomena in two-dimensional boundary quantum field theories, important in the physics of strongly-correlated systems. The photon lifetime data represents a rare example of verified and useful quantum many-body simulation.