论文标题

人工原子的辐射特性耦合到约瑟夫森连接阵列

Radiative Properties of an Artificial Atom coupled to a Josephson Junction Array

论文作者

Sinha, Kanu, Khan, Saeed A., Cüce, Elif, Türeci, Hakan E.

论文摘要

我们研究了一个人工原子与由约瑟夫森(Josephson)阵列形成的长长的多模腔的人工原子的辐射特性 - 羔羊移位,purcell衰减速率和自发发射动力学。在原子和阵列之间引入了可调耦合元件,我们证明了这样的系统可以表现出从扰动到轻度相互作用的非扰动状态的交叉,因为一个人可以加强原子与约瑟夫森交界阵列(JJA)之间的耦合。结果,自发发射作为局部原子位点的占领的概念受单个复杂价值的指数的控制。我们表明,这种分解可以用与辐射损失的混合原子谐波模式的形成来解释,这些损失与各个模式之间的有效耦合无关。我们开发了一种奇异的函数扩展方法,以描述这种多模型非扰动制度中的开放量子系统动力学。该模态框架概括了有限体积中量子场的正常模式描述,并在划界表面上包含精确的辐射损失和入射量子噪声。我们的结果与最新的约瑟夫森原子与高阻抗约瑟夫森交界阵列相关的实验。

We study the radiative properties -- the Lamb shift, Purcell decay rate and the spontaneous emission dynamics -- of an artificial atom coupled to a long, multimode cavity formed by an array of Josephson junctions. Introducing a tunable coupling element between the atom and the array, we demonstrate that such a system can exhibit a crossover from a perturbative to non-perturbative regime of light-matter interaction as one strengthens the coupling between the atom and the Josephson junction array (JJA). As a consequence, the concept of spontaneous emission as the occupation of the local atomic site being governed by a single complex-valued exponent breaks down. This breakdown, we show, can be interpreted in terms of formation of hybrid atom-resonator modes with radiative losses that are non-trivially related to the effective coupling between individual modes. We develop a singular function expansion approach for the description of the open quantum system dynamics in such a multimode non-perturbative regime. This modal framework generalizes the normal mode description of quantum fields in a finite volume, incorporating exact radiative losses and incident quantum noise at the delimiting surface. Our results are pertinent to recent experiments with Josephson atoms coupled to high impedance Josephson junction arrays.

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