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受挫超辐射相变

Frustrated Superradiant Phase Transition.

作者信息

Zhao Jinchen, Hwang Myung-Joong

机构信息

Division of Natural and Applied Sciences, Duke Kunshan University, Kunshan, Jiangsu 215300, China.

Zu Chongzhi Center for Mathematics and Computational Science, Duke Kunshan University, Kunshan, Jiangsu 215300, China.

出版信息

Phys Rev Lett. 2022 Apr 22;128(16):163601. doi: 10.1103/PhysRevLett.128.163601.

Abstract

Frustration occurs when a system cannot find a lowest-energy configuration due to conflicting constraints. We show that a frustrated superradiant phase transition occurs when the ground-state superradiance of cavity fields due to local light-matter interactions cannot simultaneously minimize the positive photon hopping energies. We solve the Dicke trimer model on a triangle motif with both negative and positive hopping energies and show that the latter results in a sixfold degenerate ground-state manifold in which the translational symmetry is spontaneously broken. In the frustrated superradiant phase, we find that two sets of diverging time and fluctuation scales coexist, one governed by the mean-field critical exponent and another by a novel critical exponent. The latter is associated with the fluctuation in the difference of local order parameters and gives rise to site-dependent photon number critical exponents, which may serve as an experimental probe for the frustrated superradiant phase. We provide a qualitative explanation for the emergence of unconventional critical scalings and demonstrate that they are generic properties of the frustrated superradiant phase at the hand of a one-dimensional Dicke lattice with an odd number of sites. The mechanism for the frustrated superradiant phase transition discovered here applies to any lattice geometries where the antiferromagnetic ordering of neighboring sites are incompatible and therefore our work paves the way toward the exploration of frustrated phases of coupled light and matter.

摘要

当一个系统由于相互冲突的约束而无法找到最低能量构型时,就会出现受挫情况。我们表明,当由于局部光与物质相互作用导致的腔场基态超辐射不能同时使正光子跳跃能量最小化时,就会发生受挫超辐射相变。我们求解了具有正负跳跃能量的三角形图案上的迪克三聚体模型,并表明后者导致了一个六重简并的基态流形,其中平移对称性被自发打破。在受挫超辐射相中,我们发现两组发散的时间和涨落尺度共存,一组由平均场临界指数控制,另一组由一个新的临界指数控制。后者与局部序参量差的涨落有关,并产生与位置相关的光子数临界指数,这可作为受挫超辐射相的实验探针。我们对非常规临界标度的出现提供了定性解释,并证明它们是具有奇数个格点的一维迪克晶格中受挫超辐射相的一般性质。这里发现的受挫超辐射相变机制适用于任何相邻格点的反铁磁排序不相容的晶格几何结构,因此我们的工作为探索光与物质耦合的受挫相铺平了道路。

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