论文标题

关于各个维度接近零数介质中基本辐射过程的修改

On modifications of fundamental radiative processes in near-zero-index media of various dimensions

论文作者

Michaël, Lobet, Liberal, Iñigo, Knall, Erik N., Alam, M. Zahirul, Reshef, Orad, Boyd, Robert W., Engheta, Nader, Mazur, Eric

论文摘要

自发发射,刺激的发射和吸收是描述光 - 物质相互作用的三个基本辐射过程。在这里,我们从理论上研究了这些基本过程在无界介质中表现出消失的小型折射率的行为,即接近零索引(NZI)宿主介质。我们提出了一个广义框架来研究这些过程,并发现NZI介质的空间维度对基本辐射过程的性质具有深远的影响。我们的形式主义强调了可用光学模式数量的作用,以及发射极的能力与这些模式搭配到这些模式作为维度和NZI媒体类的函数。我们证明,在3D同质无损零指数材料中抑制了基本辐射过程,但在降低尺寸降低的零指数介质中可能会大大增强。我们的发现对在光学或微波频率上设计量子超材料的热,非线性和量子光学器件也具有影响。

Spontaneous emission, stimulated emission and absorption are the three fundamental radiative processes describing light-matter interactions. Here, we theoretically study the behaviour of these fundamental processes inside an unbounded medium exhibiting a vanishingly small refractive index, i.e., a near-zero-index (NZI) host medium. We present a generalized framework to study these processes and find that the spatial dimension of the NZI medium has profound effects on the nature of the fundamental radiative processes. Our formalism highlights the role of the number of available optical modes as well as the ability of an emitter to couple to these modes as a function of the dimension and the class of NZI media. We demonstrate that the fundamental radiative processes are inhibited in 3D homogeneous lossless zero index materials but may be strongly enhanced in a zero index medium of reduced dimensionality. Our findings have implications in thermal, nonlinear and quantum optics as well as in designing quantum metamaterials at optical or microwave frequencies.

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