论文标题

来自双原子的双阵列的量子非线性元面

Quantum nonlinear metasurfaces from dual arrays of ultracold atoms

论文作者

Pedersen, Simon Panyella, Zhang, Lida, Pohl, Thomas

论文摘要

次波长晶格中的原子具有显着的光学特性,具有很高的科学和技术意义。在这里,我们展示了光与单个原子阵列的耦合如何将这些视角扩展到量子非线性光学元件的域。虽然单个阵列以很大的线性方式传输并反射光,但发现两个阵列的组合诱导了强烈的光子 - 光子相互作用,可以将传入的经典束转换为高度抗凝发的光。这样的量子元信息为从光学量子信息处理到探索二维相互作用光子的二维系统中的量子多体现象提供了相干产生和操纵非经典光的新可能性。

Atoms in a sub-wavelength lattices have remarkable optical properties that have become of high scientific and technological significance. Here, we show how the coupling of light to more than a single atomic array can expand these perspectives into the domain of quantum nonlinear optics. While a single array transmits and reflects light in a largely linear fashion, the combination of two arrays is found to induce strong photon-photon interactions that can convert an incoming classical beam into highly antibunched light. Such quantum metasurfaces open up new possibilities for coherently generating and manipulating nonclassical light, from optical quantum information processing to exploring quantum many-body phenomena in two-dimensional systems of strongly interacting photons.

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