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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Quantum interference between Zeeman levels near structures made of left-handed materials and matched zero-index metamaterials
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Quantum interference between Zeeman levels near structures made of left-handed materials and matched zero-index metamaterials

机译:左手材料和匹配的零折射率超材料制成的结构附近的塞曼能级之间的量子干涉

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摘要

Quantum interference between Zeeman levels of atom placed in the structure containing left-handed materials (LHMs) and zero-index metamaterials (ZIMs) is investigated. Because of the existence of the LHM and ZIM, dipole radiation becomes highly anisotropic which is embodied by the high contrast between decay rates of the dipole component parallel to the surface and that normal to the surface. Furthermore, both decay rates are suppressed compared with those in free vacuum. Therefore, we propose the quantum interference between Zeeman levels accompanied by long lifetime. Two structures are designed to achieve such purpose. For the idealized LHM and ZIM without dissipation, a double-layer structure comprised of them is the right candidate. However, when we consider the dissipation of materials, a Fabry-Pérot cavity made of matched ZIM slabs and LHM slabs is required. Results show that we get a high degree of quantum interference and low decay rates simultaneously.
机译:研究了放置在包含左手材料(LHM)和零折射率超材料(ZIM)的结构中的原子的Zeeman能级之间的量子干涉。由于存在LHM和ZIM,偶极子辐射变得高度各向异性,这表现为平行于表面的偶极子分量的衰减率与垂直于表面的偶极子分量的衰减率之间的高对比度。此外,与自由真空相比,两种衰减率均得到抑制。因此,我们提出了伴随长寿命的塞曼能级之间的量子干涉。设计两种结构来实现这种目的。对于没有损耗的理想化的LHM和ZIM,由它们组成的双层结构是正确的选择。但是,当我们考虑材料的耗散时,需要由匹配的ZIM平板和LHM平板制成的Fabry-Pérot腔。结果表明,我们同时获得了高度的量子干扰和低衰减率。

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