论文标题

超级扩展的纳米纤维引导的场,可与热原子相干相互作用

Super-extended nanofiber-guided field for coherent interaction with hot atoms

论文作者

Finkelstein, Ran, Winer, Gal, Koplovich, David Zeev, Arenfrid, Or, Hoinkes, Thomas, Guendelman, Gabriel, Netser, Moran, Poem, Eilon, Rauschenbeutel, Arno, Dayan, Barak, Firstenberg, Ofer

论文摘要

我们制造了一种非常薄的光纤,该光纤支持直径高达光波长的13倍的超级延伸模式,几乎完全驻留在纤维外部,并引导了数千个波长(5毫米),以使光将光引导到温暖的原子蒸气中。这种独特的配置在强限制之间平衡,这是通过低至数十亿个NW的饱和能力以及与热原子的长时间相互作用时间所证明的,从而实现了快速而相干的相互作用。我们证明了单光子水平的信号的电磁透明度的狭窄相干共振(数十个MHz),并通过指导模式激发的原子的长度弛豫时间(10 ns)。引导模式的evaneScent场的尺寸与Rydberg封锁机构兼容,这使该平台特别适合观察量子非线性光学现象。

We fabricate an extremely thin optical fiber that supports a super-extended mode with a diameter as large as 13 times the optical wavelength, residing almost entirely outside the fiber and guided over thousands of wavelengths (5 mm), in order to couple guided light to warm atomic vapor. This unique configuration balances between strong confinement, as evident by saturation powers as low as tens of nW, and long interaction times with the thermal atoms, thereby enabling fast and coherent interactions. We demonstrate narrow coherent resonances (tens of MHz) of electromagnetically induced transparency for signals at the single-photon level and long relaxation times (10 ns) of atoms excited by the guided mode. The dimensions of the guided mode's evanescent field are compatible with the Rydberg blockade mechanism, making this platform particularly suitable for observing quantum non-linear optics phenomena.

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