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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Single photon generation through exciton-exciton annihilation in air-suspended carbon nanotubes
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APS -APS March Meeting 2017 - Event - Single photon generation through exciton-exciton annihilation in air-suspended carbon nanotubes

机译:APS -APS 2017年3月会议-活动-空气悬浮的碳纳米管中通过激子-激子an灭产生单光子

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Carbon nanotubes have great potential for single photon sources as they have stable exciton states even at room temperature and their emission wavelengths cover the telecommunication bands. In recent years, single photon emission from carbon nanotubes has been achieved by creating localized states of excitons. In contrast to such an approach, here we utilize mobile excitons and show that single photons can be generated in air-suspended carbon nanotubes, where exciton diffusion length is as long as several hundred nanometers and exciton-exciton annihilation is efficient.footnote{A. Ishii et al. Phys. Rev. B 91, 125427 (2015).} We perform photoluminescence microscopy on as-grown air-suspended carbon nanotubes in order to determine their chirality and suspended length. Photon correlation measurements are performed on nanotube emission at room temperature using a Hanbury-Brown-Twiss setup with InGaAs/InP single photon detectors. We observe antibunching with a clear excitation power dependence, where we obtain $g^{(2)}(0)$ value less than 0.5 at low excitation powers, indicating single photon generation. We show such $g^{(2)}(0)$ data with different chiralities and suspended lengths, and the effects of exciton diffusion on single photon generation processes are discussed.
机译:碳纳米管对于单光子源具有巨大潜力,因为即使在室温下,碳纳米管也具有稳定的激子态,并且它们的发射波长覆盖了电信频段。近年来,通过形成激子的局部状态已经实现了碳纳米管的单光子发射。与这种方法相比,这里我们利用移动激子,表明在空气悬浮的碳纳米管中可以产生单光子,其中激子扩散长度长达数百纳米,激子-激子an灭是有效的。脚注{A.石井等。物理Rev. B 91,125427(2015)。}我们对生长的空气悬浮碳纳米管进行光致发光显微镜检查,以确定它们的手性和悬浮长度。使用具有InGaAs / InP单光子探测器的Hanbury-Brown-Twiss装置,在室温下对纳米管发射进行光子相关性测量。我们观察到具有明显的激发功率相关性的反聚束,在低激发功率下,我们获得的g g ^ {(2)}(0)$值小于0.5,表明产生了单个光子。我们显示了具有不同手性和悬浮长度的$ g ^ {(2)}(0)$数据,并讨论了激子扩散对单光子产生过程的影响。

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