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首页> 外文期刊>Physical review letters >Direct Observation of Dark Excitons in Individual Carbon Nanotubes: Inhomogeneity in the Exchange Splitting
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Direct Observation of Dark Excitons in Individual Carbon Nanotubes: Inhomogeneity in the Exchange Splitting

机译:单个碳纳米管中暗激子的直接观察:交换分裂中的不均匀性。

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We report the direct observation of spin-singlet dark excitons in individual single-walled carbon nanotubes through low-temperature micro-magneto-photoluminescence spectroscopy. A magnetic field (B) applied along the tube axis brightened the dark state, leading to the emergence of a new emission peak. The peak rapidly grew in intensity with increasing B at the expense of the originally dominated bright exciton peak and became dominant at B > 3 T. This behavior, universally observed for more than 50 tubes of different chiralities, can be quantitatively modeled by incorporating the Aharonov-Bohm effect and intervalley Coulomb mixing. The directly measured dark-bright splitting values were 1-4 meV for tube diameters 1.0-1.3 nm. Scatter in the splitting value emphasizes the role of the local environment surrounding a nanotube in determining its excitonic fine structure.
机译:我们报告通过低温微磁光致发光光谱法在单个单壁碳纳米管中直接观察到自旋单暗激子。沿管轴施加的磁场(B)使暗态变亮,导致出现新的发射峰。随着B的增加,该峰的强度迅速增加,但以最初占主导地位的明亮激子峰为代价,并在B> 3 T处成为主导。这种行为,普遍存在于50多个不同手性的试管中,可以通过结合Aharonov进行定量建模。 -玻姆效应和intervalley库仑混合。对于1.0-1.3nm的管直径,直接测量的暗-亮分裂值是1-4meV。分裂值的分散强调了纳米管周围局部环境在确定其激子精细结构中的作用。

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