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Trion-Polariton Formation in Single-Walled Carbon Nanotube Microcavities

机译:单壁碳纳米管微腔中的Trion-极化子形成

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摘要

We demonstrate the formation and tuning of charged trion-polaritons in polymer-sorted (6,5) single-walled carbon nanotubes in a planar metal-clad microcavity at room temperature. The positively charged trion-polaritons were induced by electrochemical doping and characterized by angle-resolved reflectance and photoluminescence spectroscopy. The doping level of the nanotubes within the microcavity was controlled by the applied bias and thus enabled tuning from mainly excitonic to a mixture of exciton and trion transitions. Mode splitting of more than 70 meV around the trion energy and emission from the new lower polariton branch corroborate a transition from exciton-polaritons (neutral) to trion-polaritons (charged). The estimated charge-to-mass ratio of these trion-polaritons is 200 times higher than that of electrons or holes in carbon nanotubes, which has exciting implications for the realization of polaritonic charge transport.
机译:我们展示了室温下平面金属包覆的微腔中聚合物分类的(6,5)单壁碳纳米管中带电荷的三级极化子的形成和调谐。带正电的三级极化子通过电化学掺杂诱导,并通过角分辨反射率和光致发光光谱进行表征。微腔内纳米管的掺杂水平由施加的偏压控制,因此能够从主要为激子的调谐到激子和三重子跃迁的混合物。围绕三重子能量的模式分裂超过70 meV,新的下部极化子分支的发射证实了从激子极化子(中性)到三重极化子(带电)的过渡。这些三重极化子的估计的质荷比比碳纳米管中的电子或空穴的荷质比高200倍,这对实现极化电荷传输具有令人兴奋的意义。

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