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Giant Circular Dichroism in Individual Carbon Nanotubes Induced by Extrinsic Chirality

机译:外在手性诱导单个碳纳米管中的巨大圆二色性

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摘要

Circular dichroism is widely used for characterizing organic and biological materials, but measurements at a single-molecule level are challenging because differences in absorption for opposite helicities are small. Here, we show that extrinsic chirality can induce giant circular dichroism in individual carbon nanotubes, with the degree of polarization reaching 65%. The signal has a large dependence on the incidence angle, consistent with extrinsic-chirality-induced effects in which symmetry is broken by the optical wave vector. We propose that the field-induced charge distribution on the substrate results in an efficient polarization conversion, giving rise to the giant dichroism. Our results highlight the possibility of polarization manipulation at the nanoscale for applications in integrated photonics and novel metamaterial designs.
机译:圆二色性被广泛用于表征有机和生物材料,但是单分子水平的测量具有挑战性,因为相反螺旋的吸收差异很小。在这里,我们表明外在手性可以在单个碳纳米管中诱导巨大的圆二色性,极化度达到65%。信号对入射角的依赖性很大,这与非手性引起的效应一致,在这种效应中,对称性被光波矢量破坏。我们提出,场致电荷在基板上的分布会导致有效的极化转换,从而引起巨大的二向色性。我们的结果突出了在集成光子学和新型超材料设计中应用纳米级偏振操作的可能性。

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