epsilon-近零有机薄膜在可见光谱范围内强非线性光学响应(会议报告)

J. Wu, Y. Lee, E. Garoni, Hanayo Kita, K. Kamada, B. Woo, Y. Jun, Sangmin Chae, H. Kim, Kwang Jin Lee, Seokhyun Yoon, E. Choi, F. Mathevet, Igor Ozerov, J. Ribierre, A. D'Aléo
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引用次数: 0

摘要

我们利用具有洛伦兹型色散的有机分子超薄薄膜在可见光谱范围内证明了有效的ENZ响应。为此,在不同掺杂浓度下,用[5,6-二氯-2-[[5,6-二氯-1-乙基-3-(4-亚砜丁基)-苯并咪唑-2-乙基]-丙烯]-1-乙基-3-(4-亚砜丁基)-苯并咪唑氢氧化物]钠(TDBC)和[2,4-二[8-羟基-1,1,7,7-四甲基julolidin-9-基]方aine](HTJSq)两种聚甲基染料制备自旋包覆聚合物薄膜。通过改变薄膜中掺杂浓度,可以对高色散介电常数1的实部进行调控,使ENZ区-1 < e1 <1的光谱宽度位于可见光谱范围内。这些结果不仅与需要定制可见ENZ区域的应用非常相关,而且还提供了关于分子聚集如何影响ENZ性质的重要新信息。特别地,基于我们的发现,我们强调j聚集体并不总是获得强ENZ反应的强制性分子组装。相反,只有几纳米大小的分子聚集体才能产生强烈的分子相互作用(即能量最低跃迁的达维多夫分裂),以实现强烈的ENZ响应。然后研究了enz增强的光学克尔非线性在TDBC和HTJSq的最佳浓度膜中的作用。非线性折射率和非线性吸收系数在与大分子聚集体相关的激子跃迁偶极子耦合的ENZ区被发现强烈增强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strong nonlinear optical response in the visible spectral range with epsilon-near-zero organic thin films (Conference Presentation)
We demonstrate an efficient ENZ response in the visible spectral range using organic molecular ultrathin films possessing a Lorentz-type dispersion. For this purpose, two polymethine dyes: sodium [5,6-dichloro-2-[[5,6-dichloro-1-ethyl-3-(4-sulphobutyl)- benzimidazol-2-ylidene]-propenyl]-1-ethyl-3-(4-sulphobutyl)-benzimidazolium hydroxide] (TDBC), and [2,4-bis[8-hydroxy-1,1,7,7-tetramethyljulolidin-9-yl]squaraine] (HTJSq) were used in spin-coated polymer films at different doping concentrations. By varying the doping concentration in thin films, the real part of highly dispersive permittivity e1 can be manipulated and tuned such that the spectral width of ENZ region -1 < e1 <1 resides in the visible spectral range. These results are not only extremely relevant for applications requiring a custom-tailored ENZ region in the visible but also provide important novel information on how molecular aggregation affects the ENZ properties. In particular, based on our findings, we stress that J-aggregate is not always a mandatory molecular assembly for obtaining a strong ENZ response. Instead, molecular aggregates with the size of a few nanometers resulting in strong molecular interactions (i.e. Davydov splitting of the lowest transition in energy) are required to achieve a strong ENZ response. The ENZ-enhanced optical Kerr nonlinearity is then investigated in the optimum concentration films of TDBC and HTJSq. Both nonlinear refractive index and nonlinear absorption coefficient are found to be strongly enhanced in the ENZ region originating from the coupling of excitonic transition dipoles associated with large molecular aggregates.
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