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首页> 外文期刊>Open Journal of Inorganic Non-metallic Materials >All-Optical Reconfigurable Metamaterial Employing the Self-Assembly of CdTe Quantum Dots
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All-Optical Reconfigurable Metamaterial Employing the Self-Assembly of CdTe Quantum Dots

机译:所有光学可重新配置的超材料,采用CDTE量子点的自组装

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Positively and negatively charged polyelectrolytes, namely, Poly(diallyldimethylammonium chloride) and Poly(styrene sulfonate), respectively, were employed to disperse and deploy negatively charged quantum dots on an otherwise passive metamaterial structure with a resonant frequency of 0.62 THz, by employing a layer-by-layer, self-assembly scheme. Upon exposure to a UV source with a wavelength of 365 nm the amplitude modulation was observed to increase with increases in the number of deposited bi-layers, until a modulation maximum of 2.68% was recorded enabling an all-optical, dynamically reconfigurable metamaterial geometry. Furthermore, amplitude modulation was subsequently observed to decrease with further increases in the number of layers employed due to quenching and shadowing effects. The experimental observations reported herein will enable the utilization of all-optical reconfigurable THz devices for communication and data transmission applications.
机译:分别用于聚(二烯丙基甲基氯化铵)和聚(苯乙烯磺酸盐)和聚(苯乙烯磺酸盐)的正电解和呈负电荷的量子点,通过采用层,通过采用谐振频率为0.62至6分的谐振频率的带负电的量子点。 - 层,自组装方案。在暴露于波长的波长365nm的UV源时,观察幅度调制随着沉积的双层的数量的增加而增加,直到记录最多2.68%的调制,从而实现全光,动态可重新配置的超材料几何。此外,随后观察幅度调节以减少由于淬火和阴影效应而采用的层数进一步增加。这里报告的实验观察将能够利用用于通信和数据传输应用的全光可重构的THz设备。

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