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An All-Optical Excitonic Switch Operated in the Liquid and Solid Phases

机译:在液体和固态相中操作的全光激发器开关

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摘要

The excitonic circuitry found in photosynthetic organisms suggests an alternative to electronic circuits, but the assembly of optically active molecules to fabricate even simple excitonic devices has been hampered by the limited availability of suitable molecular scale assembly technologies. Here we have designed and operated a hybrid all-optical excitonic switch comprised of donor/acceptor chromophores and photochromic nucleotide modulators assembled with nanometer scale precision using DNA nanotechnology. The all-optical excitonic switch was operated successfully in both liquid and solid phases, exhibiting high ON/OFF switching contrast with no apparent cyclic fatigue through nearly 200 cycles. These findings, combined with the switch's small footprint and volume, estimated low energy requirement, and potential ability to switch at speeds in the 10s of picoseconds, establish a prospective pathway forward for all-optical excitonic circuits.
机译:光合生物中发现的兴趣电路表明了电子电路的替代,但是通过合适的分子尺度组装技术的有限可用性阻碍了光学活性分子的组装甚至是简单的兴奋器件的制造。 在这里,我们已经设计和操作了由供体/受体发色团的混合全光学激发器,并使用DNA纳米技术组装具有纳米刻度精度的光致变色核苷酸调制器。 全光激发器开关在液体和固相中成功操作,表现出高开/关切换对比度,通过近200周期没有明显的循环疲劳。 这些发现与开关的小占地面积和体积小,估计的低能量要求以及在PicoSeconds 10年代速度下切换的潜力能力,建立了全光激发电路的前瞻性通路。

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