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All-optical switching in dye-doped DNA nanofibers

机译:染料掺杂DNA纳米纤维的全光切换

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摘要

All-optical switches are introduced which are based on deoxyribonucleic acid (DNA) in the form of electrospun fibers, where DNA is semi-intercalated with a push-pull, luminescent nonlinear pyrazoline derivative. Optical birefringence is found in the organic nanofibers, with fully reversible switching controlled through continuous-wave laser irradiation. The photoinduced signal is remarkably large, with birefringence highlighted by optically-driven refractive index anisotropy approaching 0.001. Sub-millisecond characteristic switching times are found. Integrating dye-intercalated DNA complex systems in organic nanofibers, as a convenient and efficient approach to template molecular organization and control it by external stimuli, might open new routes for realizing optical logic gates, reconfigurable photonic networks and sensors through physically-transient biopolymer components.
机译:引入全光开关,其基于脱氧核糖核酸(DNA),其形式是电纺丝纤维的形式,其中DNA用推拉式发光非线性吡唑啉衍生物半嵌入。 在有机纳米纤维中发现光学双折射,通过连续波激光照射控制完全可逆的切换。 光诱导信号非常大,具有双折射,通过光学驱动的折射率各向异性接近0.001来突出。 找到子毫秒的特征切换时间。 将染料插入的DNA复合体系集中在有机纳米纤维中,作为通过外部刺激对模板分子组织和控制IT的方便和有效的方法,可能通过物理瞬态的生物聚合物组分来开辟用于实现光学逻辑栅极,可重新配置的光子网络和传感器的新路线。

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