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All-Photonic Multifunctional Molecular Logic Device

机译:全光子多功能分子逻辑器件

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摘要

Photochromes are photoswitchable, bistable chromophores which, like transistors, can implement binary logic operations. When several photochromes are combined in one molecule, interactions between them such as energy and electron transfer allow design of simple Boolean logic gates and more complex logic devices with all-photonic inputs and outputs. Selective isomerization of individual photochromes can be achieved using light of different wavelengths, and logic outputs can employ absorption and emission properties at different wavelengths, thus allowing a single molecular species to perform several different functions, even simultaneously. Here, we report a molecule consisting of three linked photochromes that can be configured as AND, XOR, INH, half-adder, half-subtractor, multiplexer, demultiplexer, encoder, decoder, keypad lock, and logically reversible transfer gate logic devices, all with a common initial state. The system demonstrates the advantages of light-responsive molecules as multifunctional, reconfigurable nanoscale logic devices that represent an approach to true molecular information processing units.
机译:色素是可光开关的双稳态生色团,与晶体管一样,可以实现二进制逻辑运算。当几种光致变色剂结合在一个分子中时,它们之间的相互作用(例如能量和电子转移)可以设计出简单的布尔逻辑门和具有全光子输入和输出的更复杂的逻辑器件。可以使用不同波长的光实现单个光致色素的选择性异构化,并且逻辑输出可以采用不同波长的吸收和发射特性,从而允许单个分子物种甚至同时执行多种不同功能。在这里,我们报告一个分子,该分子由三个链接的光致变色剂组成,这些光致变色剂可以配置为AND,XOR,INH,半加法器,半减法器,多路复用器,多路分解器,编码器,解码器,键盘锁和逻辑可逆传输门逻辑设备,所有具有共同的初始状态。该系统证明了光响应分子作为多功能,可重新配置的纳米级逻辑设备的优势,代表了一种真正的分子信息处理单元的方法。

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