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Design of an optical Toffoli gate for reversible logic operation using silicon photonic integrated circuits

机译:使用硅光子集成电路的可逆逻辑运行设计光学Toffoli门的设计

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Reversible logic is an emerging research area, which can achieve the one-to-one mapping function to reduce the power dissipation has made these circuits lossless circuits. In this letter, we propose an on-chip optical Toffoli gate for reversible logic operation using silicon micro-ring resonators (MRRs). The possibility of using Silicon-on-insulator (SOI) based MRR as thermo-optic switch is described through thermo-optic effect. Three electrical input signals (logic operands) are applied across the micro-heaters above MRRs to determine the switching states of MRRs, and the reversible logic operation results are directed to the output ports in the form of light, respectively. For proof of concept, the scattering matrix method is employed to establish numerical model of the device. Simulation results confirming described method are presented in this paper. The proposed design is optimized in terms of optical cost and the delay and garbage output.
机译:可逆逻辑是一个新兴的研究区域,可以实现一对一的映射功能来降低功耗已经使这些电路无损电路。 在这封信中,我们提出了一种用于使用硅微环谐振器(MRRS)的可逆逻辑操作的片上光学Toffoli栅极。 通过热视光效应描述使用基于绝缘体(SOI)的MRR作为热视光开关的可能性。 在MRR上方的微加热器上施加三个电输入信号(逻辑操作数)以确定MRRS的切换状态,并且可逆逻辑操作结果分别以光的形式引导到输出端口。 对于概念证明,采用散射矩阵方法来建立设备的数值模型。 本文提出了确认所描述的方法的仿真结果。 所提出的设计在光学成本和延迟和垃圾输出方面进行了优化。

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