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All optical implementation of universal shift-register using terahertz optical asymmetric de-multiplexer based Optical Devices

机译:通用移位的所有光学实现使用太赫兹光学不对称的基于光学装置的光学装置

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Nowadays, the research on design of optical circuits and devices has received wide attention among the researchers due to ultra-high speed and low-power consumption properties in the optical devices and interconnects. In this conjuncture, optical design of combinational and sequential elements is given the great priorities in optical circuit research arena. Previously, we have investigated how to design optical memory elements with minimum optical components. Here, we propose optical implementation of universal shift register. The design is made using Terahertz Optical Asymmetric Demultiplexer(TOAD)based optical devices. Our proposed design is the generalized one as it includes all the behavior of four typical shift registers. To reduce the design complexity, we have used minimum numbers of TOADs, beam combiners and beam splitters and also our design confirms zero overhead in terms of number of ancilla inputs and garbage outputs.
机译:如今,由于光学装置中的超高速度和低功耗性能和互连,研究人员在研究人员中获得了广泛关注的研究。在这种结膜中,组合和顺序元件的光学设计被赋予光学电路研究竞技场的优先事项。以前,我们研究了如何使用最小光学组件设计光学存储器元件。在这里,我们提出了通用移位寄存器的光学实现。该设计采用基于太赫兹光学不对称多路分解器(蟾蜍)的光学装置制造。我们所提出的设计是概括的设计,因为它包括四个典型移位寄存器的所有行为。为了减少设计复杂性,我们使用了最小数量的蟾蜍,梁组合器和分支分离器,并且我们的设计在Ancilla输入和垃圾输出的数量方面确认了零开销。

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