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Optical reversible programmable Boolean logic unit

机译:光学可逆可编程布尔逻辑单元

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Computing with reversibility is the only way to avoid dissipation of energy associated with bit erase. So, a reversible microprocessor is required for future computing. In this paper, a design of a simple all-optical reversible programmable processor is proposed using a polarizing beam splitter, liquid crystal-phase spatial light modulators, a half-wave plate, and plane mirrors. This circuit can perform 16 logical operations according to three programming inputs. Also, inputs can be easily recovered from the outputs. It is named the "reversible programmable Boolean logic unit (RPBLU)." The logic unit is the basic building block of many complex computational operations. Hence the design is important in sense. Two orthogonally polarized lights are defined here as two logical states, respectively.
机译:具有可逆性的计算是避免与位擦除相关的能量消散的唯一方法。因此,未来的计算需要可逆的微处理器。在本文中,提出了一种使用偏振分束器,液晶相空间光调制器,半波片和平面镜的简单全光可逆可编程处理器的设计。该电路可根据三个编程输入执行16个逻辑运算。同样,可以很容易地从输出中恢复输入。它被称为“可逆可编程布尔逻辑单元(RPBLU)”。逻辑单元是许多复杂计算操作的基本组成部分。因此,设计在意义上很重要。在此,将两个正交偏振光分别定义为两个逻辑状态。

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