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Reversible arithmetic logic unit for quantum arithmetic

机译:用于量子算术的可逆算术逻辑单元

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This communication presents the complete design of a reversible arithmetic logic unit (ALU) that can be part of a programmable reversible computing device such as a quantum computer. The presented ALU is garbage free and uses reversible updates to combine the standard reversible arithmetic and logical operations in one unit. Combined with a suitable control unit, the ALU permits the construction of an r-Turing complete computing device. The garbage-free ALU developed in this communication requires only 6n elementary reversible gates for five basic arithmetic-logical operations on two n-bit operands and does not use ancillae. This remarkable low resource consumption was achieved by generalizing the V-shape design first introduced for quantum ripple-carry adders and nesting multiple V-shapes in a novel integrated design. This communication shows that the realization of an efficient reversible ALU for a programmable computing device is possible and that the V-shape design is a very versatile approach to the design of quantum networks.
机译:此通信介绍了可逆算术逻辑单元(ALU)的完整设计,该单元可以是诸如量子计算机之类的可编程可逆计算设备的一部分。提出的ALU是无垃圾的,并使用可逆更新将标准可逆算术和逻辑运算组合在一个单元中。结合适当的控制单元,ALU允许构建r-Turing完整计算设备。在此通信中开发的无垃圾ALU仅需要6n个基本可逆门,即可对两个n位操作数进行五个基本算术逻辑运算,并且不使用辅助函数。通过推广首次引入量子纹波加法器的V形设计并在新颖的集成设计中嵌套多个V形,可以实现如此低的资源消耗。这种交流表明,为可编程计算设备实现有效的可逆ALU是可能的,并且V形设计是量子网络设计的一种非常通用的方法。

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