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Please use this identifier to cite or link to this item: http://ir.calis.edu.cn/hdl/530500/4711

Title: Realizing ternary quantum switching networks without ancilla bits
Authors: Department of Electrical & Computer Engineering, Portland State University,1900 SW Fourth Avenue, PO Box 751, Portland, Oregon 97201, USA
Institute of Computer Applications, Chinese Academy of Sciences, Chengdu 610041,People’s Republic of China
Guowu Yang
Xiaoyu Song
Marek Perkowski
Jinzhao Wu
Keywords: quantum networks
ternary switching circuits
Issue Date: 2005
Publisher: J. Phys. A, Math. Gen
Citation: J. Phys. A, Math. Gen., 2005, Vol.38 (44), pp.9689-9697
Abstract: This paper investigates the synthesis of quantum networks built to realize ternary switching circuits in the absence of ancilla bits. The results we established are twofold. The first shows that ternary Swap, ternary NOT and ternary Toffoli gates are universal for the realization of arbitrary $n \times n$ ternary quantum switching networks without ancilla bits. The second result proves that all $n \times n$ quantum ternary networks can be generated by NOT, Controlled-NOT, Multiply-Two and Toffoli gates. Our approach is constructive.
URI: http://ir.calis.edu.cn/hdl/530500/4711
Appears in Collections:期刊论文

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