作者
Erik Sjöqvist, Vahid Azimi Mousolou, Carlo M Canali
发表日期
2016/10
期刊
Quantum Information Processing
卷号
15
页码范围
3995-4011
出版商
Springer US
简介
Geometric quantum computation is the idea that geometric phases can be used to implement quantum gates, i.e., the basic elements of the Boolean network that forms a quantum computer. Although originally thought to be limited to adiabatic evolution, controlled by slowly changing parameters, this form of quantum computation can as well be realized at high speed by using nonadiabatic schemes. Recent advances in quantum gate technology have allowed for experimental demonstrations of different types of geometric gates in adiabatic and nonadiabatic evolution. Here, we address some conceptual issues that arise in the realizations of geometric gates. We examine the appearance of dynamical phases in quantum evolution and point out that not all dynamical phases need to be compensated for in geometric quantum computation. We delineate the relation between Abelian and non-Abelian geometric …
引用总数
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学术搜索中的文章
E Sjöqvist, V Azimi Mousolou, CM Canali - Quantum Information Processing, 2016