首页> 外文期刊>International Journal of Modern Physics, C. Physics and Computers >A simulator for discrete quantum walks on lattices
【24h】

A simulator for discrete quantum walks on lattices

机译:用于离散量子的模拟器走在格子上

获取原文
获取原文并翻译 | 示例
           

摘要

In this paper, we present a simulator for two-particle quantum walks on the line and one-particle on a two-dimensional squared lattice. It can be used to investigate the equivalence between the two cases (one-and two-particle walks) for various boundary conditions (open, circular, reflecting, absorbing and their combinations). For the case of a single walker on a two-dimensional lattice, the simulator can also implement the Mobius strip. Furthermore, other topologies for the walker are also simulated by the proposed tool, like certain types of planar graphs with degree up to 4, by considering missing links over the lattice. The main purpose of the simulator is to study the genuinely quantum effects on the global properties of the two-particle joint probability distribution on the entanglement between the walkers/axis. For that purpose, the simulator is designed to compute various quantities such as: the entanglement and classical correlations, (classical and quantum) mutual information, the average distance between the two walkers, different hitting times and quantum discord. These quantities are of vital importance in designing possible algorithmic applications of quantum walks, namely in search, 3-SAT problems, etc. The simulator can also implement the static partial measurements of particle(s) positions and dynamic breaking of the links between certain nodes, both of which can be used to investigate the effects of decoherence on the walker(s). Finally, the simulator can be used to investigate the dynamic Anderson-like particle localization by varying the coin operators of certain nodes on the line/lattice. We also present some illustrative and relevant examples of one-and two-particle quantum walks in various scenarios. The tool was implemented in C and is available on-line at http://qwsim.weebly.com/.
机译:在本文中,我们介绍了一个用于双粒子量子的模拟器,在二维方形格子上的线路和单粒子上。它可用于研究各种边界条件(开放,圆形,反射,吸收及其组合的两种情况(单颗粒步行)之间的等效性。对于二维晶格上的单个助行器的情况,模拟器还可以实现Mobius条。此外,通过考虑在晶格上的缺失的链接,所提出的工具也由所提出的工具模拟了沃克的其他拓扑,如图所示,如最多4的特定类型的平面图。模拟器的主要目的是研究真正的量子效应对步行者/轴之间的缠结的两个粒子关节概率分布的全局性质。为此目的,模拟器旨在计算各种数量,例如:纠缠和经典相关性,(古典和量子)互信息,两个步行者之间的平均距离,不同的击球时间和量子不和谐。这些数量在设计量子播放的可能算法应用方面至关重要,即在搜索,3周六问题等中。模拟器还可以实现粒子(S)位置的静态部分测量和某些节点之间的链路的动态断开,两者都可用于调查去虎在助行器上的效果。最后,模拟器可用于通过改变线/晶格上的某些节点的硬币运算符来研究动态的Anderson样粒子定位。我们还在各种场景中介绍了一个和两个粒子量子的一些说明性和相关的例子。该工具是在C中实现的,可在http://qwsim.weebly.com/上线。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号