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复杂体系的激发态量子化学研究
学堂班系列讲座:“基于光热转换的近红外探测”
清华2023高分子前沿讲座-面向柔性电子的功能软物质高效构筑与应用
关于提升电力半导体器件短时过载能力及其应用的探讨
报告题目:
Creation, Detection and Characterization of Multipartite Entanglement in Optical Lattices
 报告人:
Prof.Dieter Jaksch,等
英国教授
报告时间:
2006-12-05 15:00
报告地点:
理科楼1304
主办单位:
数学科学系
  简介:
摘要: Ultracold atoms trapped in optical lattices provide an ideal test bed for quantum information processing applications. They have several distinguishing features like versatility of setup, large degree of controllability of the system parameters, and extremely long coherence times. Exploiting these properties I will show how to engineer and measure multipartite entangled states which form a basic building block in quantum computing. I will discuss methods for efficiently creating graph states which are used in one-way quantum computing. I will present an efficient algorithm for engineering arbitrary graph states in optical lattices and investigate the robustness of this protocol. This will be followed by a discussion of entanglement detection and characterization networks. Such networks allow the unambiguous identification of multipartite entangled states in an optical lattice with relatively modest experimental effort. In particular I will show that no spatial resolution of different lattice sites is necessary and small errors in atom density measurements can be tolerated
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