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学堂班系列讲座:“化学思维与材料创新---非传统结构荧光材料的高效构建”
重新认识酸雨中的化学
基于纳米晶粒自组装材料的智能微纳器件
美院科研与主题创作谈
报告题目:
A substate theorem in classical and quantum information theory with some applications
 报告人:
Pranab Sen
School of Technology and Computer Science
Tata Institute of Fundamental Research, India
报告时间:
2008-05-07 15:30
报告地点:
Room 4-603, FIT Building, Tsinghua University
主办单位:
ITCS, Tsinghua University
  简介:

       Suppose P, Q are probability distributions on the same sample space. Their relative entropy is defined as S(P||Q) = \sum_i P(i) \log (P(i) / Q(i)). The relative entropy is an important information theoretic quantity and is related to mutual information of two systems. The substate theorem states that if S(P||Q) < c, then there is a probability distribution P' close to P such that P'(i) / 2^{O(c)} < Q(i) for all i. A similar substate theorem holds for a pair of quantum states, under suitable definitions of the quantum information theoretic quantities.
        The substate theorem gives us a powerful tool for several questions in classical and quantum communcation and information. Very roughly, the power of the substate theorem comes from the fact that if the entropy of P relative to Q is at most c, then Q can be used as a substitute for P with a 2^{O(c)} loss in efficiency. Using the substate theorem, one can prove rounds versus privacy tradeoffs as well as rounds versus communication tradeoffs for several problems, as well as message compression and direct sum resuts in communication complexity, besides other information theoretic results.
        The talk will give an introduction to the classical and quantum statements of this theorem, together with an illustration of one of its applications. No prior knowledge of quantum information is required.


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