PPT-Monogamy of Quantum Correlations

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Aditi Sen De HarishChandra Research Institute India Monogamy of Quantum Correlations Aditi Sen De HarishChandra Research Institute India Coworkers Asutosh Salini

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Aditi Sen De HarishChandra Research Institute India Monogamy of Quantum Correlations Aditi Sen De HarishChandra Research Institute India Coworkers Asutosh Salini . understanding quantum mechanics from fundamental perspective quantum nonlocality measurement theory decoherence understanding quantum behavior reected in the properties of matter and applications they are the essential resource for quantum technolo Ognyan. Oreshkov. , . Fabio . Costa. , . ČaslavBrukner. Bhubaneswar. arXiv:1105.4464. 20 December2011. Conference on Quantum Information. X. T. D. E. A. B. C. A. B. C. D. E. Measurements in space-time. Ognyan. Oreshkov. , . Fabio . Costa. , . ČaslavBrukner. Bhubaneswar. arXiv:1105.4464. 20 December2011. Conference on Quantum Information. X. T. D. E. A. B. C. A. B. C. D. E. Measurements in space-time. Monogamy- general facts. Only 5% of mammals are monogamous. Mammals tend to form s. ocial groups. Obligate monogamy- . biparental. care. Facultative monogamy- dispersal. Both disproven!. Organisms in polygamous species are more widely dispersed. Fernando . G.S.L. . Brand. ão. ETH Zürich. Based on joint work with . A. Harrow . and . M. . Horodecki. . Quo Vadis Quantum Physics, Natal 2013. Quantum is Hard. Use of DoE supercomputers by area . Challenges and Opportunities. Fernando . G.S.L. . Brand. ão. Universidade. Federal de Minas . Gerais. , Brazil. Based on joint work with. M. . Christandl. , A. Harrow, M. . Horodecki. , J. Yard. PI, 02/11/2011. and the monogamy of entanglement. Aram . Harrow (MIT). Brown SUMS. March 9, 2013. Quantum mechanics. QM has also explained:. the stability of atoms. the photoelectric effect. e. verything else we’ve looked at. Aram Harrow (MIT). Simons Institute, 27 Feb 2014. based on joint work with . Fernando Brandão (UCL). arXiv:1210.6367 + εunpublished. “correlations”. (multipartite conditional probability distributions). Dieter Jaksch. Outline. Lecture 1: Introduction. What defines a quantum simulator? Quantum simulator criteria. Strongly correlated quantum systems.. Lecture 2: Optical lattices. Bose-Einstein condensation, adiabatic loading of an optical lattice. Fernando . G.S.L. . Brand. ão. ETH Zürich. . Princeton EE Department, March 2013. Simulating quantum is hard. More than . 25%. . of . DoE . supercomputer power . is devoted to simulating quantum physics. . Entanglement, discord and harnessing noise. Natalia . Korolkova. . St . Andrews, UK. QUANTUM. INFORMATION. Quantum entanglement: definition and some textbook examples. Going macroscopic: quantum information in infinite-dimensional . Light: . Quantumness. . of Correlations and their applications. Natalia . Korolkova. , . St Andrews, UK. C. . Croal. , N. Quinn, L. . Mista. *. University of St. Andrews, UK;. *. Palacky. University, Olomouc, Czech Republic. . C. S. Unnikrishnan. Fundamental Interactions Laboratory. Tata Institute of Fundamental Research,. Mumbai 400005. tifr.res.in/~filab. Resolution of nonlocality puzzle in EPR paradox, . C. S. Unnikrishnan, Current Science, . Aram Harrow (MIT). Simons Institute, 27 Feb 2014. based on joint work with . Fernando Brandão (UCL). arXiv:1210.6367 + εunpublished. “correlations”. (multipartite conditional probability distributions).

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