Decoherence and Classical dynamics in Markovian Quantum Open Systems O. Brodier (1) A. M. Ozorio de Almeida (2) (1)M.P.I.P.K.S. Dresden, ALLEMAGNE (2)C.B.P.F.

Slides:



Advertisements
Similar presentations
MERA in 2D ( Multi-scale Entanglement Renormalization Ansatz )
Advertisements

1 Taoufik AMRI. Overview 3 Chapter II Quantum Protocols Chapter III Quantum States and Propositions Chapter VI Detector of « Schrödingers Cat » States.
Optimizing pointer states for dynamical evolution of quantum correlations under decoherence Bo You,Li-xiang Cen Department of Physics, SiChuan University.
QND measurement of photons Quantum Zeno Effect & Schrödingers Cat Julien BERNU YEP 2007.
APRIL 2010 AARHUS UNIVERSITY Simulation of probed quantum many body systems.
Quantum teleportation for continuous variables Myungshik Kim Queen’s University, Belfast.
Engineering correlation and entanglement dynamics in spin chains T. S. CubittJ.I. Cirac.
1 Separability and entanglement: what symmetries and geometry can say Helena Braga, Simone Souza and Salomon S. Mizrahi Departamento de Física, CCET, Universidade.
Frustration of Decoherence and Entanglement-sharing in the Spin-bath Andrew Hines Christopher Dawson Ross McKenzie Gerard Milburn.
1/03/09 De 89 à 98. 1/03/09 De 89 à 98 1/03/09 De 89 à 98.
Experimental quantum estimation using NMR Diogo de Oliveira Soares Pinto Instituto de Física de São Carlos Universidade de São Paulo
Danny Terno Entropy and entanglement on the horizon joint work with Etera Livine gr-qc/ gr-qc/ Phys. Rev. A (2005)
The Wigner Function Chen Levi. Eugene Paul Wigner Received the Nobel Prize for Physics in
Quantum random walks Andre Kochanke Max-Planck-Institute of Quantum Optics 7/27/2011.
The quantum signature of chaos through the dynamics of entanglement in classically regular and chaotic systems Lock Yue Chew and Ning Ning Chung Division.
Classical Approach to Computing Quantum Decoherence Dynamics Paul Brumer Dept. of Chemistry, and Center for Quantum Information and Quantum Control University.
Tomographic approach to Quantum Cosmology Cosimo Stornaiolo INFN – Sezione di Napoli Fourth Meeting on Constrained Dynamics and Quantum Gravity Cala Gonone.
Yinghua Wu* Xin Chen, Yinghua Wu and Victor S. Batista Department of Chemistry, Yale University, New Haven, CT Xin Chen * Current address: Department.
Solid state realisation of Werner quantum states via Kondo spins Ross McKenzie Sam Young Cho Reference: S.Y. Cho and R.H.M, Phys. Rev. A 73, (2006)
Non-Markovian Open Quantum Systems
Yinghua Wu* Xin Chen, Yinghua Wu and Victor S. Batista Department of Chemistry, Yale University, New Haven, CT Xin Chen * Current address: Department.
Long coherence times with dense trapped atoms collisional narrowing and dynamical decoupling Nir Davidson Yoav Sagi, Ido Almog, Rami Pugatch, Miri Brook.
STUDY OF CORRELATIONS AND NON-MARKOVIANITY IN DEPHASING OPEN QUANTUM SYSTEMS Università degli Studi di Milano Giacomo GUARNIERI Supervisor: Bassano VACCHINI.
Equilibrium dynamics of entangled states near quantum critical points Talk online at Physical Review Letters 78, 843.
Dynamical decoupling in solids
Memory Effect in Spin Chains Entanglement Distribution 12N Spin chains can be used as a channel for short distance quantum communication [1]. The basic.
Dynamic response of a mesoscopic capacitor in the presence of strong electron interactions Yuji Hamamoto*, Thibaut Jonckheere, Takeo Kato*, Thierry Martin.
Quantum Monte-Carlo for Non-Markovian Dynamics Collaborator : Denis Lacroix Guillaume Hupin GANIL, Caen FRANCE  Exact  TCL2 (perturbation)  TCL4  NZ2.
4.Classical entanglement CHSH version of the Bell inequalities: These deal with correlations between a set of four classical probabilities. In particular,
Semi-classics for non- integrable systems Lecture 8 of “Introduction to Quantum Chaos”
Jian-Wei Pan Decoherence-free sub-space and quantum error-rejection Jian-Wei Pan Lecture Note 7.
Christine Muschik and J. Ignacio Cirac Entanglement generated by Dissipation Max-Planck-Institut für Quantenoptik Hanna Krauter, Kasper Jensen, Jonas Meyer.
DECOHERENCE AND QUANTUM INFORMATION JUAN PABLO PAZ Departamento de Fisica, FCEyN Universidad de Buenos Aires, Argentina Paraty August 2007.
PG4 Substrato Clássico de Emaranhamento e Descoerência Quânticos Professor Alfredo Ozorio de Almeida Ementa Representações de operadores no espaço de fases.
Quantum information: From foundations to experiments Second Lecture Luiz Davidovich Instituto de Física Universidade Federal do Rio de Janeiro BRAZIL.
Degree of polarization in quantum optics UCMUCM Luis L. Sánchez-Soto, E. C. Yustas Universidad Complutense. Madrid. Spain Andrei B. Klimov Universidad.
INTERFERENCE AND QUANTIZATION IN SEMICLASSICAL VIBRATIONAL RESPONSE FUNCTIONS Scott Gruenbaum Department of Chemistry and Chemical Biology Cornell University.
Topological phase and quantum criptography with spin-orbit entanglement of the photon Universidade Federal Fluminense Instituto de Física - Niterói – RJ.
Decoherence in Phase Space for Markovian Quantum Open Systems Olivier Brodier 1 & Alfredo M. Ozorio de Almeida 2 1 – M.P.I.P.K.S. Dresden 2 – C.B.P.F.
Decoherence in Phase Space for Markovian Quantum Open Systems
Brownian Entanglement: Entanglement in classical brownian motion Dr. Theo M. Nieuwenhuizen Institute for Theoretical Physics University of Amsterdam Fluctuations,
Quantum dynamics of two Brownian particles
Phase space, decoherence and the Wigner function for finite dimensional systems. James Yearsley Superviser: Prof. JJ Halliwell. See: Gibbons et. al. quant-ph/
Dr. Howard E. Brandt U.S. Army Research Laboratory (ARL) An Isaac Newton Institute Workshop Entanglement and Transfer of Quantum Information Quantum Cryptographic.
Unraveling Entanglement O. Brodier M. Busse, C. Viviescas, A. R. R. Carvalho, A. Buchleitner M.P.I.P.K.S. Nöthnitzer Str. 38, D DRESDEN, ALLEMAGNE.
Polarization descriptions of quantized fields Anita Sehat, Jonas Söderholm, Gunnar Björk Royal Institute of Technology Stockholm, Sweden Pedro Espinoza,
1 Realization of qubit and electron entangler with NanoTechnology Emilie Dupont.
Unraveling Entanglement O. Brodier M. Busse, C. Viviescas, A. R. R. Carvalho, A. Buchleitner M.P.I.P.K.S. Nöthnitzer Str. 38, D DRESDEN, ALLEMAGNE.
DECOHERENCE AND QUANTUM CLASSICAL TRANSITION
Liouville Dynamics and Classical Analogues of Information-Related Quantum Impossible Processes A.R. Plastino University of Pretoria, South Africa A.Daffertshofer.
Unraveling Entanglement O. Brodier M. Busse, C. Viviescas, A. R. R. Carvalho, A. Buchleitner M.P.I.P.K.S. Nöthnitzer Str. 38, D DRESDEN, ALLEMAGNE.
Experimental Quantification of Entanglement in low dimensional Spin Systems Chiranjib Mitra IISER-Kolkata Quantum Information Processing and Applications.
Entanglement and Optimal Strings of Qubits for Memory Channels Laleh Memarzadeh Sharif University of Technology IICQI 7-10 Sept 2007 Kish Island.
Neutrino states in oscillation experiments – are they pure or mixd? Pheno 07, May, 07-09, 2007, Madison, Wisconsin Marek Zralek, Univ. of Silesia.
DECOHERENCE AND QUANTUM INFORMATION JUAN PABLO PAZ Departamento de Fisica, FCEyN Universidad de Buenos Aires, Argentina Paraty August 2007.
International Scientific Spring 2016
。 33 投资环境 3 开阔视野 提升竞争力 。 3 嘉峪关市概况 。 3 。 3 嘉峪关是一座新兴的工业旅游城市,因关得名,因企设市,是长城文化与丝路文化交 汇点,是全国唯一一座以长城关隘命名的城市。嘉峪关关城位于祁连山、黑山之间。 1965 年建市,下辖雄关区、镜铁区、长城区, 全市总面积 2935.
From Quantum metrological precision bounds to Quantum computation speed-up limits R. Demkowicz-Dobrzański, M. Markiewicz Faculty of Physics, University.
QUEST - Centre for Quantum Engineering and Space-Time Research Spin dynamics and the Quantum Zeno Effect Carst en Klem pt Leibn iz Univ ersitä t Hann over.
Date line +1+1 +2+2 +3+ a.m.p.m.
Chao Zhuang, Samansa Maneshi, XiaoXian Liu, Ardavan Darabi, Chris Paul, Luciano Cruz, and Aephraim Steinberg Department of Physics, Center for Quantum.
Using Quantum Means to Understand and Estimate Relativistic Effects
Linear Quantum Error Correction
Ultrafast electron dynamics and decoherence in surface bands
Classical World because of Quantum Physics
أنماط الإدارة المدرسية وتفويض السلطة الدكتور أشرف الصايغ
Optimal Jump Operators for Entanglement Measure
The Grand Unified Theory of Quantum Metrology
Berry phase in graphene: a semi-classical perspective
Department of Physics, Fudan University, Shanghai , China
Presentation transcript:

Decoherence and Classical dynamics in Markovian Quantum Open Systems O. Brodier (1) A. M. Ozorio de Almeida (2) (1)M.P.I.P.K.S. Dresden, ALLEMAGNE (2)C.B.P.F. Rio de Janeiro, BRASIL

Phase Space Representation Classical propagation Quantum propagation Liouville propagation: Wigner function: S. Habib, K. Shizume, W. H. Zurek Phys.Rev.Lett. 80 (1998)

Separation time Z. P. Karkuszewski, J. Zakrzewski, W. H. Zurek Phys. Rev. A 65, (2002)

Decoherence due to coupling to environment: effect on separation time?

Characteristic function Momenta: Semiclassical analysis: Markovian Quantum Open System: Hamilton Jacobi:

Result with

Conclusion analysis of decoherence of a Markovian Quantum Open System Dynamical dependence of decoherence A.M. Ozorio de Almeida, O. Brodier in press Ann. Phys. (2006)

W.K.B.

Entanglement dynamics A B A B Measuring environment → Pure entanglement Entanglement of a mixture

Setup 1 A B

Setup 2 A B

Conclusion For this example there exists an optimal experimental setup which gives the exact entanglement measure. General Prescription for Measuring Environment?