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spins [2016/05/09 14:43] – [Quantum and classical correlations in solid state systems] infopticsspins [2019/08/29 13:19] (current) – [Quantum information in condensed matter systems] tro
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-====== Quantum and classical correlations in solid state systems ====== +====== Quantum information in condensed matter systems ====== 
-This research is led by profs. [[people:sarandy|Marcelo Sarandy]], [[people:tro|Thiago R. Oliveira]] and Mohammad Rajabpour. +This research is led by profs. [[people:sarandy|Marcelo Sarandy]], [[people:tro|Thiago R. Oliveira]] and [[https://sites.google.com/site/mohammadalirajabpour/home|Mohammad Rajabpour]]    * [[http://lattes.cnpq.br/0509371840001622|Fernando Iemini]]\\
-===== Quantifying correlations in quantum information theory ===== +
-{{ tripartite.png?100}} +
-  * Multipartite entanglement and monogamy relations+
  
-Recent paper:\\ +=====Quantum correlations and applications in many-body systems===== 
-Monogamy inequality and residual entanglement of three qubits under decoherence. de Oliveira//Phys. Rev. A// **80**, 022331 (2009).+The aim of this research area is the investigation of entanglement, 
 +nonlocality, and other quantum correlations (such as quantum discord) 
 +in multi-particle quantum systems. Topics of interest include quantum 
 +phase transitions in condensed matter systems, characterization of 
 +quantum protocols through the collective correlation behavior, 
 +thermalization of pure quantum states, and quantum thermodynamics. \\ 
 +\\ 
 +Selected publications:\\ 
 +* F. M. Paula, P. C. Obando, M. S. Sarandy, {{ ::Sarandy-ref-1.jpg?210|}} 
 +[[http://journals.aps.org/pra/abstract/10.1103/PhysRevA.93.042337| 
 +Non-Markovianity through multipartite correlation measures]], //Phys. Rev. A // **93**, 042337 
 +(2016).\\ 
 +* H. C. Braga, C. C. Rulli, T. R. de Oliveira, M. S. Sarandy, 
 +[[http://journals.aps.org/pra/abstract/10.1103/PhysRevA.90.042338 
 +|Maxwell's demons in multipartite quantum correlated systems]],  
 +// Phys. Rev. A // **90**, 042338 (2014).\\ 
 +* F. M. Paula, I. A. Silva, J. D. Montealegre, A. M. Souza, E. R. 
 +deAzevedo, R. S. Sarthour, A. Saguia, I. S. Oliveira, D. O. 
 +Soares-Pinto, G. Adesso, M. S. Sarandy,  
 +[[http://journals.aps.org/prl/abstract/10.1103/PhysRevLett.111.250401| 
 +Observation of environment-induced double sudden transitions in  
 +geometric quantum correlations]], {{ pt.png?210}} 
 +// Phys. Rev. Lett. // **111**, 250401 (2013).\\ 
 +* T. R. de Oliveira, A. Saguia, M. S. Sarandy,  
 +[[http://iopscience.iop.org/article/10.1209/0295-5075/100/60004/meta| 
 +Nonviolation of Bell's Inequality in Translation Invariant Systems]],  
 +// EPL // **100**, 60004 (2012).\\  
 +* J. Maziero, H. C. Guzman, L. C. Céleri, M. S. Sarandy, R. M. Serra,   
 +[[http://journals.aps.org/pra/abstract/10.1103/PhysRevA.82.012106| 
 +Quantum and classical thermal correlations in the XY spin-1/2 chain]], \\ 
 +//Phys. Rev. A// **82**, 012106 (2010).\\ 
 +* M. S. Sarandy, 
 +[[http://journals.aps.org/pra/abstract/10.1103/PhysRevA.80.022108| 
 +Classical correlation and quantum discord in critical systems]],  
 +//Phys. Rev. A// **80**, 022108 (2009).
  
-===== Correlations in quantum critical systems===== +===== Quantifying entanglement in quantum information theory ===== 
-{{ pt.png?200}} +{{ tripartite.png?100}} 
-  * Bipartite and multipartite entanglement and correlations in quantum phase transitions+  * Quantification of bipartite and multipartite entanglement, as well as monogamy relations. 
 +\\ 
 +Selected publications:\\
  
-Recent papers:\\ +* Thiago R. de Oliveira,  
- +[[http://journals.aps.org/pra/abstract/10.1103/PhysRevA.80.022331| 
-Entanglement dynamics via geometric phases in quantum spin chainsCastro, Sarandy, Phys. Rev. A **83**, 042334 (2011).\\ +Monogamy inequality and residual entanglement of three qubits under decoherence]] 
- + //Phys. Rev. A// **80**, 022331 (2009).\\ 
-Quantum and classical thermal correlations in the XY spin-1/2 chain   Maziero et al.//Phys. Rev. A// **82**, 012106 (2010).\\ +* C. S. Castro, M. S. Sarandy,  
- +[[http://journals.aps.org/pra/abstract/10.1103/PhysRevA.83.042334| 
-Nonadditive entropy for random quantum spin-S chainsSaguia,Sarandy//PhysLettA// **374**, 3384 (2010).\\ +Entanglement dynamics via geometric phases in quantum spin chains]],  
- +// Phys. Rev. A // **83**, 042334 (2011).\\ 
-Entanglement and local extremes at an infinite-order quantum phase transition. RulliSarandy; //Phys. Rev. A// **81**,  032334 (2010).\\ +* CC. RulliM. S. Sarandy,  
- +[[http://journals.aps.org/pra/abstract/10.1103/PhysRevA.81.032334| 
-Classical correlation and quantum discord in critical systems. Sarandy; //Phys. Rev. A// **80**, 022108 (2009).+Entanglement and local extremes at an infinite-order quantum phase transition]] 
 +//Phys. Rev. A// **81**,  032334 (2010).\\
  
 ===== Many-particle approximation schemes ===== ===== Many-particle approximation schemes =====
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 ===== The role of entanglement in the thermalization process ===== ===== The role of entanglement in the thermalization process =====
-Recent papers:\\+Selected publications:\\
 Typicality in random matrix product states. Garnerone, de Oliveira, Zanardi; //Phys. Rev. A// **81**, 032336 (2010).\\ Typicality in random matrix product states. Garnerone, de Oliveira, Zanardi; //Phys. Rev. A// **81**, 032336 (2010).\\
 Statistical properties of random matrix product states. Garnerone, de Oliveira, Zanardi, Haas; //Phys. Rev. A// **82**, 052312 (2010). Statistical properties of random matrix product states. Garnerone, de Oliveira, Zanardi, Haas; //Phys. Rev. A// **82**, 052312 (2010).
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