@book{ballesteros:petz,
   AUTHOR = {Petz, D.},
   TITLE = {Quantum information theory and quantum statistics},
   SERIES = {Theoretical and Mathematical Physics},
   PUBLISHER = {Springer-Verlag},
   ADDRESS = {Berlin},
   YEAR = {2008},
   PAGES = {x+214},
   ISBN = {978-3-540-74634-8},
   MRCLASS = {81P68 (81-02 82B10 94A15)},
   MRNUMBER = {2363070 (2009c:81026)},
   MRREVIEWER = {Barry C. Sanders},
}

@book{ballesteros:sach,
   AUTHOR = {Sachdev, S.},
   TITLE = {Quantum phase transitions},
   EDITION = {Second},
   PUBLISHER = {Cambridge University Press},
   ADDRESS = {Cambridge},
   YEAR = {2011},
   PAGES = {xviii+501},
   ISBN = {978-0-521-51468-2},
   MRCLASS = {82B26 (81T27 81T40 82-02 82B27 82C10 82C27)},
   MRNUMBER = {2789712 (2012c:82020)},
   MRREVIEWER = {Uwe C. T{\"a}uber},
   XXXDOI = {10.1017/CBO9780511973765},
   URL = {http://dx.doi.org/10.1017/CBO9780511973765},
}

@article{ballesteros:wei,
   title = {Geometric measure of entanglement and applications to bipartite and multipartite quantum states},
   author = {Wei, T.-C. and Goldbart, P. M.},
   journal = {Phys. Rev. A},
   volume = {68},
   issue = {4},
   pages = {042307},
   numpages = {12},
   year = {2003},
   month = {Oct},
   XXXdoi = {10.1103/PhysRevA.68.042307},
   url = {http://link.aps.org/doi/10.1103/PhysRevA.68.042307},
   publisher = {American Physical Society}
}

@article{ballesteros:bruss,
   title = {Multipartite entanglement in quantum algorithms},
   author = {Bru\ss{}, D. and Macchiavello, C.},
   journal = {Phys. Rev. A},
   volume = {83},
   issue = {5},
   pages = {052313},
   numpages = {4},
   year = {2011},
   month = {May},
   XXXdoi = {10.1103/PhysRevA.83.052313},
   url = {http://link.aps.org/doi/10.1103/PhysRevA.83.052313},
   publisher = {American Physical Society}
}

@article{ballesteros:lew,
   Author = {Lewenstein, M. and Sanpera, A. and Ahufinger, V. and Damski,
      B. and Sen(De), A. and Sen, U.},
   Title = {{Ultracold atomic gases in optical lattices: mimicking condensed matter
      physics and beyond}},
   Journal = {{ADVANCES IN PHYSICS}},
   Year = {{2007}},
   Volume = {{56}},
   Number = {{2}},
   Pages = {{243-379}},
   Abstract = {{We review recent developments in the physics of ultracold atomic and
      molecular gases in optical lattices. Such systems are nearly perfect
	 realisations of various kinds of Hubbard models, and as such may very
	 well serve to mimic condensed matter phenomena. We show how these
	 systems may be employed as quantum simulators to answer some challenging
	 open questions of condensed matter, and even high energy physics. After
	 a short presentation of the models and the methods of treatment of such
	 systems, we discuss in detail, which challenges of condensed matter
	 physics can be addressed with (i) disordered ultracold lattice gases,
      (ii) frustrated ultracold gases, (iii) spinor lattice gases, (iv)
	 lattice gases in ``artificial'' magnetic fields, and, last but not
	 least, (v) quantum information processing in lattice gases. For
	 completeness, also some recent progress related to the above topics with
	 trapped cold gases will be discussed.}},
   Publisher = {{TAYLOR \& FRANCIS LTD}},
   Address = {{4 PARK SQUARE, MILTON PARK, ABINGDON OX14 4RN, OXON, ENGLAND}},
   Type = {{Review}},
   Language = {{English}},
   Affiliation = {{Sen, U (Reprint Author), ICFO, Inst Ciencies Foton, E-08660 Barcelona, Spain.
      ICFO, Inst Ciencies Foton, E-08660 Barcelona, Spain.
	 Los Alamos Natl Lab, Div Theory, Los Alamos, NM 87545 USA.
	 Univ Autonoma Barcelona, ICREA, E-08193 Barcelona, Spain.}},
   XXXDOI = {{10.1080/00018730701223200}},
   ISSN = {{0001-8732}},
   Keywords = {{ultracold atomic and molecular gases; Hubbard models; disordered
      systems; frustrated systems; spinor gases; quantum information}},
   Keywords-Plus = {{BOSE-EINSTEIN CONDENSATION; QUANTUM HEISENBERG-ANTIFERROMAGNET;
      DENSITY-MATRIX RENORMALIZATION; MEAN-FIELD THEORY;
      METAL-INSULATOR-TRANSITION; INTERACTING FERMI GAS; NEAREST-NEIGHBOR
	 INTERACTION; SPIN-CORRELATION FUNCTIONS; EFFECTIVE MAGNETIC-FIELDS;
      CRYSTALLIZED ION PLASMAS}},
   Research-Areas = {{Physics}},
   Web-of-Science-Categories  = {{Physics, Condensed Matter}},
   Author-Email = {{Ujjwal.Sen@icfo.es}},
   Number-of-Cited-References = {{825}},
   Times-Cited = {{675}},
   Journal-ISO = {{Adv. Phys.}},
   Doc-Delivery-Number = {{171FP}},
   Unique-ID = {{ISI:000246721000001}},
}

%%%--------------------------------------------------------------------

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@article{ducuara:W,
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@article{ducuara:Buscemi,
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}

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}

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}

@article{duque:P,
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}


@article{schlief:Chen,
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}

@article{schlief:Lauchli,
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}

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}

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}

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}

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}


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   author = {Bj\"ork G. and Klimov A. B. and S\'anchez-Soto L. L.}
}


@book{botero:schulman,
   AUTHOR = {Schulman, L.S.},
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   NOTE = {A Wiley-Interscience Publication},
   PUBLISHER = {John Wiley \& Sons Inc.},
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   YEAR = {1981},
   PAGES = {xv+359},
   ISBN = {0-471-76450-7},
   MRCLASS = {81-02 (28C20 58D30 60J99 81C35)},
   MRNUMBER = {601595 (82h:81003)},
   MRREVIEWER = {Aubrey Truman},
}


@article{Restrepo:cooper,
   title = {Classification of Two-Electron Excitation Levels of Helium},
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   publisher = {American Physical Society}
}

@article{marin:kitaev,
   AUTHOR = {Kitaev, A. Yu.},
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   CODEN = {ADNYA6},
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   MRREVIEWER = {Lech Jak{\'o}bczyk},
   DOI = {10.1016/S0003-4916(02)00018-0},
   URL = {http://dx.doi.org/10.1016/S0003-4916(02)00018-0},
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}

@misc{marin:preskill,
   Author = {Preskill, J.},
   Institution = {Caltech},
   Howpublished = {University Lecture Notes},
   Title = {Lecture Notes for Physics 219: Quantum Computation — Part III: Topological Quantum Computation},
   addendum = {\href{http://www.theory.caltech.edu/~preskill/ph219/topological.pdf}{http://www.theory.caltech.edu/~preskill/ph219/topological.pdf}},
}


@article{marin:BHZS,
   AUTHOR = {Bonesteel, N. E. and Hormozi, L. and Zikos, G. and Simon, S.
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   MRCLASS = {81P68},
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   DOI = {10.1103/PhysRevLett.95.140503},
   URL = {http://dx.doi.org/10.1103/PhysRevLett.95.140503},
}


@article{Restrepo:herrick,
   title = {Comparison of doubly-excited helium energy levels, isoelectronic series, autoionization lifetimes, and group-theoretical configuration-mixing predictions with large-configuration-interaction calculations and experimental spectra},
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}


@article{Restrepo:lopez,
   title = {Divergence analysis of atomic ionization processes and isoelectronic series},
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@article{Restrepo:manzano,
   AUTHOR = {Manzano, D. and Plastino, A. R. and Dehesa, J. S. and Koga, T.},
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@article{Restrepo:dehesa,
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}

@xarticle{rosero:navarro,
   AUTHOR = {Dehesa, J.S. and Koga, T. and Y\'a\~nez, R.J. and Plastina, A.R. and Esquivel, R.O},
   TITLE = {Quantum entanglement in helium },
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   VOLUME = {45},
   YEAR = {2012},
   NUMBER = {1},
   PAGES = {015504},
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   URL = {http://ciencia-en-red.uncachodeciencia.org/fisica/Gato.pdf}
}

@misc{rosero:gomez,
   Author = {G\'omez Navarro, J. J.},
   Institution = {},
   Howpublished = {Ciencia en Red},
   Title = {La paradoja del gato de Schr\"odinger},
   addendum = {\href{http://ciencia-en-red.uncachodeciencia.org/fisica/Gato.pdf}{http://ciencia-en-red.uncachodeciencia.org/fisica/Gato.pdf}},
}

@xmisc{rosero:gomez,
   Author = {Julio Gratton},
   Institution = {Instituto de F\'isica del Plasma, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Argentina},
   Howpublished = {Notas de clase},
   Title = {Introducci\'on a la Mec\'anica Cu\'antica},
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}

