Bibliografía

  • The Theory of Open Quantum Systems; H. Breuer & F. Petruccione; Oxford University Press (2003).
  • Quantum Dissipative Systems; Ulrich Weiss; World Scientific (1993).
  • Environment-induced decoherence and the transition from quantum to classical; Juan Pablo Paz and Wojciech H. Zurek, arXiv:quant-ph/0010011 (2000).
  • Tesis Doctoral Transici´on Cu´antico-Cl´asica en Teoría de Campos F.C. Lombardo; arXiv preprint gr-qc/9812038, Universidad de Buenos Aires (1998).
  • Quantum systems under the influence of external conditions: fluctuations and decoherence PI Villar; arXiv preprint arXiv:0804.1969 (2008).
  • Circuit Quantum Electrodynamics; Alexandre Blais, Arne L. Grimsmo, S.?M. Girvin & Andreas Wallraff Rev. Mod. Phys. 93, 025005 (2021).
  • Circuit QED: Superconducting Qubits Coupled to Microwave Photons, Steven M. Girvin; Oxford University Press.
  • Clerk et al., Introduction to quantum noise, measurement and amplification, Rev. Mod. Phys (2008).
  • Atomic physics and quantum optics using superconducting circuits; J. Q. You & F. Nori, Nature 474, 589-597 (2011).
  • Superconducting quantum bits; J. Clarke & F. Wilhelm, Nature 453, 1031 (2008).
  • Coarse graining and decoherence in quantum field theory; F Lombardo, FD Mazzitelli, Physical Review D 53 (4), 2001 (1996).
  • Decoherence during inflation: The generation of classical inhomogeneities, FC Lombardo, DL Nacir, Physical Review D 72 (6), 063506 125 2005 (2005); Decoherence, tunneling, and noiseinduced activation in a double-potential well at high and zero temperature; ND Antunes, FC Lombardo, D Monteoliva, PI Villar, Physical Review E 73 (6), 066105 (2006); Decoherence in field theory: general couplings and slow quenches, FC Lombardo, FD Mazzitelli, RJ Rivers, Nuclear Physics B 672 (3), 462-486 (2003).
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