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Fundamental structures of phase space quantum mechanics - Nonclassicality and classical-quantum correspondence applied to ordinary quantum mechanics and Dirac-like systems

Grant number:18/03960-9
Support Opportunities:Regular Research Grants
Start date: July 01, 2018
End date: June 30, 2020
Field of knowledge:Physical Sciences and Mathematics - Physics - General Physics
Principal Investigator:Alex Eduardo de Bernardini
Grantee:Alex Eduardo de Bernardini
Host Institution: Centro de Ciências Exatas e de Tecnologia (CCET). Universidade Federal de São Carlos (UFSCAR). São Carlos , SP, Brazil
City of the host institution:São Carlos

Abstract

This project is compartmentalized into two closely connected stages.The first stage contemplates the development and the use of new fundamental structures of quantum mechanics described according to Wigner's representation in phase space as to qualitatively and quantitatively describe the content of decoherence, non-classicality, locality and even continuous variable correlations of two quantum modes of ordinary quantum systems, in such a way as to test some recently introduced theoretical tools which quantify the classical-quantum correspondence for these systems.The second step involves the application of these tools to the dynamics described by the Dirac equation driven by the simplest classes of quantum potentials described according to the Poicar\'e's group classification.As a subsequent proposal, the details involving the preservation of covariant structures (symplectic, Lorentz, etc.) will be addressed in obtaining quantum correlations as entanglement of formation, geometric discord and logarithmic negativity.In particular, we expect that the inclusion of localization characteristics in Dirac-like systems, and the subsequent description of their influence on the quantum information content of these systems, can be described in Dirac-type platforms, from from trapped ions described according to the Jaynes-Cummings dynamics to graphene in double layers, which have been broadly framed in a description of Quantum Mechanics that we have developed in previous projects. (AU)

Articles published in Agência FAPESP Newsletter about the research grant:
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Scientific publications (17)
(The scientific publications listed on this page originate from the Web of Science or SciELO databases. Their authors have cited FAPESP grant or fellowship project numbers awarded to Principal Investigators or Fellowship Recipients, whether or not they are among the authors. This information is collected automatically and retrieved directly from those bibliometric databases.)
BERNARDINI, A. E.; DA ROCHA, R.. Informational entropic Regge trajectories of meson families in AdS/QCD. Physical Review D, v. 98, n. 12, . (18/03960-9, 17/18897-8)
BITTENCOURT, V. A. S. V.; BERNARDINI, A. E.; BLASONE, M.. Chiral oscillations. EPL, v. 139, n. 4, p. 7-pg., . (18/03960-9)
BERNARDINI, ALEX E.. Phase-space elementary information content of confined Dirac spinors. EUROPEAN PHYSICAL JOURNAL PLUS, v. 135, n. 8, . (18/03960-9)
BERNARDINI, A. E.; DA ROCHA, R.. Phase-space quantum profile of Poschl-Teller two-level systems. EUROPEAN PHYSICAL JOURNAL PLUS, v. 134, n. 1, . (18/03960-9, 17/18897-8)
BERNARDINI, ALEX E.; FERNANDO E SILVA, CAIO; IOP PUBLISHING. Anharmonic effects on phase-space quantum profiles: an exact approach. WAKE CONFERENCE 2021, v. 1612, p. 14-pg., . (18/03960-9)
BERNARDINI, ALEX E.. Testing nonclassicality with exact Wigner currents for an anharmonic quantum system. PHYSICAL REVIEW A, v. 98, n. 5, p. 11-pg., . (18/03960-9)
BERNARDINI, A. E.; DA ROCHA, R.. Informational entropic Regge trajectories of meson families in AdS/QCD. PHYSICAL REVIEW D, v. 98, n. 12, p. 10-pg., . (18/03960-9, 17/18897-8)
BERNARDINI, ALEX E.. Testing nonclassicality with exact Wigner currents for an anharmonic quantum system. Physical Review A, v. 98, n. 5, . (18/03960-9)
BLASONE, MASSIMO; BITTENCOURT, VICTOR A. S. V.; BERNARDINI, ALEX E.. Helicity rotation induced by Lorentz boosts. INTERNATIONAL JOURNAL OF QUANTUM INFORMATION, v. 17, n. 8, SI, . (18/03960-9)
BERNARDINI, A. E.; DA ROCHA, R.. Cosmological comoving behavior of the configurational entropy. Physics Letters B, v. 796, p. 107-111, . (18/03960-9, 17/18897-8)
BERNARDINI, A. E.; BITTENCOURT, V. A. S. V.; BLASONE, M.. CP symmetry and thermal effects on Dirac bi-spinor spin-parity local correlations. ANNALS OF PHYSICS, v. 395, p. 301-316, . (18/03960-9, 17/02294-2)
FERNANDO E SILVA, CAIO; BERNARDINI, ALEX E.. Classical and statistical limits of the quantum singular oscillator. PHYSICA A-STATISTICAL MECHANICS AND ITS APPLICATIONS, v. 558, . (18/03960-9)
FERNANDO E SILVA, CAIO; BERNARDINI, ALEX E.. Intrinsic quantum correlations for Gaussian localized Dirac cat states in phase space. Physical Review A, v. 104, n. 5, . (18/03960-9)
BERNARDINI, ALEX E.. On the elementary information content of thermodynamic ensembles. PHYSICA A-STATISTICAL MECHANICS AND ITS APPLICATIONS, v. 557, . (18/03960-9)
GAUY, HENRIQUE MATHEUS; BERNARDINI, ALEX E.. 5+1)-dimensional analytical braneworld models: Intersecting thick brane. PHYSICAL REVIEW A, v. 105, n. 2, . (18/03960-9)
BERNARDINI, ALEX E.; BERTOLAMI, ORFEU; ELZE, HT; BLASONE, M; DIOSI, L; FRONZONI, L; HALLIWELL, JJ; KIEFER, C; PRATI, E; VITIELLO, G. Phase-space continuity equations for quantum decoherence, purity, von Neumann and Renyi entropies. WAKE CONFERENCE 2021, v. 1275, p. 7-pg., . (18/03960-9)
BLASONE, MASSIMO; BITTENCOURT, VICTOR A. S. V.; BERNARDINI, ALEX E.. Helicity rotation induced by Lorentz boosts. INTERNATIONAL JOURNAL OF QUANTUM INFORMATION, v. 17, n. 8, p. 12-pg., . (18/03960-9)