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Celso Jorge Villas-Bôas

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Universidade Federal de São Carlos (UFSCAR). Centro de Ciências Exatas e de Tecnologia (CCET)  (Institutional affiliation for the last research proposal)
Birthplace: Brazil

Bachelor's degree in Physics (1997), master's degree (2000) and doctorate (2004) in Physics from the Federal University of São Carlos (UFSCar). He did a postdoctoral at the Max-Planck Institute for Quantum Optics (Garching, Germany). He is currently associate professor (level 4) at the Federal University of São Carlos. He has experience in Physics, with emphasis on Quantum Optics and Quantum Information, working mainly in the following subjects: cavity quantum electrodynamics, trapped ions, quantum teleportation, quantum computation, light scattering by atomic ensembles. He has supervised 3 postdoctors and was the advisor of 5 doctors 10 masters and 7 projects of Scientific Initiation. He has published more than 50 articles in refereed journals and more than 1260 citations (Web of Science). He was the head of the Physics Department of the Center for Exact and Technological Sciences (CCET) of UFSCar (2013-1016), Coordinator of the undergraduate course in Physics - CCET / UFSCar (2017-2018) and Coordinator of the Graduate Program in Physics of CCET / UFSCar (2018-current). He was member of the Council of the Physics Department (2011-2012, 2017-current), of the Council of the Graduate Program in Physics (2011-2012), and of several superior councils of UFSCar: Undergraduate Council (2013-2014, 2017-2018), Administration Council (2014-2016), Council of Graduate Programs of UFSCar (2018-current), Council of the CCET (2013-current). ResearcherID: E-8984-2012 and ORCID: https://orcid.org/0000-0001-5622-786X. (Source: Lattes Curriculum)

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FAPESP support in numbers * Updated January 18, 2020
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Keywords used by the researcher
Scientific publications resulting from Research Grants and Scholarships under the grantee's responsibility (21)

(References retrieved automatically from Web of Science and SciELO through information on FAPESP grants and their corresponding numbers as mentioned in the publications by the authors)

Publications16
Citations160
Cit./Article10.0
Data from Web of Science

ROSSATTO, D. Z.; FELICETTI, S.; ENERIZ, H.; RICO, E.; SANZ, M.; SOLANO, E.. Entangling polaritons via dynamical Casimir effect in circuit quantum electrodynamics. Physical Review B, v. 93, n. 9, . Web of Science Citations: 30.

BORGES, HALYNE S.; VILLAS-BOAS, CELSO J.. Quantum PHASE gate based on electromagnetically induced transparency in optical cavities. Physical Review A, v. 94, n. 5, . Web of Science Citations: 12.

BORGES, HALYNE S.; ROSSATTO, DANIEL Z.; LUIZ, FABRICIO S.; VILLAS-BOAS, CELSO J.. Heralded entangling quantum gate via cavity-assisted photon scattering. Physical Review A, v. 97, n. 1, . Web of Science Citations: 3.

SOUZA, J. A.; CABRAL, L.; OLIVEIRA, R. R.; VILLAS-BOAS, C. J.. Electromagnetically-induced-transparency-related phenomena and their mechanical analogs. Physical Review A, v. 92, n. 2, . Web of Science Citations: 17.

VILLAS-BÔAS, C. J.; PAULA, F. R. DE; MOUSSA, M. H. Y.; SERRA, R. M.. Proposal to produce long-lived mesoscopic superpositions through an atom-driven field interaction. Journal of Optics B : Quantum and Semiclassical Optics, v. 5, p. 391-395, .

DE ALMEIDA‚ NG; SERRA‚ RM; VILLAS-BOAS‚ CJ; MOUSSA‚ MHY. Engineering squeezed states in high-Q cavities. Physical Review A, v. 69, n. 3, p. 035802, .

VILLAS-BÔAS‚ CJ; DE ALMEIDA‚ NG; SERRA‚ RM; MOUSSA‚ MHY. Squeezing arbitrary cavity-field states through their interaction with a single driven atom. Physical Review A, v. 68, n. 6, p. 061801, .

ROSSATTO, D. Z.; DE ALMEIDA, A. R.; WERLANG, T.; VILLAS-BOAS, C. J.; DE ALMEIDA, N. G.. Cooling by heating in the quantum optics domain. Physical Review A, v. 86, n. 3, . Web of Science Citations: 5.

ROSSATTO, D. Z.; VILLAS-BOAS, C. J.. Relaxation time for monitoring the quantumness of an intense cavity field. Physical Review A, v. 94, n. 3, . Web of Science Citations: 0.

ROSSATTO, DANIEL Z.; VILLAS-BOAS, CELSO J.; SANZ, MIKEL; SOLANO, ENRIQUE. Spectral classification of coupling regimes in the quantum Rabi model. Physical Review A, v. 96, n. 1, . Web of Science Citations: 26.

BORGES, H. S.; OLIVEIRA, M. H.; VILLAS-BOAS, C. J.. Influence of the asymmetric excited state decay on coherent population trapping. SCIENTIFIC REPORTS, v. 7, . Web of Science Citations: 3.

OLIVEIRA, R. R.; BORGES, H. S.; SOUZA, J. A.; VILLAS-BOAS, C. J.. A multitasking device based on electromagnetically induced transparency in optical cavities. QUANTUM INFORMATION PROCESSING, v. 17, n. 11, . Web of Science Citations: 0.

FELICETTI, S.; ROSSATTO, D. Z.; RICO, E.; SOLANO, E.; FORN-DIAZ, P.. Two-photon quantum Rabi model with superconducting circuits. Physical Review A, v. 97, n. 1, . Web of Science Citations: 17.

COSTA, D.; DE ALMEIDA, N. G.; VILLAS-BOAS, C. J.. Secure quantum communication using classical correlated channel. QUANTUM INFORMATION PROCESSING, v. 15, n. 10, p. 4303-4311, . Web of Science Citations: 6.

SERRA‚ RM; VILLAS-BOAS‚ CJ; DE ALMEIDA‚ NG; MOUSSA‚ MHY. Frequency up-and down-conversions in two-mode cavity quantum electrodynamics. Physical Review A, v. 71, n. 4, p. 045802, .

VILLAS-BÔAS‚ CJ; DE PAULA‚ FR; SERRA‚ RM; MOUSSA‚ MHY. Preparation and control of a cavity-field state through an atom-driven-field interaction: Towards long-lived mesoscopic states. Physical Review A, v. 68, n. 5, p. 053808, .

SOUZA, J. A.; FIGUEROA, E.; CHIBANI, H.; VILLAS-BOAS, C. J.; REMPE, G.. Coherent Control of Quantum Fluctuations Using Cavity Electromagnetically Induced Transparency. Physical Review Letters, v. 111, n. 11, . Web of Science Citations: 34.

BORGES, H. S.; SANZ, L.; ALCALDE, A. M.. Excitonic entanglement of protected states in quantum dot molecules. Physics Letters A, v. 380, n. 38, p. 3111-3116, . Web of Science Citations: 4.

DINIZ, E. C.; BORGES, H. S.; VILLAS-BOAS, C. J.. Multiple transparency windows and Fano interferences induced by dipole-dipole couplings. Physical Review A, v. 97, n. 4, . Web of Science Citations: 2.

DINIZ, E. C.; ROSSATTO, D. Z.; VILLAS-BOAS, C. J.. Two-mode squeezing operator in circuit QED. QUANTUM INFORMATION PROCESSING, v. 17, n. 8, . Web of Science Citations: 0.

FELICETTI, S.; ROSSATTO, D. Z.; RICO, E.; SOLANO, E.; FORN-DIAZ, P.. Two-photon quantum Rabi model with superconducting circuits. Physical Review A, v. 97, n. 1, . Web of Science Citations: 17.

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