2022

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ADERNE, R.E.; ALVES LEITE, B.G.; CAMARGO AVILA, H.J.; VON KIESERITZKY, F.; HELLBERG, J.; KOEHLER, M.; CREMONA, M.; ROMAN, L. S.; ARAUJO, C.M.; ROCCO, M. L.; MARCHIORI, C. On the energy gap determination of organic optoelectronic materials: the case of porphyrin derivatives. Mater. Adv., 2022,3, 1791-1803. DOI
ARAUJO, J.F.D.F.; CARVALHO, H.R.; LOURO, S.R.W.; RIBEIRO, P.C.; BRUNO, A.C.  SQUID and Hall Effect Magnetometers for Detecting and Characterizing Nanoparticles Used in Biomedical Applications. Braz J Phys 52, 46 (2022). DOI
ARAUJO, J.F.D.F.; DE MELO JUNIOR, E.B.; FORERO MENDOZA. L.  A Simple Portable Magnetometer Based on Magnets and Hall-Effect Sensors Capable of Measuring Magnetic Properties. Appl. Sci. 2022, 12(24), 12565. DOI
ARAUJO, J.F.D.F.; REIS, A.L.A.; YOKOYAMA, E.; MEDINA, C.D.; OSORIO, F.; LUZ-LIMA, C.; DE FALCO, A.;  LIMA, C.D.A.; SILVA, J.F .C.; SINIMBU, L.I.M.; GUTIERREZ, F.V.;POTTKER, W.E.; LA PORTA, F.A. ; MENDOZA, L. A. F.; TAHIR; DEL ROSSO, T. ; BRUNO, A.C. Construction of a Hall effect scanning magnetic  microscope using permanent magnets for characterization of rock samples, Journal of Magnetism and Magnetic Materials (2022). DOI
BALDENEGRO, C., BELLORA, A., FICHET, S.; VON DER GERSDORFF, G. Searching for anomalous top quark interactions with proton tagging and timing detectors at the LHC. J. High Energ. Phys. 2022, 21 (2022). DOI
BARBOSA, A.N.; DIAZ MENDONZA, C.A.; LEI, Y.; TERRONES, M.; MARIOTTO, G.; GIAROLA, M.;  MARIOTTO, G.; FREIRE JR,  F.L.   Photoluminescence quenching of CVD grown WS2 monolayers treated with low-power Ar plasma. Surfaces and Interfaces Volume 33, October 2022, 102220 https://doi.org/10.1016/j.surfin.2022.102220
BARROS, A.L.F.; MEJIA, C.; SEPERUELO DUARTE, E.;  DOMARACKA, A.;  BODUCH, P.;  ROTHARD, H.;  DA SILVEIRA, E.F. Chemical reactions in H2O:CO interstellar ice analogues promoted by energetic heavy-ion irradiation. Monthly Notices of the Royal Astronomical Society, Volume 511, Issue 2, April 2022, Pages 2491–2504. DOI
BERGANTINI , A.; BARROS, A.L.F.;  DAMARACKA, A.; ROTHARD, H.; BODUCH, P.;   DA SILVEIRA, E.F.  On the synthesis of N–O bearing species in astrophysical ices – an infrared spectroscopic study using heavy-ion irradiation of solid N2:CO samples. Monthly Notices of the Royal Astronomical Society, Volume 511, Issue 1, March 2022, Pages 31–41. DOI
BERGANTINI , A.; BARROS, A.L.F.;  ROTHARD, H.; BODUCH, P.;   DA SILVEIRA, E.F.  Infrared Spectroscopic Study on Swift-Ion Irradiation of Solid N2O–H2O Samples: Synthesis of N–O Bearing Species in Astrophysical Ices. J. Phys. Chem. A 2022, 126, 12, 2007–2017; Publication Date:March 18, 2022. DOI
BRANDÃO, I. ; TANDEITNIK, D.; GUERREIRO, T. QuGIT: A numerical toolbox for Gaussian quantum states COMPUTER PHYSICS COMMUNICATIONS Volume 280, 108471  2022.  DOI
CABRERA, A,; NUNOKAWA, H.; The JUNO collaboration., et al. Damping signatures at JUNO, a medium-baseline reactor neutrino oscillation experiment. J. High Energ. Phys. 2022, 62 (2022). DOI
CABRERA, A., HAN, Y., OBOLENSKY, M.; NUNOKAWA, N.; CHIMENTI, P.  et al. Synergies and prospects for early resolution of the neutrino mass ordering. Sci Rep 12, 5393 (2022). DOI
CABRERA, A; NUNOKAWA, H. Prospects for detecting the diffuse supernova neutrino background with JUNO. JCAP10(2022)033. DOI
CABRERA, A; NUNOKAWA, H. Sub-percent precision measurement of neutrino oscillation parameters with JUNO 2022 Chinese Phys. C 46 123001. DOI
CHEN, W.; VON DER GERSDORFF, G. Measurement of interaction-dressed Berry curvature and quantum metric in solids by optical absorption. SciPost Phys. Core 5, 040 (2022) ·  DOI
COSTA, C.A.; DA SILVEIRA, E.F. Infrared analysis of Valine degradation by keV electrons. Measurements and CASINO-extended model predictions. J. Phys. Chem. A 2022, 126, 12, 2007–2017. DOI
COSTA, R.G.; BARBOSA, A.N.; MAIA DA COSTA, M.E.H.;  FREIRE, JR, F.L. Resonance Raman spectroscopy of MoS2 monolayers treated with nitrogen plasma. Vibrational Spectroscopy 123, 103454, 2022. DOI
DA SILVA, B.A.; Nazarkovsky, M.; Padilla-Chavarría, H.I.; Mendivelso, E.A.C.; Mello, H.L.d.; Nogueira, C.d.S.C.; CARVALHO, R.d.S.; CREMONA, M.; Zaitsev, V.; Xing, Y.; Bisaggio, R.d.C.; Alves, L.A.; Kai, J. Novel Scintillating Nanoparticles for Potential Application in Photodynamic Cancer Therapy. Pharmaceutics 2022, 14, 2258. DOI
 DE MOURA SILVA, J.;  ALBUQUERQUE DOS REIS, A.; LORETO, R.P.;  DA SILVA DE MEDEIRO, C.L.A.; CHAVES E SILVA,  J.F.;  DE ABREU LIMA,  C.D.;  BRUNO, A.C.;  MERINO, I.L.C.; BAGGIO SAITOVITCH, E.M.; SOLORZANO, I.G.; ARAUJO, J.F.D.F.  Spinel nanoparticles characterization by inverting scanning magnetic microscope maps. Ceramics International 48, 15, 2022, 21690-21699. DOI
DE SOUSA, M.S.M.; CHEN, W.; LIU, F.; QU, F. Vacancy-engineered flat-band superconductivity in holey graphene. PHYSICAL REVIEW B 105, 014511  (2022). DOI
DE SOUSA, M.S.M.; LIU, F.; MALARD, M.;  QU, F. ; CHEN, W. Symmetry-enforced nodal lines in the band structures of vacancy-engineered graphene. Phys. Rev. B 105, 155414 (2022).  DOI
DEFAVERI, L.A.C.A.;  OLIVARES, C.; ANTENEODO, C. Heat flux in chains of nonlocally coupled harmonic oscillators: Mean-field limit. Phys. Rev. E 105, 054149 (2022). DOI
DELGADO, E.A.;  NUNOKAWA, H.;  QUIROGA, A.A. Probing neutrino decay scenarios by using the Earth matter effects on supernova neutrinos. JCAP01(2022)003 DOI
ESMAEILI TAKLIMI, A.;  CAPANEMA GUERRA GALVAO, A.; ESMAILI, A.; SERPICO, P.D. Ultrahigh energy neutrinos from high-redshift electromagnetic cascades. Phys. Rev. D 106, 123016 (2022). DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb Collaboration. Centrality determination in heavy-ion collisions with the LHCb detector. 2022 JINST 17 P05009. DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb Collaboration.  Study of coherent J/psi production in lead-lead collisions at root S-NN=5 TeV. J. High Energ. Phys. 2022, 117 (2022). DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb Collaboration.Constraints on the CKM angle γ from B± → Dh± decays using D → h±hπ0 final states.  J. High Energ. Phys. 2022, 99 (2022). DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb Collaboration. et al. Precision measurement of forward Z boson production in proton-proton collisions at s√ = 13 TeV. J. High Energ. Phys. 2022, 26 (2022). DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb Collaboration. J/ψ photoproduction in Pb-Pb peripheral collisions at √sNN=5 TeV Phys. Rev. C 105, L032201 2022. DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb Collaboration. Measurement of the charm mixing parameter yCP−Yk πC P  using two-body D0  meson decays. Phys. Rev. D 105, 092013 2022 DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb Collaboration. Measurement of the photon polarization in Λ0b→Λγ  decays.  Phys. Rev. D 105, L051104 2022.  DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb Collaboration. Measurement of the B0s→μ+μ− decay properties and search for the B0→μ+μ− and B0s→μ+μ−γ decays. Phys. Rev. D 105, 012010 2022 DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb Collaboration. Observation of the B0→¯D*0 K+π−  and B0s→D*0K−π+  decays. Phys. Rev. D 105, 072005 2022. DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb Collaboration. Observation of an exotic narrow doubly charmed tetraquark. Nat. Phys. 18, 751–754 (2022). DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb Collaboration. Precise determination of the B0s-B0s   oscillation frequency. Nat. Phys. 18, 1–5 (2022). DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb Collaboration. Study of the doubly charmed tetraquark T+cc. Nat Commun 13, 3351 (2022). DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb Collaboration. Test of lepton universality in beauty-quark decays. Nat. Phys. 18, 277–282 (2022). DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb collaboration. Search for the decay B0 → ϕμ+μ−. J. High Energ. Phys. 2022, 67 (2022). DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb collaboration. Observation of the doubly charmed baryon decay Ξ++cc→Ξ′+cπ+. J. High Energ. Phys. 2022, 38 (2022). DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb collaboration. Search for massive long-lived particles decaying semileptonically at s√=13TeV. Eur. Phys. J. C 82, 373 (2022). DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb collaboration. Measurement of prompt charged-particle production in pp collisions at s√ = 13 TeV. J. High Energ. Phys. 2022, 166 (2022). DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb collaboration. Measurement of χc1(3872) production in proton-proton collisions at s√ = 8 and 13 TeV. J. High Energ. Phys. 2022, 131 (2022). DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb collaboration. Observation of Λ0b → D+pπ−π− and Λ0b → D*+pπ−π− decays. J. High Energ. Phys. 2022, 153 (2022). DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb collaboration. Searches for rare B0s  and B0 decays into four muons. J. High Energ. Phys. 2022, 109 (2022). DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb collaboration. Search for the radiative Ξ−b → Ξ−γ decay. J. High Energ. Phys. 2022, 69 (2022). DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb collaboration. Study of B+c decays to charmonia and three light hadrons. J. High Energ. Phys. 2022, 65 (2022). DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb collaboration. Analysis of Neutral B-Meson Decays into Two Muons (LHCb Collaboration) Phys. Rev. Lett.  128, 041801 2022. DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb collaboration. First Measurement of the  Z→μ+μ−  Angular Coefficients in the Forward Region of  pp  Collisions at √s=13TeV. Phys. Rev. Lett. 129, 091801  DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb collaboration. Angular Analysis of D0→π+π− μ+μ−  and D0→K+K− μ+μ  Decays and Search for CP  Violation. Phys. Rev. Lett. 128, 221801 2022. DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb collaboration. Observation of the Decay Λ0b→Λ+c τ−ντ. LHCb Collaboration) Phys. Rev. Lett. 128, 191803, 2022.  DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb collaboration. Tests of Lepton Universality Using B0→K0 Sℓ+ℓ−  and  B+→K*+ℓ+ℓ−  Decays. Phys. Rev. Lett. 128, 191802, 2022.  DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb collaboration. Observation of Two New Excited Ξ0b States Decaying to Λ0bK− π+ . Phys. Rev. Lett. 128, 162001 (2022) DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb collaboration. Measurement of the Nuclear Modification Factor and Prompt Charged Particle Production in p-Pb and pp  Collisions at √sNN=5 TeV. Phys. Rev. Lett. 128, 142004, 2022. DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb collaboration. Evidence for a New Structure in the J/ψp and J/ψ¯p Systems in B0s→J/ψp¯p Decays. Phys. Rev. Lett. 128, 062001, 2022  DOI
GOBEL, C.; ABRANTES, F.G.; CRUZ TORRES, M.; LHCb collaboration. Study of Z Bosons Produced in Association with Charm in the Forward Region Phys. Rev. Lett. 128, 082001, 2022 DOI
GOULEFACK, L.M.; CHAMGOUE, A.C.; ANTENEODO, C.; YAMAPI, R. Stability analysis of the Hindmarsh-Rose neuron under electromagnetic induction. Nonlinear Dynamics 108, 2627-2642, 2022. DOI
GUERREIRO, T.; Quantum signatures in nonlinear gravitational waves. Quantum 6,  879, 2022. DOI
HAMZA, S.; ORE, A.S.M.;  CADORE, A.;  GORDO, V.O.;  VIANNA,P.G.;  CARVALHO, I.C.S.; CAROZO, V.;  MATOS, C.J.S. CVD growth and optical characterization of homo and heterobilayer TMDs. Journal of Applied Physics 132, 024301 (2022). DOI
HU, W.; VAEL, C.; DIETHELM, M.; STRASSEL, K.; ANANTHARAMAN, S.B.; ARIBIA, A.; CREMONA, M.; JENATSCH, S.; NÜESCH, F.; HANY, R. On the Response Speed of Narrowband Organic Optical Upconversion Devices. Adv. OpticalMater. 2022, 10, 2200695. DOI
JABBAR, I.;  ZAMAN, Y.; K. Althubeiti, S. Al Otaibi, M. Zahid Ishaque, N. Rahman, M. Sohail, A. Khan, A. Ullah;  DEL ROSSO, T.; ZAMAN, Q.; R. Khan; A. Khanj. Diluted magnetic semiconductor properties in TM doped ZnO nanoparticles. RSC Adv., 2022,12, 13456-13463.  DOI
KHAN, R.; SHIGIDI, I.; AL OTAIBI , S.; ALTHUBEITI, K.; ABDULLAEV, S.S.; RAHMAN, N.; SOHAIL , M.; KHAN, A.; IQBAL S.;  DEL ROSSO, T.; ZAMAN, Q.; KHAN, A. Room temperature dilute magnetic semiconductor response in (Gd, Co) co-doped ZnO for efficient spintronics applications.  RSC Adv., 2022,12, 36126-36137.  DOI
LIMA, H.; VIEIRA, A.R.; ANTENEODO, C. Nonlinear redistribution of wealth from a stochastic approach. Chaos solitons & fractals 163,  112578, 2022. DOI
MARGHERI, G.; BARBOSA, A.N.; FREIRE JR, F.L.; DEL ROSSO, T. Thermooptical PDMS-Single-Layer Graphene Axicon-like Device for Tunable Submicron Long Focus Beams. Micromachines 2022, 13, 2083.  DOI
MARTINEZ, R.; SILVEIRA, E.F.;  BODUCH, P.;  DOMARACKA, A.; ROTHARD, H.  Space weathering on inner planetary surface analogues induced by swift multicharged heavy ion bombardment. Icarus  375, 15 2022, 114830 DOI
MEJÍA, C .;  DE BARROS, A.L.F.; ROTHARD, H.; BODUCH, P.; DA SILVEIRA, E.F. Swift heavy ions irradiation of water ice at different temperatures: hydrogen peroxide and ozone synthesis and sputtering yield, Monthly Notices of the Royal Astronomical Society 514, 3, 2022, 3789–3801, DOI
MEJIA, C.; COSTA, C.A.; IZA, P.; DA SILVEIRA, E.F. Irradiation of Phenylalanine at 300 K by MeV Ions. Astrobiology  22, 4, 13 2022. DOI
NASCIMENTO, E.S.; MORGADO, W.A.M. Energy exchanges in a damped Langevin-like system with two thermal baths and an athermal reservoir. 2022 J. Phys. A: Math. Theor. 55 395003. DOI
NUNOKAWA, H.; The JUNO collaboration., et al. JUNO physics and detector, Progress in Particle and Nuclear Physics 123, 2022, 103927  DOI
OLIVEIRA, P.R.B.; MARTINEZ, R.; SILVEIRA, E.F. Secondary ion emission from C2H6:H2O ice by fission fragments. J. Phys.: Conf. Ser. 2340 012008 DOI
PADILHA, J. DA S.; PEDROZO-PEÑAFIEL, M.J.; AZEVEDO, M.F.M.F.; FALCO, A. DE; LARRUDÉ, D.R.G.; MAIA DA COSTA, M.E.H.; AUCÉLIO, R.Q.  Silver-modified nitrogen-doped graphene quantum dots as a sensor for formaldehyde in milk using headspace micro-extraction on a single-drop of aqueous nanoparticles dispersion. Analytica Chimica Acta 1232,  2022, 340479 DOI
PARAGUASSU, P.V.; DEFAVERI, L.; QUEIROS, S.; MORGADO, W.A.M. Probabilities for informational free lunches in stochastic thermodynamics. J. Stat. Mech. (2022) 123204 DOI
PARAGUASSU, P.V.; MORGADO, W.A.M. Heat fluctuations in the logarithm-harmonic potential. Physica A: Statistical Mechanics and its Applications 588, 2022, 126576,778 DOI
PARAGUASSÚ, P.V.; DEFAVERI, L. A. C. ; AQUINO, R. ; MORGADO, W.A.M.  Effects of the kinetic energy in heat for overdamped systems. Phys. Rev. E 106, 044106, 2022 DOI
PEDROZO-PEÑAFIEL, M. J., LÓPES, T., GUTIÉRREZ-BELEÑO, L. M., MIRANDA-ANDRADES, J. R., MAIA DA COSTA, M.E.H., LARRUDÉ, D.G., AUCELIO, R.Q. Determination of Creatinine in Urine by Voltammetry and Glassy Carbon Electrode Modified with Functionalized Multi-walled Carbon Nanotubes and Copper. Electroanalysis 2023, 35, e202200081. DOI
SANTOS, M.A.F.; MENON, L.; ANTENEODO, C. Efficiency of random search with space-dependent diffusivity. Phys. Rev. E 106, p. 044113, 2022. DOI
SILVA JR., R.S.; FERREIRA, N.S.; FONTES, J. F. D.; MAIA DA COSTA, M. E. H. Toward the stabilization of perovskite phase at low temperature and decrease of the magnetic ordering by Sr2+-doping in LaCrO3.  Chemical Physics Letters Volume 787, 2022, 139278. DOI
SILVA, R.S.; FONTES, J.F.D.; FERREIRA, N.S.; GONÇALVES, R.S.; MAIA DA COSTA, M.E.H.; BARROZO, P. Structural phase transition and suppressed Griffiths-like phase induced by Sr2+-doping in LaCr0.5Mn0.5O3 compound, Journal of Magnetism and Magnetic Materials 546, 2022, 168851. DOI
SILVEIRA, E.F. Model on degradation of thick solid molecular targets by energetic ion and electron beams. J. Phys.: Conf. Ser. 2340 012044 (2022) DOI
SOUZA-CORRÊA, J.A.; DA SILVEIRA, E.F. Space Weathering: Processing Velocities in Organic Materials as a Function of Electron Beam Energies—Solar Electron Erosion Rate Application. Astrobiology Volume 22 Issue 7 800-811 2022. DOI
STAND, N.; MENDOZA, C.D.; FREIRE, F.L., Jr. Synthesis of WS2 by Chemical Vapor Deposition: Role of the Alumina Crucible. Crystals 2022, 12, 835. DOI
TAHIR; PANDOLI, V.,; ZAMAN, QUAID; CONCAS, G.; GISBERT, M.; CREMONA, M.;  FREIRE, F.L.; CARVALHO, I.C.S.; DEL ROSSO T. Thermoelastic pulsed laser ablation of silver thin films with organic metal–SiO2 adhesion layer in water: application to the sustainable regeneration of glass microfluidic reactors for silver nanoparticles.  J. Phys. Commun. 6 055005 2022. DOI
Xiao-Jun Bi; ESMAILI, A. et al. Chapter 5 Dark Matter and New Physics Beyond the Standard Model with LHAASO. 2022 et al 2022 Chinese Phys. C 46 030005. DOI
YOSHIOKA, N.A.; FARACO, T.A.; BARUD, H.S.; RIBEIRO, S.J.L.; CREMONA, M.; FRAGNEAUD, B.; MACIEL, I.O.; QUIRINO, W.G.; LEGNANI, C. Synthesis of Organic Semiconductor Nanoparticles with Different Conformations Using the Nanoprecipitation Method. Polymers 202214, 5336. DOI
ZAMAN, QUAID; TAHIR; FREIRE, F.L.; SHTEPLIUK, I.; BARBOSA, A.N.; MAIA DA COSTA, M.E.H.; MENDOZA, C.D.; ARAUJO, J.F.D.F.; CONCAS, G.C.; CREMONA, M.; AHMED, Z.; PANDOLI, O.; AUCELIO, R.Q.; DMITRIEV, V.; COSTA, K.Q.; CRUZ, A.F.S.; FIBBI, G.; LAURENZANA, A.; MARGHERI, F.; CHILLA, A.; SCAVONE, F.; FREDIANI, E.; KHAN, R.; DALDOSSO, N.; CHISTE, E.; MARIOTTO, G.; SANTOS, E.C.S.; DEL ROSSO T. Water Diffusion Effects at Gold–Graphene Interfaces Supporting Surface Plasmon Polaritons Cite this: J. Phys. Chem. C 2022, 126, 32, 13905–13919. DOI