Tudóstér: EFOP-3.6.2-16-2017-00005 publikációi

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szűkítés
feltöltött közlemény: 51 Open Access: 19
2024
  1. Szántó, G., Pritzke, P., Kluitmann, J., Köhler, J., Csáki, A., Fritzsche, W., Csarnovics, I., Bonyár, A.: Optimization of the Bulk Refractive Index Sensitivity of Silver NanoPrisms.
    Advanced Optical Materials. "Accepted by Publisher" 1-11, 2024.
2022
  1. Szántó, G., Bonyár, A., Csarnovics, I.: Dimers of gold-silver core-shell nanospheres: The effect of interparticle gap on the refractive index sensitivity and extinction spectrum.
    Photonics Nanostruct. 50 101023-, 2022.
    Folyóirat-mutatók:
    Q2 Atomic and Molecular Physics, and Optics
    Q2 Condensed Matter Physics
    Q2 Electrical and Electronic Engineering
    Q2 Electronic, Optical and Magnetic Materials
    Q3 Hardware and Architecture
    Q3 Nanoscience and Nanotechnology
  2. Badankó, P., Umarov, O., Fábri, C., Halász, G., Vibók, Á.: Topological aspects of cavity-induced degeneracies in polyatomic molecules.
    Int. J. Quantum Chem. 122 (8), 1-8, 2022.
    Folyóirat-mutatók:
    Q3 Atomic and Molecular Physics, and Optics
    Q2 Condensed Matter Physics
    Q3 Physical and Theoretical Chemistry
2021
  1. Fábri, C., Halász, G., Cederbaum, L., Vibók, Á.: Born-Oppenheimer approximation in optical cavities: from success to breakdown.
    Chem. Sci. 12 (4), 1251-1258, 2021.
    Folyóirat-mutatók:
    D1 Chemistry (miscellaneous)
  2. Tóth, A., Csehi, A., Halász, G., Vibók, Á.: Fotodisszociáció szabályozása THz pulzussal indukált Stark effektussal.
    In: Kvantumelektronika 2021: IX. Szimpózium a hazai kvantumelektronikai kutatások eredményeiről. Szerk.: Földi Péter, Magashegyi István, Szegedi Tudományegyetem Természettudományi és Informatikai Kar Informatikai Intézet, Szeged, 192-198, 2020. ISBN: 9789633067758
  3. Szántó, G., Csarnovics, I., Bonyár, A.: Numerical investigation of the refractive index sensitivity of au/Ag core-shell nanostructures (for sensing applications).
    Sensing and Bio-Sensing Research. 32 1-17, 2021.
    Folyóirat-mutatók:
    Q2 Biotechnology
    Q2 Electrical and Electronic Engineering
    Q2 Electronic, Optical and Magnetic Materials
    Q2 Signal Processing
  4. Tóth, A., Csehi, A.: Probing strong-field two-photon transitions through dynamic interference.
    J. Phys. B-At. Mol. Opt. Phys. 54 (3), 1-8, 2021.
    Folyóirat-mutatók:
    Q2 Atomic and Molecular Physics, and Optics
    Q2 Condensed Matter Physics
  5. Fábri, C., Halász, G., Cederbaum, L., Vibók, Á.: Signatures of light-induced nonadiabaticity in the field-dressed vibronic spectrum of formaldehyde.
    J. Chem. Phys. 154 (12), 1-13, 2021.
    Folyóirat-mutatók:
    Q1 Medicine (miscellaneous)
    Q1 Physical and Theoretical Chemistry
    Q1 Physics and Astronomy (miscellaneous)
  6. Tóth, A., Csehi, A.: Strong-field control by reverse engineering.
    Phys. Rev. A. 104 (6), 063102, 2021.
    Folyóirat-mutatók:
    Q1 Atomic and Molecular Physics, and Optics
  7. Szabó, K., Csehi, A.: Többfotonos rezonancia-fokozott ionizációban kilépő elektronok dinamikus interferenciája.
    In: Kvantumelektronika 2021: IX. Szimpózium a hazai kvantumelektronikai kutatások eredményeiről. Szerk.: Földi Péter, Magashegyi István, Szegedi Tudományegyetem Természettudományi és Informatikai Kar Informatikai Intézet, Szeged, 174-180, 2020. ISBN: 9789633067758
2020
  1. Biró, L., Csehi, A.: A nátrium-jodid molekula fotogerjesztésének szabályozása terahertzes pulzusokkal.
    In: Kvantumelektronika 2021: IX. Szimpózium a hazai kvantumelektronikai kutatások eredményeiről. Szerk.: Földi Péter, Magashegyi István, Szegedi Tudományegyetem Természettudományi és Informatikai Kar Informatikai Intézet, Szeged, 21-26, 2020. ISBN: 9789633067758
  2. Tóth, A., Csehi, A., Halász, G., Vibók, Á.: Control of photodissociation with the dynamic Stark effect induced by THz pulses.
    Phys. Rev. Research. 2 (1), 1-9, 2020.
  3. Szidarovszky, T., Halász, G., Császár, A., Vibók, Á.: Light-Dressed Spectroscopy of Molecules.
    In: Progress in Ultrafast Intense Laser Science XV.. Ed.: Kaoru Yamanouchi, Dimitrios Charalambidis, Springer International Publishing Ag, Basel, Svájc, 77-100, 2020, (ISSN 0303-4216)
  4. Csehi, A., Badankó, P., Halász, G., Vibók, Á., Lasorne, B.: On the preservation of coherence in the electronic wavepacket of a neutral and rigid polyatomic molecule.
    J. Phys. B-At. Mol. Opt. Phys. 53 (18), 1-12, 2020.
    Folyóirat-mutatók:
    Q2 Atomic and Molecular Physics, and Optics
    Q2 Condensed Matter Physics
  5. Csehi, A., Vibók, Á., Halász, G., Kowalewski, M.: Quantum control with quantum light of molecular nonadiabaticity.
    In: Bulletin of the 51st Annual Meeting of the APS Division of Atomic, Molecular and Optical Physics, American Physical Society, [Washington], idT04010, 2020.
  6. Fábri, C., Lasorne, B., Halász, G., Cederbaum, L., Vibók, Á.: Quantum light-induced nonadiabatic phenomena in the absorption spectrum of formaldehyde: Full- and reduced-dimensionality studies.
    J. Chem. Phys. 153 (23), 1-11, 2020.
    Folyóirat-mutatók:
    Q1 Medicine (miscellaneous)
    Q1 Physical and Theoretical Chemistry
    Q1 Physics and Astronomy (miscellaneous)
  7. Pawlak, M., Szidarovszky, T., Halász, G., Vibók, Á.: Robust field-dressed spectra of diatomics in an optical lattice.
    Phys. Chem. Chem. Phys. 22 (6), 3715-3723, 2020.
    Folyóirat-mutatók:
    Q1 Physical and Theoretical Chemistry
    Q1 Physics and Astronomy (miscellaneous)
  8. Fábri, C., Lasorne, B., Halász, G., Cederbaum, L., Vibók, Á.: Striking Generic Impact of Light-Induced Non-Adiabaticity in Polyatomic Molecules.
    J. Phys. Chem. Lett. 11 (13), 5324-5329, 2020.
    Folyóirat-mutatók:
    D1 Materials Science (miscellaneous)
    Q1 Nanoscience and Nanotechnology
    D1 Physical and Theoretical Chemistry
  9. Szidarovszky, T., Halász, G., Vibók, Á.: Three-player polaritons: nonadiabatic fingerprints in an entangled atom-molecule-photon system.
    New J. Phys. 22 (5), 1-7, 2020.
    Folyóirat-mutatók:
    D1 Physics and Astronomy (miscellaneous)
2019
  1. Csehi, A.: Control of the populations and phases of two-level quantum systems by a single frequency-chirped laser pulse.
    J. Phys. B-At. Mol. Opt. Phys. 52 (19), 195004, 2019.
    Folyóirat-mutatók:
    Q2 Atomic and Molecular Physics, and Optics
    Q2 Condensed Matter Physics
  2. Latka, T., Shirvanyan, V., Ossiander, M., Razskazovskaya, O., Guggenmos, A., Jobst, M., Fieß, M., Holzner, S., Sommer, A., Schultze, M., Jakubeit, C., Riemensberger, J., Bernhardt, B., Helml, W., Gatti, F., Lasorne, B., Lauvergnat, D., Decleva, P., Halász, G., Vibók, Á., Kienberger, R.: Femtosecond wave-packet revivals in ozone.
    Phys. Rev. A. 99 (6), 1-9, 2019.
    Folyóirat-mutatók:
    Q1 Atomic and Molecular Physics, and Optics
  3. Nagy, Á.: Gerjesztett állapotok sűrűségfunkcionál-elmélete.
    Magy. Kém. F. 125 (3), 123-129, 2019.
  4. Bolívar, J., Nagy, Á., Romera, E.: Phase-space Fisher information of 2D gapped Dirac materials.
    J. Math. Chem. 57 (4), 1169-1180, 2019.
    Folyóirat-mutatók:
    Q3 Applied Mathematics
    Q3 Chemistry (miscellaneous)
  5. Tóth, A., Csehi, A., Halász, G., Vibók, Á.: Photodissociation dynamics of the LiF molecule: Two- and three-state descriptions.
    Phys. Rev. A. 99 (4), 1-11, 2019.
    Folyóirat-mutatók:
    Q1 Atomic and Molecular Physics, and Optics
  6. Csehi, A., Vibók, Á., Halász, G., Kowalewski, M.: Quantum control with quantum light of molecular nonadiabaticity.
    Phys. Rev. A. 100 (5), 1-9, 2019.
    Folyóirat-mutatók:
    Q1 Atomic and Molecular Physics, and Optics
  7. Szidarovszky, T., Császár, A., Halász, G., Vibók, Á.: Rovibronic spectra of molecules dressed by light fields.
    Phys. Rev. A. 100 (3), 1-12, 2019.
    Folyóirat-mutatók:
    Q1 Atomic and Molecular Physics, and Optics
  8. Csehi, A.: Single-pulse-induced total population inversion between indirectly coupled quantum states.
    J. Phys. B-At. Mol. Opt. Phys. 52 (2), 1-7, 2019.
    Folyóirat-mutatók:
    Q2 Atomic and Molecular Physics, and Optics
    Q2 Condensed Matter Physics
  9. Badankó, P., Halász, G., Cederbaum, L., Vibók, Á., Csehi, A.: Strong impact of the orientation of transition dipole moments on the dynamics of diatomics in laser fields.
    In: 12th International Conference : Processes in Isotopes and Molecules, INCDTIM, Cluj-Napoca, 36 (Oral T2-5), 2019.
  10. Csehi, A., Badankó, P., Halász, G., Cederbaum, L., Vibók, Á.: Substantial impact of the orientation of transition dipole moments on the dynamics of diatomics in laser fields.
    In: Bulletin of the 50th Annual Meeting of the APS Division of Atomic, Molecular and Optical Physics, American Physical Society, [Washington], idK03002, 2019.
  11. Csehi, A., Kowalewski, M., Halász, G., Vibók, Á.: Ultrafast dynamics in the vicinity of quantum light-induced conical intersections.
    New J. Phys. 21 (9), 1-8, 2019.
    Folyóirat-mutatók:
    D1 Physics and Astronomy (miscellaneous)
2018
  1. Csehi, A., Halász, G., Vibók, Á.: Collective effect of light-induced and natural nonadiabatic phenomena in the dissociation dynamics of the NaI molecule.
    Chem. Phys. 509 91-97, 2018.
    Folyóirat-mutatók:
    Q3 Physical and Theoretical Chemistry
    Q2 Physics and Astronomy (miscellaneous)
  2. Badankó, P., Halász, G., Cederbaum, L., Vibók, Á., Csehi, A.: Communication: Substantial impact of the orientation of transition dipole moments on the dynamics of diatomics in laser fields.
    J. Chem. Phys. 149 (18), 1-5, 2018.
    Folyóirat-mutatók:
    Q1 Medicine (miscellaneous)
    Q1 Physical and Theoretical Chemistry
    Q1 Physics and Astronomy (miscellaneous)
  3. Csehi, A.: Competition between light-induced and intrinsic nonadiabatic phenomena in diatomics.
    In: 6th High Dimensional Quantum Dynamics (HDQD) Workshop
  4. Csehi, A., Tóth, A., Badankó, P., Halász, G., Cederbaum, L., Vibók, Á.: Competition between light-induced and intrinsic nonadiabatic phenomena in strongly coupled diatomics.
    In: 17th ISUILS, 2018
  5. Szidarovszky, T., Halász, G., Császár, A., Cederbaum, L., Vibók, Á.: Conical Intersections Induced by Quantum Light: Field-Dressed Spectra from the Weak to the Ultrastrong Coupling Regimes.
    J. Phys. Chem. Lett. 9 (21), 6215-6223, 2018.
    Folyóirat-mutatók:
    D1 Materials Science (miscellaneous)
    D1 Nanoscience and Nanotechnology
    D1 Physical and Theoretical Chemistry
  6. Nagy, Á.: Density functional theory from spherically symmetric densities.
    J. Chem. Phys. 149 (20), 1-9, 2018.
    Folyóirat-mutatók:
    Q1 Medicine (miscellaneous)
    Q1 Physical and Theoretical Chemistry
    Q1 Physics and Astronomy (miscellaneous)
  7. Szidarovszky, T., Halász, G., Császár, A., Cederbaum, L., Vibók, Á.: Direct signatures of light-induced conical intersections on the field-dressed spectrum of Na2.
    J. Phys. Chem. Lett. 9 (11), 2739-2745, 2018.
    Folyóirat-mutatók:
    D1 Materials Science (miscellaneous)
    D1 Nanoscience and Nanotechnology
    D1 Physical and Theoretical Chemistry
  8. Bolívar, J., Cordero, N., Nagy, Á., Romera, E.: Fidelity as a marker of topological phase transitions in 2D Dirac materials.
    Int. J. Quantum Chem. 118 (17), e25674-, 2018.
    Folyóirat-mutatók:
    Q1 Atomic and Molecular Physics, and Optics
    Q1 Condensed Matter Physics
    Q2 Physical and Theoretical Chemistry
  9. Halász, G., Badankó, P., Vibók, Á.: Geometric phase of light-induced conical intersections: adiabatic time-dependent approach.
    Mol. Phys. 116 (19-20), 2652-2659, 2018.
    Folyóirat-mutatók:
    Q2 Biophysics
    Q2 Condensed Matter Physics
    Q3 Molecular Biology
    Q2 Physical and Theoretical Chemistry
  10. Tóth, A., Badankó, P., Halász, G., Vibók, Á., Csehi, A.: Importance of the lowest-lying [Pí] electronic state in the photodissociation dynamics of LiF.
    Chem. Phys. 515 418-426, 2018.
    Folyóirat-mutatók:
    Q3 Physical and Theoretical Chemistry
    Q2 Physics and Astronomy (miscellaneous)
  11. Levämäki, H., Nagy, Á., Vilja, I., Kokko, K., Vitos, L.: Kullback-Leibler and relative Fisher information as descriptors of locality.
    Int. J. Quantum Chem. 118 (12), e25557-, 2018.
    Folyóirat-mutatók:
    Q1 Atomic and Molecular Physics, and Optics
    Q1 Condensed Matter Physics
    Q2 Physical and Theoretical Chemistry
  12. Csehi, A., Halász, G., Cederbaum, L., Vibók, Á.: Manipulating photodissociation dynamics by frequency chirped laser pulses.
    In: Bulletin of the 49th Annual Meeting of the APS Division of Atomic, Molecular and Optical Physics
  13. Csehi, A., Halász, G., Cederbaum, L., Vibók, Á.: Manipulating photodissociation dynamics by frequency chirped laser pulses.
    In: 3rd Anharmonicity in Medium-Sized Molecules and Clusters (AMOC) International Conference / 3rd General Meeting of COST-Action-CM1405-Molecules-in-Motion (MOLIM)
  14. Nagy, Á.: Orbital-free density functional theory: Pauli potential and density scaling.
    In: Many-body approaches at different scales: A tribute to N.H. March on the occasion of his 90th birthday. Ed.: G. G. N. Angilella, C. Amovilli, Springer, Cham, Switzerland, 253-260, 2018. ISBN: 9783319723730
  15. Bolívar, J., Nagy, Á., Romera, E.: Rényi-Fisher entropy product as a marker of topological phase transitions.
    Physica A. 498 66-73, 2018.
    Folyóirat-mutatók:
    Q2 Condensed Matter Physics
    Q2 Statistics and Probability
  16. Nagy, Á.: Thermodynamical transcription of density functional theory with minimum Fisher information.
    Chem. Phys. Lett. 695 149-152, 2018.
    Folyóirat-mutatók:
    Q2 Physical and Theoretical Chemistry
    Q2 Physics and Astronomy (miscellaneous)
  17. Nagy, Á.: Time-dependent pair density from the principle of minimum Fisher information.
    J. Mol. Model. 24 (9), 234, 2018.
    Folyóirat-mutatók:
    Q3 Catalysis
    Q3 Computational Theory and Mathematics
    Q3 Computer Science Applications
    Q3 Inorganic Chemistry
    Q3 Organic Chemistry
    Q3 Physical and Theoretical Chemistry
  18. Nagy, Á.: Time-dependent pair density functional theory.
    Eur. Phys. J. B. 91 (6), 110, 2018.
    Folyóirat-mutatók:
    Q2 Condensed Matter Physics
    Q2 Electronic, Optical and Magnetic Materials
  19. Biró, L., Csehi, A.: Time-dependent state populations with and without the rotating wave approximation: a model-based study.
    J. Mod. Opt. 66 (2), 119-129, 2018.
    Folyóirat-mutatók:
    Q2 Atomic and Molecular Physics, and Optics
  20. Ayers, P., Levy, M., Nagy, Á.: Time-independent density functional theory for degenerate excited states of Coulomb systems.
    Theor. Chem. Acc. 137 (11), 1-6, 2018.
    Folyóirat-mutatók:
    Q3 Physical and Theoretical Chemistry
2017
  1. Csehi, A., Vibók, Á., Halász, G.: Kvantumkontroll fázismodulált lézerimpulzusokkal.
    Fiz. Szle. 10 335-340, 2017.
feltöltött közlemény: 51 Open Access: 19
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