Name and surname:
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doc. RNDr. Richard Hlubina, DrSc.
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Document type:
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Research/art/teacher profile of a person
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The name of the university:
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Comenius University Bratislava
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The seat of the university:
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Šafárikovo námestie 6, 818 06 Bratislava
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III.a - Occupation-position | III.b - Institution | III.c - Duration |
---|---|---|
researcher | Comenius University, Bratislava | 1994-2001 |
associate professor | Comenius University, Bratislava | 2001- |
V.1.a - Name of the profile course | V.1.b - Study programme | V.1.c - Degree | V.1.d - Field of study |
---|---|---|---|
Electrical and optical properties of solids | mFTL-solid state physics | Mgr | 13.-physics |
Condensed matter theory | dFKA-condensed matter physics and acoustics | PhD | 13.-physics |
V.2.a - Name of the study programme | V.2.b - Degree | V.2.c - Field of study |
---|---|---|
mFTL-solid state physics | second degree | 13.-physics |
dFKA-condensed matter physics and acoustics | PhD | 13.-physics |
V.5.a - Name of the course | V.5.b - Study programme | V.5.c - Degree | V.5.d - Field of study |
---|---|---|---|
Introduction to solid state physics | FYZ-physics | first degree | 13.-physics |
Many body physics | mFTL-solid state physics | second degree | 13.-physics |
Statistical physics and thermodynamics | FYZ-physics | first degree | 13.-physics |
R. Hlubina and T. M. Rice, Resistivity as a function of temperature for models with hot spots on the Fermi surface, Phys. Rev. B 51, 9253-9260 (1995)
R. Hlubina, S. Sorella, and F. Guinea, Ferromagnetism in the two dimensional t-t' Hubbard model at the Van Hove density, Phys. Rev. Lett. 78, 1343-1346 (1997)
R. Hlubina, Phase diagram of the weak-coupling two-dimensional t-t' Hubbard model at low and intermediate electron density, Phys. Rev. B 59, 9600-9605 (1999)
J. Mráz and R. Hlubina, Kohn-Luttinger instability of the t-t' Hubbard model in two dimensions: variational approach, Phys. Rev. B 67, 174518 (2003)
F. Herman and R. Hlubina, Microscopic interpretation of the Dynes formula for the tunneling
density of states, Phys. Rev. B 94, 144508 (2016)
L. Kopnický and R. Hlubina, Mean-field study of the Amperean pairing state, Phys. Rev. B 101, 024502 (2020)
D. Kavický and R. Hlubina, Dynes-like superconductivity in thin Al films in parallel magnetic fields, Phys. Rev. B 102, 014508 (2020)
D. Kavický, F. Herman, and R. Hlubina, Model-independent determination of the gap function of nearly localized superconductors, Phys. Rev. B 105, 214504 (2022)
F. Herman and R. Hlubina, Slope of H_c2 close to T_c versus the size of the Cooper pairs: The
role of disorder in Dynes superconductors, Phys. Rev. B 108, 134518 (2023)
A. Škrlec and R. Hlubina, Eliashberg-like theory for Dynes superconductors, Phys. Rev. B 109,
014507 (2024)
A. Rosch, Interplay of Disorder and Spin Fluctuations in the Resistivity near a Quantum Critical Point, Phys. Rev. Lett. 82, 4280 (1999); citation of VI.2.1
C. Honerkamp and M. Salmhofer, Magnetic and Superconducting Instabilities of the Hubbard Model at the Van Hove Filling, Phys. Rev. Lett. 87, 187004 (2001), citation of VI.2.2 and VI.2.3
J. P. F. LeBlanc et al. (Simons Collaboration on the Many-Electron Problem), Solutions of the Two-Dimensional Hubbard Model: Benchmarks and Results from a Wide Range of Numerical Algorithms, Phys. Rev. X 5, 041041 (2015); citation of VI.2.3
Maiwald J, Mazin II, Gurevich A, and Aronson M, Phys. Rev. B 102, 165125 (2020),
citation of:
F. Herman and R. Hlubina, Electromagnetic properties of impure superconductors with pairbreaking
processes, Phys. Rev. B 96, 014509 (2017)
N. Zobrist, G. Coiffard, B. Bumble, N. Swimmer, S. Steiger, M. Daal, G. Collura, A.B. Walter, C. Bockstiegel, N. Fruitwala, I. Lipartito, B.A. Mazin, Appl. Phys. Lett. 115, 213503 (2019); citation of VI.2.5
APVV-19-0371, Application of machine learning methods in condensed matter physics, 07/2020 - 06/2024, funding 146000 EUR, member of team
VEGA 1/0640/20, Modeling of novel phases and phase transitions in condensed matter, 01/2020 - 12/2022, funding 2020 - 10630 EUR, 2021 - 10765 EUR, deputy project leader
APVV-23-0515 Complex phases and phase transitions in crystals, 07/2024 - 06/2028, funding 134056 Eur, member of team
VII.a - Activity, position | VII.b - Name of the institution, board | VII.c - Duration |
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member of the PhD committees for the programs Condensed matter physics and acoustics, Theoretical and mathematical physics | Comenius University, Bratislava | 2015- |
member of the PhD committees for the programs Condensed matter physics, Theoretical physics | Safarik University, Kosice | 2016- |
member of the work group for physics | Accreditation Committee, Slovak Republic | 2003-2006 |
member of the committee for physics | grant agency VEGA of the Ministry of education and Slovak academy of Sciences | 1999-2005 and 2016- |
member of the scientific board | Institute of Physics, Slovak Academy of Sciences | 2018-2022 |
VIII.a - Name of the institution | VIII.b - Address of the institution | VIII.c - Duration (indicate the duration of stay) | VIII.d - Mobility scheme, employment contract, other (describe) |
---|---|---|---|
Institute for Theoretical Physics, ETH Zürich | Zurich, Switzerland | 07/1993 - 07/1994 | post-doc |
International School for Advanced Studies | Trieste, Italy | 10/1994 - 09/1996 | post-doc |
International School for Advanced Studies | Trieste, Italy | 05/2003 –02/2006 | visiting professor |
in 2015 nominated by the Accreditation Committee as a member of the top team Physics of complex systems, invited talk at the APS March Meeting Boston 2019, referee for Phys. Rev. Lett., Phys. Rev. B etc., member of the editorial board of Acta Physica Slovaca, 2002-2006.