Meno a priezvisko:
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Mgr. Miroslav Kocifaj, DrSc.
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Typ dokumentu:
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Vedecko/umelecko-pedagogická charakteristika osoby
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Názov vysokej školy:
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Univerzita Komenského v Bratislave
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Sídlo vysokej školy:
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Šafárikovo námestie 6, 818 06 Bratislava
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III.a - Zamestnanie-pracovné zaradenie | III.b - Inštitúcia | III.c - Časové vymedzenie |
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vedecký pracovník | Fakulta matematiky, fyziky a informatiky Univerzity Komenského v Bratislave | 2014- |
vedecký pracovník | Ústav stavebníctva a architektúry SAV, Bratislava | 1991-1993, 2005- |
vedecký pracovník | Astronomický ústav SAV, Bratislava | 1993-2013 |
IV.a - Popis aktivity, názov kurzu (ak išlo o kurz), iné | IV.b - Názov inštitúcie | IV.c - Rok |
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Prednášky o rozptyle žiarenia malými časticami | University of Vienna, Austria | 2007 |
Prednášky o rozptyle žiarenia malými časticami | Fakulta matematiky, fyziky a informatiky Univerzity Komenského v Bratislave | 2009 |
Úvod do optiky a laserov | Fakulta matematiky, fyziky a informatiky Univerzity Komenského v Bratislave | 2016 |
KOCIFAJ, Miroslav - SOLANO LAMPHAR, H. A. - VIDEEN, Gorden. Night-sky radiometry can revolutionize the characterization of light-pollution sources globally. In Proceedings of the National Academy of Sciences of the United States of America, 2019, vol. 116, no. 16, p. 7712-7717. (2018: 9.580 - IF, Q1 - JCR, 5.601 - SJR, Q1 - SJR, karentované - CCC). (2019 - Current Contents). ISSN 0027-8424. Dostupné na: https://doi.org/10.1073/pnas.1900153116
KOCIFAJ, Miroslav - KUNDRACIK, F. - BARENTINE, John C. - BARÁ, Salvador. The proliferation of space objects is a rapidly increasing source of artificial night sky brightness. In Monthly Notices of the Royal Astronomical Society: Letters, 2021, vol. 504, p. L40-L44. (2020: 5.287 - IF, Q1 - JCR, 2.067 - SJR, Q1 - SJR). ISSN 1745-3925. Dostupné na: https://doi.org/10.1093/mnrasl/slab030
KOCIFAJ, Miroslav - BARENTINE, John C. Air pollution mitigation can reduce the brightness of the night sky in and near cities. In Scientific Reports, 2021, vol. 11, art. no. 14622. (2020: 4.380 - IF, Q1 - JCR, 1.240 - SJR, Q1 - SJR, karentované - CCC). (2021 - Current Contents, WOS, SCOPUS). ISSN 2045-2322. Dostupné na: https://doi.org/10.1038/s41598-021-94241-1
KOCIFAJ, Miroslav. Retrieval of angular emission function from whole-city light sources using night-sky brightness measurements. In Optica, 2017, vol. 4, no. 2, p. 255-262. (2016: 7.727 - IF, Q1 - JCR, 4.761 - SJR, Q1 - SJR, karentované - CCC). (2017 - Current Contents). ISSN 2334-2536. Dostupné na: https://doi.org/10.1364/OPTICA.4.000255
SCHMIDT, F. - ANDRIEU, F. - COSTARD, F. - KOCIFAJ, Miroslav - MERESESCU, A. G. Formation of recurring slope lineae on Mars by rarefied gas-triggered granular flows. In Nature geoscience, 2017, vol. 10, p. 1-5. (2016: 13.941 - IF, Q1 - JCR, 7.274 - SJR, Q1 - SJR, karentované - CCC). (2017 - Current Contents). ISSN 1752-0894. Dostupné na: https://doi.org/10.1038/NGEO2917
KOCIFAJ, Miroslav - MARKOŠ, Peter - KUNDRACIK, F. - BARENTINE, John C. - WALLNER, Stefan. An accurate and realistic polarization model for night-sky brightness. In Monthly Notices of the Royal Astronomical Society: Letters, 2024, vol. 532, no. 1, p. L70-L74. (2023: 1.521 - SJR, Q1 - SJR). ISSN 1745-3925. Dostupné na: https://doi.org/10.1093/mnrasl/slae048
KOCIFAJ, Miroslav - KUNDRACIK, F. - BARENTINE, John C. - BARÁ, Salvador. The proliferation of space objects is a rapidly increasing source of artificial night sky brightness. In Monthly Notices of the Royal Astronomical Society: Letters, 2021, vol. 504, p. L40-L44. (2020: 5.287 - IF, Q1 - JCR, 2.067 - SJR, Q1 - SJR). ISSN 1745-3925. Dostupné na: https://doi.org/10.1093/mnrasl/slab030
KOCIFAJ, Miroslav - BARENTINE, John C. Air pollution mitigation can reduce the brightness of the night sky in and near cities. In Scientific Reports, 2021, vol. 11, art. no. 14622. (2020: 4.380 - IF, Q1 - JCR, 1.240 - SJR, Q1 - SJR, karentované - CCC). (2021 - Current Contents, WOS, SCOPUS). ISSN 2045-2322. Dostupné na: https://doi.org/10.1038/s41598-021-94241-1
KOCIFAJ, Miroslav - KÓMAR, Ladislav - SOLANO LAMPHAR, H. A. - BARENTINE, John C. - WALLNER, Stefan. A systematic light pollution modelling bias in present night sky brightness predictions. In Nature Astronomy, 2023, vol. 7, no. 3, p. 269-279. (2022: 14.1 - IF, Q1 - JCR, 3.269 - SJR, Q1 - SJR). ISSN 2397-3366. Dostupné na: https://doi.org/10.1038/s41550-023-01916-y
KOCIFAJ, Miroslav - KÓMAR, Ladislav - KUNDRACIK, F. - MARKOŠ, Peter - PETRŽALA, Jaromír - VIDEEN, Gorden. The Nature, Amplitude and Control of Microwave Attenuation in the Atmosphere. In Journal of Geophysical Research - Atmospheres, 2021, vol. 126, no. 17, art. no. e2021JD034978. (2020: 4.261 - IF, Q2 - JCR, 1.670 - SJR, Q1 - SJR, karentované - CCC). (2021 - Current Contents). ISSN 2169-897X. Dostupné na: https://doi.org/10.1029/2021JD034978
ABOTALIB, A. Z. - HEGGY, E. A deep groundwater origin for recurring slope lineae on Mars. In NATURE GEOSCIENCE. ISSN 1752-0894, 2019, vol. 12, no. 4, p. 235-241
DUNDAS, C. M. - MCEWEN, A. S. - CHOJNACKI, M. - MILAZZO, M. P. - BYRNE, S. - MCELWAINE, J. N. - URSO, A. Granular flows at recurring slope lineae on Mars indicate a limited role for liquid water. In NATURE GEOSCIENCE. ISSN 1752-0894, 2017, vol. 10, no. 12, p. 903-907
KYBA, C. C. M. - KUESTER, T. - SANCHEZ DE MIGUEL, A. - BAUGH, K. - JECHOW, A. - HOELKER, F. - BENNIE, J. - ELVIDGE, C. D. - GASTON, K. J. - GUANTER, L. Artificially lit surface of Earth at night increasing in radiance and extent. In SCIENCE ADVANCES. ISSN 2375-2548, 2017, vol. 3, no. 11, article number e1701528.
GUK, E. - LEVIN, N. Analyzing spatial variability in night-time lights using a high spatial resolution color Jilin-1 image Jerusalem as a case study. In ISPRS JOURNAL OF PHOTOGRAMMETRY AND REMOTE SENSING. ISSN 0924-2716, 2020, vol. 163, p. 121-136.
LI, X. - LEVIN, N. - XIE, J. L. - LI, D. R. Monitoring hourly night-time light by an unmanned aerial vehicle and its implications to satellite remote sensing. In REMOTE SENSING OF ENVIRONMENT
APVV (zodpovedný riešiteľ/principal investigator) - Globálna charakterizácia svetelného znečistenia. Projekt zameraný na vývoj sofistikovaných modelov pre výpočet/predpoveď svetelného znečistenia. / Global Characterization of Skyglow. Project aimed to development of sofisticated models for the calculation/forecast of light pollution. projekt č. APVV-18-0014, 07/2019-06/2023
(zodpovedný riešiteľ/principal investigator) Komplexný model šírenia svetelného znečistenia do okolitého prostredia (Comprehensive model of light pollution propagation into the ambient environment); projekt č. APVV-22-0020, 07/2023-06/2027
(zodpovedný riešiteľ/principal investigator) Modelling the night sky brightness produced by space objects; ESA Contract No. 4000139802/22/NL/SC (SK7_11); 2023-2024
(člen management committee/member of the management committee) International network for harmonization of atmospheric aerosol retrievals from ground based photometers (Harmonia); projekt č. COST - CA21119; 10/2022-10/2026
(člen management committee/member of the management committee) The birth of solar systems (Planets); projekt č. COST - CA22133; 0í/2023-09/2027
VIII.a - Názov inštitúcie | VIII.b - Sídlo inštitúcie | VIII.c - Obdobie trvania pôsobenia/pobytu (uviesť dátum odkedy dokedy trval pobyt) | VIII.d - Mobilitná schéma, pracovný kontrakt, iné (popísať) |
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Institute of Experimental Physics University of Vienna | Boltzmanngasse 5, 1090 Wien | 2007 | štipendium |
Institute of Experimental Physics University of Vienna | Boltzmanngasse 5, 1090 Wien | 2004-2005 | štipendium |
Institut für Astrophysik, University of Vienna | Türkenschanzstraße 17, 1180 Wien | 2014 | Short Term Scientific Mission |
Institute of Experimental Physics University of Vienna | Boltzmanngasse 5, 1090 Wien | 2007 | SAIA štipendium |
Institut für Astrophysik, University of Vienna | Türkenschanzstraße 17, 1180 Wien | 2014 | SAIA štipendium |