László Mészáros
Konkoly Thege Miklós Astronomical Institute
6 Papers
12 Citations
László Mészáros is an academic researcher from Konkoly Thege Miklós Astronomical Institute. The author has contributed to research in topics: CubeSat & Gamma-ray burst. The author has an hindex of 2, co-authored 6 publications.
Chat about Author
Papers
GRBAlpha: a 1U CubeSat mission for validating timing-based gamma-ray burst localization
András Pál,Masanori Ohno,Masanori Ohno,Masanori Ohno,László Mészáros,Norbert Werner,Norbert Werner,Jakub Ripa,Jakub Ripa,Marcel Frajt,Naoyoshi Hirade,Ján Hudec,Jakub Kapus,Martin Koleda,Robert Laszlo,Pavol Lipovský,Hiroto Matake,Miroslav Šmelko,Nagomi Uchida,B. Csak,Teruaki Enoto,Zsolt Frei,Yasushi Fukazawa,Gábor Galgóczi,Kengo Hirose,Syohei Hisadomi,Yuto Ichinohe,László L. Kiss,Tsunefumi Mizuno,Kazuhiro Nakazawa,Hirokazu Odaka,Hitomitsu Takahashi,Kento Torigoe +32 more
- 13 Dec 2020
TL;DR: GRBAlpha is a 1U CubeSat mission with an expected launch date in the first half of 2021 as discussed by the authors, which carries a 75 × 75 × 5 mm CsI(Tl) scintillator, read out by a dual-channel multi-pixel photon counter (MPPC) setup, to detect gamma-ray bursts (GRBs).
28
•Posted Content
GRBAlpha: A 1U CubeSat mission for validating timing-based gamma-ray burst localization
András Pál,Masanori Ohno,Masanori Ohno,Masanori Ohno,László Mészáros,Norbert Werner,Norbert Werner,Jakub Řípa,Jakub Řípa,Marcel Frajt,Naoyoshi Hirade,Ján Hudec,Jakub Kapus,Martin Koleda,Robert Laszlo,Pavol Lipovský,Hiroto Matake,Miroslav Šmelko,Nagomi Uchida,B. Csak,Teruaki Enoto,Zsolt Frei,Yasushi Fukazawa,Gábor Galgóczi,Kengo Hirose,Syohei Hisadomihi,Yuto Ichinohe,László L. Kiss,Tsunefumi Mizuno,Kazuhiro Nakazawa,Hirokazu Odaka,Hiromitsu Takahashi,Kento Torigoe +32 more
TL;DR: GRBAlpha is a 1U CubeSat mission with an expected launch date in the first half of 2021 as mentioned in this paper, which carries a 75 x 75 x 5 mm CsI(Tl) scintillator, read out by a dual-channel multi-pixel photon counter (MPPC) setup, to detect gamma-ray bursts (GRBs).
21
Dipper-like variability of the Gaia alerted young star V555 Ori
Zsófia Nagy,Elza Szegedi-Elek,Péter Ábrahám,Péter Ábrahám,Ágnes Kóspál,Ágnes Kóspál,Ágnes Kóspál,A. Bódi,A. Bódi,Jerome Bouvier,Mária Kun,A. Moór,A. Moór,B. Cseh,Anikó Farkas-Takács,O. Hanyecz,Simon Hodgkin,B. Ignácz,Csaba Kiss,Csaba Kiss,R. Konyves-Toth,L. Kriskovics,L. Kriskovics,Gábor Marton,Gábor Marton,László Mészáros,A. Ordasi,András Pál,Paula Sarkis,Krisztián Sárneczky,Ádám Sódor,Laszlo Szabados,Zsófia Marianna Szabó,Zsófia Marianna Szabó,R. Szakats,D. Tarczay-Nehéz,Krisztián Vida,Gabriella Zsidi +37 more
TL;DR: In this article, the authors carried out optical and near-infrared photometric, and optical spectroscopic observations to understand the light variations of V555 Ori, a T Tauri star, whose 1.5 mag brightening was published as a Gaia science alert in 2017.
Estimation of the detected background by the future gamma-ray transient mission CAMELOT.
Jakub Ripa,Gábor Galgóczi,Norbert Werner,András Pál,Masanori Ohno,László Mészáros,Tsunefumi Mizuno,Norbert Tarcai,Kento Torigoe,Nagomi Uchida,Yasushi Fukazawa,Hiromitsu Takahashi,Kazuhiro Nakazawa,Naoyoshi Hirade,Kengo Hirose,Syohei Hisadomi,Teruaki Enoto,H. Odaka,Yuto Ichinohe,Zsolt Frei,László L. Kiss +20 more
TL;DR: In this paper, a background estimation for the Cubesats Applied for MEasuring and Localising Transients (CAMELOT), which is a proposed fleet of nanosatellites for the all-sky monitoring and timing based localization of gamma-ray transients with precise localization capability at low Earth orbits, is presented.
4
The simulation framework of the timing-based localization for future all-sky gamma-ray observations with a fleet of CubeSats
Masanori Ohno,Masanori Ohno,Norbert Werner,András Pál,László Mészáros,Yuto Ichinohe,Jakub Řípa,Jakub Řípa,Martin Topinka,Filip Münz,Gábor Galgóczi,Yasushi Fukazawa,Tsunefumi Mizuno,Hiromitsu Takahashi,Nagomi Uchida,Kento Torigoe,Naoyoshi Hirade,Kengo Hirose,Hiroto Matake,Kazuhiro Nakazawa,Syohei Hisadomi,Hirokazu Odaka,Teruaki Enoto,Ján Hudec,Jakub Kapus,Martin Koleda,Robert Laszlo +26 more
- 15 Dec 2020
TL;DR: It is revealed that a degree-scale localization uncertainty can be achieved by the CAMELOT mission concept for bright short gamma-ray bursts, which could be covered by future large field of view ground-based telescopes.
3