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Solar wind radial...

Signs of geoeffective space weather events in cosmic rays during the first half of the solar cycle 24

Gil A., Modzelewska R., Moskwa Sz., Siluszyk A., Siluszyk M., Wawrzaszek A., Wawrzynczak A., Signs of geoeffective space weather events in cosmic rays during the first half of the solar cycle 24 , Cosmic ray studies with neutron detectors, Volume 1 (2021), (5 p.),

A three-dimensional map of the heliosphere from IBEX

Reisenfeld D.B., Bzowski M., Funsten H.O., Heerikhuisen J., Janzen P.H., Kubiak M.A., McComas D.J., Schwadron N.A., Sokół J.M., Zimorino A., Zirnstein E.J. (2021). A three-dimensional map of the heliosphere from IBEX. Ap.J.S. 254:40, doi: 10.1029/2020GL091507.

KORTES Mission for Solar Activity Monitoring Onboard International Space Station

Kirichenko A., Kuzin S., Shestov S., Ulyanov A., Pertsov A., Bogachev S., Reva1 A., Loboda I, Vishnyakov E., Dyatkov S., Erkhova N., Stȩślicki M., Sylwester J., Płocieniak S., Podgórski P., Kowaliński M., Bakała J., Szaforz Ż., Siarkowski M., Ścisłowski Ś., Mrozek M., Sylwester B., Malyshev I., Pestov A., Polkovnikov V., Toropov M., Salashchenko N., Tsybin N. and Chkhalo N. (2021). KORTES Mission for Solar Activity Monitoring Onboard International Space Station. Frontiers in
Astronomy and Space Sciences, Volume 8, id.66 (2021), doi:10.3389/fspas.2021.646895.

Design features of the STEP-f particle detector and the SPHINX solar X-ray spectrophotometer as seeds for revealing some peculiar properties of the Earth radiation belts

Dudnik O., Sylwester J., Kowaliński M., Podgórski P., Didenko H., Zajtsevskiy I., Perevertaylo O. (2021). Design features of the STEP-f particle detector and the SPHINX solar X-ray spectrophotometer as seeds for revealing some peculiar properties of the Earth radiation belts. The Report “Space Research in Ukraine 2018-2020” for the Committee on Space Research (COSPAR), pp. 133 – 140, Rozdział książki.

The Spectrometer/Telescope for Imaging X-rays (STIX)

Krucker S., Hurford G. J., Grimm O. , Kögl S., Gröbelbauer H.-P , Etesi L., Casadei D., Csillaghy A., Benz A. O., Arnold N. G., Molendini F., Orleanski P. , Schori D., Xiao H., Kuhar M., Hochmuth N., Felix S., Schramka F., Marcin S., Kobler S., Iseli L., Dreier M., Wiehl H. J., Kleint L., Battaglia M., Lastufka E., Sathiapal H., Lapadula K., Bednarzik M., Birrer G., Stutz St., Wild Ch., Marone F., Skup K. R., Cichocki A., Ber K., Rutkowski K., Bujwan W., Juchnikowski G., Winkler M., Darmetko M., Michalska M., Seweryn K., Białek A., Osica P., Sylwester J., Kowalinski M., Ścisłowski D., Siarkowski M., Stęślicki M., Mrozek T., Podgórski P., Meuris A., Limousin O., Gevin O., Le Mer I., Brun S., Strugarek A., Vilmer N., Musset S., Maksimović M., Fárník F., Kozáček Z., Kašparová J., Mann G., Önel H., Warmuth A., Rendtel J., Anderson J., Bauer S., Dionies F., Paschke J., Plüschke D., Woche M., Schuller F., Veronig A. M., Dickson E. C. M., Gallagher P. T. Maloney S. A., Bloomfield D. S., Piana M., Massone A. M., Benvenuto F., Massa P., Schwartz R. A., Dennis B. R., van Beek H. F., Rodríguez-Pacheco J. and Lin R. P. (2020). The Spectrometer/Telescope for Imaging X-rays (STIX) . Astronomy & Astrophysics, 642, A15 (21p), doi: 10.1051/0004-6361/201937362.

Solar wind turbulence from 1 to 45 AU. I. Evidence for dissipation of magnetic fluctuations using Voyager and ACE observations

Pine Z.B., Smith C.W., Hollick S.J., Argall M.R., Vasquez B.J., Isenberg P.A., Schwadron N.A., Joyce C.J., Sokół J.M., Bzowski M., Kubiak M.A. , Hamilton K.E., McLaurin M.L., Leamon R.J. (2020). Solar wind turbulence from 1 to 45 AU. I. Evidence for dissipation of magnetic fluctuations using Voyager and ACE observations. Ap.J. 900:91, doi: 10.3847/1538-4357/abab10.

Solar Wind Turbulence from 1 to 45 au. III. Anisotropy of Magnetic Fluctuations in the Inertial Range Using Voyager and ACE Observations

Pine Z.B., Smith C.W., Hollick S.J., Argall M.R., Vasquez B.J., Isenberg P.A., Schwadron N.A., Joyce C.J., Sokół J.M., Bzowski M., Kubiak M.A. , Hamilton K.E., McLaurin M.L., Leamon R.J. (2020). Solar wind turbulence from 1 to 45 AU. III. Anisotropy of Magnetic Fluctuations in the Inertial Range Using Voyager and ACE Observations. Ap.J. 900:92, doi: 10.3847/1538-4357/abab11 .

Solar wind turbulence from 1 to 45 AU. II. Analysis of Inertial-range Fluctuations Using Voyager and ACE Observations

Pine Z.B., Smith C.W., Hollick S.J., Argall M.R., Vasquez B.J., Isenberg P.A., Schwadron N.A., Joyce C.J., Sokół J.M., Bzowski M., Kubiak M.A. , Hamilton K.E., McLaurin M.L., Leamon R.J. (2020). Solar wind turbulence from 1 to 45 AU. II. Analysis of Inertial-range Fluctuations Using Voyager and ACE Observations. Ap.J. 900:92, doi: 10.3847/1538-4357/abab0f .

Solar cycle of imaging the global heliosphere: Interstellar Boundary Explorer (IBEX) observations from 2009–2019

McComas D.J., Bzowski M., Dayeh M.A., DeMajistre R., Funsten H.O., Janzen P.H., Kowalska-Leszczyńska I., Kubiak M.A., Swchadron N.A., Sokół J.M., Szalay J.R., Tokumaru M., Zirnstein E.J. (2020). Solar cycle of imaging the global heliosphere: Interstellar Boundary Explorer (IBEX) observations from 2009–2019. Ap. J. S. 248:26, doi: 10.3847/1538-4365/ab8dc2.

Wizja artystyczna sond misji BepiColombo w ostatniej fazie lotu w kosmos (sondy przymocowane są do ostatniego stopnia rakiety nośnej Ariane-5). Rys. ESA.

SIMBIO-SYS: Scientific Cameras and Spectrometer for the BepiColombo Mission

Cremonese, G.; Capaccioni, F.; Capria, M. T.; Doressoundiram, A.; Palumbo, P.; Vincendon, M.; Massironi, M.; Debei, S.; Zusi, M.; Altieri, F.; Amoroso, M.; Aroldi, G.; Baroni, M.; Barucci, A.; Bellucci, G.; Benkhoff, J.; Besse, S.; Bettanini, C.; Blecka, M.; Borrelli, D. Brucato, J. R.; Carlo, C.; Carlier, V.; Cerroni, P.; Cicchetti, A.; Colangeli, L.; Dami, M.; Da Deppo, V.; Della Corte, V.; De Sanctis, M. C.; Erard, S.; Esposito, F.; Fantinel, D.; Ferranti, L.; Ferri, F.; Ficai Veltroni, I.; Filacchione, G.; Flamini, E.; Forlani, G.; Fornasier, S.; Forni, O.; Fulchignoni, M.; Galluzzi, V.; Gwinner, K.; Ip, W.; Jorda, L.; Langevin, Y.; Lara, L.; Leblanc, F.; Leyrat, C.; Li, Y.; Marchi, S.; Marinangeli, L.; Marzari, F.; Mazzotta Epifani, E.; Mendillo, M.; Mennella, V.; Mugnuolo, R.; Muinonen, K.; Naletto, G.; Noschese, R.; Palomba, E.; Paolinetti, R.; Perna, D.; Piccioni, G.; Politi, R.; Poulet, F.; Ragazzoni, R.; Re, C.; Rossi, M.; Rotundi, A.; Salemi, G.; Sgavetti, M.; Simioni, E.; Thomas, N.; Tommasi, L.; Turella, A.; Van Hoolst, T.; Wilson, L.; Zambon, F.; Aboudan, A.; Barraud, O.; Bott, N.; Borin, P.; Colombatti, G.; El Yazidi, M.; Ferrari, S.; Flahaut, J.; Giacomini, L.; Guzzetta, L.; Lucchetti, A.; Martellato, E.; Pajola, M.; Slemer, A.; Tognon, G.; Turrini, D. (2020)SIMBIO-SYS: Scientific Cameras and Spectrometer for the BepiColombo Mission. Space Science Reviews, 2020, Volume 216, Issue 5, article id.75. doi: 10.1007/s11214-020-00704-8.

Comparison of mathematical morphology with the local multifractal description applied to the image samples processing

Jenerowicz, M., Wawrzaszek, A., Krupiński, M., Aleksandrowicz, S., Drzewiecki, W. (2019). Comparison of mathematical morphology with the local multifractal description applied to the image samples processing. Proc. SPIE 11176, Photonics Applications in Astronomy, Communications, Industry, and High-Energy Physics Experiments, 1117638, doi: 10.1117/12.2536408.

Interstellar neutral helium in the heliosphere from IBEX observations. VI. The He+ density and the ionization state in the Very Local Interstellar Matter

Bzowski, M., Czechowski, A., Frisch, P.C., Fuselier, S.A., Galli, A., Heerikhuisen, J., Kubiak, M.A., Kucharek, H., McComas, D.J., Möbius, E., Schwadron, N.A., Slavin, J., Sokół, J.M., Swaczyna, P., Wurz, P., Zirnstein, E.J. (2019). Interstellar neutral helium in the heliosphere from IBEX observations. VI. The He+ density and the ionization state in the Very Local Interstellar Matter, Ap.J. 882:60, doi: 10.3847/1538-4357/ab3462, astro-ph/1907.09645.

Post-rendezvous radar properties of comet 67P/CG from the Rosetta Mission: understanding future Earth-based radar observations and the dynamical evolution of comets

Essam, H., Palmer, E.M., Herique, A., Kofman, W., El-Maarry, M.R. (2019). Post-rendezvous radar properties of comet 67P/CG from the Rosetta Mission: understanding future Earth-based radar observations and the dynamical evolution of comets. Monthly Notices of the Royal Astronomical Society, 489, 1667–1683, doi: 10.1093/mnras/stz2174.

Retrieval and characterization of carbon monoxide (CO) vertical profiles in the Martian atmosphere from observations of PFS/MEX

Bouche, J., Bauduin, S., Giuranna, M., Robert, S., Aoki, S., Vandaele, A.C., Erwin, J.T., Daerden, F., Wolkenberg P., Coheur, P.-F. (2019). Retrieval and characterization of carbon monoxide (CO) vertical profiles in the Martian atmosphere from observations of PFS/MEX. Journal of Quantitative Spectroscopy and Radiative Transfer, doi: 10.1016/j.jqsrt.2019.05.009.

Temporal evolution of the latitude and energy dependence of the Energetic Neutral Atom spectral indices measured by the Interstellar Boundary Explorer (IBEX) over the first nine years

Desai, M.I., Dayeh, M.A., Allegrini, F., McComas, D.J., Funsten, H., Heerikhuisen, J., Fuselier, S.A., Pogorelov, N., Schwadron, N,A., Zank, G.P., Zirnstein, E.J., Sokół, J.M., Tokumaru, M., Bzowski, M., Kubiak, M.A., Reisenfeld, D.B. (2019). Temporal evolution of the latitude and energy dependence of the Energetic Neutral Atom spectral indices measured by the Interstellar Boundary Explorer (IBEX) over the first nine years, Ap.J. 875:91, doi: 10.3847/1538-4357/ab0f37.

Application of a planar air-bearing microgravity simulator for demonstration of operations required for an orbital capture with a manipulator

Rybus, T., Seweryn, K., Oleś, J., Basmadji, F.L., Tarenko, K., Moczydłowski, R., Barciński, T., Kindracki, J., Mężyk, Ł., Paszkiewicz, P., Wolański, P. (2018). Application of a planar air-bearing microgravity simulator for demonstration of operations required for an orbital capture with a manipulator, Acta Astronautica, 155, 211-229, doi: 10.1016/j.actaastro.2018.12.004.

The midlatitude trough and the plasmapause in the nighttime ionosphere simultaneously observed by DEMETER during 2006–2009

Chen C.Y., Liu, T.J.Y., Lee, I.T., Rothkaehl, H., Przepiórka, D., Chang, L.C., Matyjasiak, B., Ryu, K., Oyama, K.-I. (2018). The midlatitude trough and the plasmapause in the nighttime ionosphere simultaneously observed by DEMETER during 2006–2009, Journal of Geophysical Research: Space Physics, 123, 5917-5932, doi: 10.1029/2017JA024840.

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