CERN Accelerating science

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1.
The AMS Experiment on the International Space Station / Graziani, Maura (INFN, Perugia ; Perugia U.) ; Tomassetti, Nicola (INFN, Perugia ; Perugia U.)
The Alpha Magnetic Spectrometer (AMS) is a cosmic ray detector operating onboard the International Space Station since May 2011 conducting a unique, long-duration mission of fundamental physics research in space. The physics objectives include the precise studies of the origin of dark matter, antimatter, and cosmic rays as well as the exploration of new phenomena. [...]
2022 - 13 p. - Published in : 10.1007/978-3-031-05625-3_12
In : Advances in cosmology, pp.197-209
2.
Solar Modulation of Galactic Cosmic Rays: Physics Challenges for AMS-02 / Tomassetti, Nicola (INFN, Perugia ; Perugia U.)
The Alpha Magnetic Spectrometer (AMS) is a new generation high-energy physics experiment installed on the International Space Station in May 2011 and operating continuously since then. Using an unprecedently large collection of particles and antiparticles detected in space, AMS is performing precision measurements of cosmic ray energy spectra and composition. [...]
arXiv:1712.03178.- 2019 - 5 p. - Published in : 10.1142/9789811202339_0052 Fulltext: PDF;
In : 18th Lomonosov Conference on Elementary Particle Physics : Particle Physics at the Silver Jubilee of Lomonosov Conferences, Moscow, Russia, 24 - 30 Aug 2017, pp.272-276
3.
The Penetrating particle ANalyzer (PAN) instrument for measurements of low energy cosmic rays / Ambrosi, Giovanni (INFN, Perugia) ; Azzarello, Philipp (Geneva U.) ; Bergmann, Benedikt (CTU, Prague) ; Bertucci, Bruna (INFN, Perugia) ; Cadoux, Franck (Geneva U.) ; Duranti, Matteo (INFN, Perugia) ; Ionica, Maria (INFN, Perugia) ; Kole, Merlin (Geneva U.) ; Paniccia, Mercedes (Geneva U.) ; Plainaki, Christina (CERN) et al.
PAN is an instrument designed to precisely measure and monitor the flux, composition, and direction of highly penetrating particles (>100MeV/nucleon) in deep space and interplanetary missions with an energy resolution better than 10% for nuclei from H to Fe at 1GeV/n. The detector, limited to about 20kg in mass and 20W in power consumption, is based on the well-known magnetic spectrometer detection principle, and exploits the advantages provided by the integration of ultra-thin microstrip silicon detectors, hybrid silicon pixel detectors and silicon photomultipliers. [...]
IEEE, 2019 - 8 p. - Published in : 10.1109/NSS/MIC42101.2019.9059946
In : 2019 IEEE Nuclear Science Symposium (NSS) and Medical Imaging Conference (MIC), Manchester, United Kingdom, 26 Oct - 2 Nov 2019, pp.1-8
4.
Measurement of the B/C Ratio in Cosmic Rays with the AMS-01 Experiment / Tomassetti, Nicola
CERN-THESIS-2009-278 - 178 p.

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