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Design of an Antimatter Large Acceptance Detector In Orbit (ALADInO)

Authors :
Oscar Adriani
Corrado Altomare
Giovanni Ambrosi
Philipp Azzarello
Felicia Carla Tiziana Barbato
Roberto Battiston
Bertrand Baudouy
Benedikt Bergmann
Eugenio Berti
Bruna Bertucci
Mirko Boezio
Valter Bonvicini
Sergio Bottai
Petr Burian
Mario Buscemi
Franck Cadoux
Valerio Calvelli
Donatella Campana
Jorge Casaus
Andrea Contin
Raffaello D’Alessandro
Magnus Dam
Ivan De Mitri
Francesco de Palma
Laurent Derome
Valeria Di Felice
Adriano Di Giovanni
Federico Donnini
Matteo Duranti
Emanuele Fiandrini
Francesco Maria Follega
Valerio Formato
Fabio Gargano
Francesca Giovacchini
Maura Graziani
Maria Ionica
Roberto Iuppa
Francesco Loparco
Jesús Marín
Samuele Mariotto
Giovanni Marsella
Gustavo Martínez
Manel Martínez
Matteo Martucci
Nicolò Masi
Mario Nicola Mazziotta
Matteo Mergé
Nicola Mori
Riccardo Munini
Riccardo Musenich
Lorenzo Mussolin
Francesco Nozzoli
Alberto Oliva
Giuseppe Osteria
Lorenzo Pacini
Mercedes Paniccia
Paolo Papini
Mark Pearce
Chiara Perrina
Piergiorgio Picozza
Cecilia Pizzolotto
Stanislav Pospíšil
Michele Pozzato
Lucio Quadrani
Ester Ricci
Javier Rico
Lucio Rossi
Enrico Junior Schioppa
Davide Serini
Petr Smolyanskiy
Alessandro Sotgiu
Roberta Sparvoli
Antonio Surdo
Nicola Tomassetti
Valerio Vagelli
Miguel Ángel Velasco
Xin Wu
Paolo Zuccon
Adriani O.
Altomare C.
Ambrosi G.
Azzarello P.
Barbato F.C.T.
Battiston R.
Baudouy B.
Bergmann B.
Berti E.
Bertucci B.
Boezio M.
Bonvicini V.
Bottai S.
Burian P.
Buscemi M.
Cadoux F.
Calvelli V.
Campana D.
Casaus J.
Contin A.
D'alessandro R.
Dam M.
De Mitri I.
de Palma F.
Derome L.
Di Felice V.
Di Giovanni A.
Donnini F.
Duranti M.
Fiandrini E.
Follega F.M.
Formato V.
Gargano F.
Giovacchini F.
Graziani M.
Ionica M.
Iuppa R.
Loparco F.
Marin J.
Mariotto S.
Marsella G.
Martinez G.
Martinez M.
Martucci M.
Masi N.
Mazziotta M.N.
Merge M.
Mori N.
Munini R.
Musenich R.
Mussolin L.
Nozzoli F.
Oliva A.
Osteria G.
Pacini L.
Paniccia M.
Papini P.
Pearce M.
Perrina C.
Picozza P.
Pizzolotto C.
Pospisil S.
Pozzato M.
Quadrani L.
Ricci E.
Rico J.
Rossi L.
Schioppa E.J.
Serini D.
Smolyanskiy P.
Sotgiu A.
Sparvoli R.
Surdo A.
Tomassetti N.
Vagelli V.
Velasco M.A.
Wu X.
Zuccon P.
Département des Accélérateurs, de Cryogénie et de Magnétisme (ex SACM) (DACM)
Institut de Recherches sur les lois Fondamentales de l'Univers (IRFU)
Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay
Laboratoire de Physique Subatomique et de Cosmologie (LPSC)
Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS)-Université Grenoble Alpes (UGA)-Institut polytechnique de Grenoble - Grenoble Institute of Technology (Grenoble INP )
Université Grenoble Alpes (UGA)
Source :
Instruments, Instruments, 2022, 6 (2), pp.19. ⟨10.3390/instruments6020019⟩, Instruments; Volume 6; Issue 2; Pages: 19
Publication Year :
2022

Abstract

International audience; A new generation magnetic spectrometer in space will open the opportunity to investigate the frontiers in direct high-energy cosmic ray measurements and to precisely measure the amount of the rare antimatter component in cosmic rays beyond the reach of current missions. We propose the concept for an Antimatter Large Acceptance Detector In Orbit (ALADInO), designed to take over the legacy of direct measurements of cosmic rays in space performed by PAMELA and AMS-02. ALADInO features technological solutions conceived to overcome the current limitations of magnetic spectrometers in space with a layout that provides an acceptance larger than 10 m sr. A superconducting magnet coupled to precision tracking and time-of-flight systems can provide the required matter–antimatter separation capabilities and rigidity measurement resolution with a Maximum Detectable Rigidity better than 20 TV. The inner 3D-imaging deep calorimeter, designed to maximize the isotropic acceptance of particles, allows for the measurement of cosmic rays up to PeV energies with accurate energy resolution to precisely measure features in the cosmic ray spectra. The operations of ALADInO in the Sun–Earth L2 Lagrangian point for at least 5 years would enable unique revolutionary observations with groundbreaking discovery potentials in the field of astroparticle physics by precision measurements of electrons, positrons, and antiprotons up to 10 TeV and of nuclear cosmic rays up to PeV energies, and by the possible unambiguous detection and measurement of low-energy antideuteron and antihelium components in cosmic rays.

Details

ISSN :
2410390X
Database :
OpenAIRE
Journal :
Instruments, Instruments, 2022, 6 (2), pp.19. ⟨10.3390/instruments6020019⟩, Instruments; Volume 6; Issue 2; Pages: 19
Accession number :
edsair.doi.dedup.....f317eccfde27c26d9cf16a01f78f81c2
Full Text :
https://doi.org/10.3390/instruments6020019⟩