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Related papers: Gamma-Ray and AntiMatter Survey(GRAMS) experiment

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GRAMS (Gamma-Ray and AntiMatter Survey) is a novel project that can simultaneously target both astrophysical observations with MeV gamma rays and an indirect dark matter search with antimatter. The GRAMS instrument is designed with a…

High Energy Astrophysical Phenomena · Physics 2019-12-06 Tsuguo Aramaki , Per Hansson Adrian , Georgia Karagiorgi , Hirokazu Odaka

The Gamma-Ray and AntiMatter Survey (GRAMS) project is a proposed next-generation balloon/satellite mission targeting both MeV gamma-ray observations and antimatter-based dark matter searches. A cost-effective, large-scale Liquid Argon Time…

The Gamma-Ray and AntiMatter Survey (GRAMS) is a next-generation balloon/satellite mission utilizing a Liquid Argon Time Projection Chamber (LArTPC) detector to measure both MeV gamma rays and antinuclei produced by dark matter annihilation…

GRAMS (Gamma-Ray and AntiMatter Survey) is a next-generation balloon/satellite experiment utilizing a LArTPC (Liquid Argon Time Projection Chamber), to simultaneously target astrophysical observations of cosmic MeV gamma-rays and conduct an…

The General AntiParticle Spectrometer (GAPS) is a balloon-borne instrument designed to detect cosmic-ray antimatter using the novel exotic atom technique, obviating the strong magnetic fields required by experiments like AMS, PAMELA, or…

The energy range between about 100 keV and 1 GeV is of interest for a vast class of astrophysical topics. In particular, (1) it is the missing ingredient for understanding extreme processes in the multi-messenger era; (2) it allows…

Gamma-ray Astronomy studies cosmic accelerators through their electromagnetic radiation in the energy range between ~100 MeV and ~100 TeV. The present most sensitive observations in this energy band are performed, from space, by the Large…

High Energy Astrophysical Phenomena · Physics 2011-11-29 Javier Rico

A sensitive survey of the MeV gamma-ray sky is needed to understand important astrophysical problems such as gamma-ray bursts in the early universe, progenitors of Type Ia supernovae, and the nature of dark matter. However, the study has…

We propose a new imaging gamma-ray detector in the MeV region. By measuring the directions and energies of not only a scattered gamma ray but also a recoil electron, the direction of an incident gamma ray would be essentially reconstructed…

The astrophysics community is considering plans for a variety of gamma-ray telescopes (including ACT and GRIPS) in the energy range 1--100 MeV, which can fill in the so-called "MeV gap" in current sensitivity. We investigate the utility of…

Cosmology and Nongalactic Astrophysics · Physics 2015-09-15 Kimberly K. Boddy , Jason Kumar

Aimed at progress in mega-electron volt (MeV) gamma-ray astronomy, which has not yet been well-explored, Compton telescope missions with a variety of detector concepts have been proposed so far. One of the key techniques for these future…

An advanced Compton telescope appears to be the best instrument concept for the next generation gamma-ray space observatory in the MeV range. A first prototype of advanced Compton telescope is being developed to match the constraints of a…

Instrumentation and Methods for Astrophysics · Physics 2020-02-27 Adrien Laviron , Valentin Gourlaouen , Clarisse Hamadache , Corentin Hiver , Jürgen Kiener , Jean Peyré , Vincent Tatischeff

We describe the potential of GRIPS, a future MeV mission. The Gamma-Ray Imaging, Polarimetry and Spectroscopy ("GRIPS") concept combines a Compton and pair telescope, and will be a very sensitive polarimeter. GRIPS would perform a…

High Energy Astrophysical Phenomena · Physics 2022-03-02 J. Greiner , G. Kanbach , K. Mannheim

Gamma-rays, the most energetic photons, carry information from the far reaches of extragalactic space with minimal interaction or loss of information. They bring messages about particle acceleration in environments so extreme they cannot be…

High Energy Astrophysical Phenomena · Physics 2022-03-15 Kristi Engel , Jordan Goodman , Petra Huentemeyer , Carolyn Kierans , Tiffany R. Lewis , Michela Negro , Marcos Santander , David A. Williams , Alice Allen , Tsuguo Aramaki , Rafael Alves Batista , Mathieu Benoit , Peter Bloser , Jennifer Bohon , Aleksey E. Bolotnikov , Isabella Brewer , Michael S. Briggs , Chad Brisbois , J. Michael Burgess , Eric Burns , Regina Caputo , Gabriella A. Carini , S. Bradley Cenko , Eric Charles , Stefano Ciprini , Valerio D'Elia , Tansu Daylan , James Distel , Axel Donath , Wade Duvall , Henrike Fleischhack , Corinne Fletcher , Wen Fe Fong , Dario Gasparrini , Marco Giardino , Adam Goldstein , Sean Griffin , J. Eric Grove , Rachel Hamburg , J. Patrick Harding , Jeremy Hare , Boyan Hristov , C. Michelle Hui , Tess Jaffe , Pete Jenke , Oleg Kargaltsev , Christopher M. Karwin , Matthew Kerr , Dongsung Kim , Daniel Kocevski , John Krizmanic , Ranjan Laha , Niccolo Di Lalla , Jason Legere , Cristina Leto , Richard Leys , Fabrizio Lucarelli , Israel Martinez-Castellanos , Alessandro Maselli , M. Nicola Mazziotta , Mark McConnell , Julie McEnery , Jessica Metcalfe , Manuel Meyer , Alexander A. Moiseev , Reshmi Mukherjee , Michela Negro , Keiichi Ogasawara , Nicola Omodei , Ivan Peric , Jeremy S. Perkins , Matteo Perri , Carlotta Pittori , Gianluca Polenta , Daniel Poulson , Robert Preece , Giacomo Principe , Judith L. Racusin , Oliver Roberts , Nicholas L. Rodd , Peter Shawhan , Thomas Shutt , Clio Sleator , Alan Smale , John Smedley , Jacob R. Smith , Jay Tasson , Peter Teuben , John Tomsick , Peter Veres , Francesco Verrecchia , Zorawar Wadiasingh , Colleen A. Wilson-Hodge , Joshua Wood , Richard S. Woolf , Hui Yang , Bing Zhang , Haocheng Zhang , Andreas Zoglauer

A prototype of the MeV gamma-ray imaging camera based on the full reconstruction of the Compton process has been developed. This camera consists of a micro-TPC that is a gaseous Time Projection Chamber (TPC) and scintillation cameras. With…

The Very Large Area gamma-ray Space Telescope (VLAST) is a mission concept proposed to detect gamma-ray photons through both the Compton scattering and electron-positron pair production mechanisms, enabling the detection of photons with…

Instrumentation and Methods for Astrophysics · Physics 2024-09-02 Xu Pan , Wei Jiang , Chuan Yue , Shi-Jun Lei , Yu-Xin Cui , Qiang Yuan

newASTROGAM is a breakthrough mission concept for the study of the non-thermal Universe from space with gamma rays in the energy range from 15 keV to 3 GeV. It is based on advanced space-proven detector technologies, which will achieve…

Instrumentation and Methods for Astrophysics · Physics 2025-07-14 D. Berge , M. N. Mazziotta , M. Tavani , V. Tatischeff , U. Oberlack

The GammaTPC is an MeV-scale single-phase liquid argon time-projection-chamber gamma-ray telescope concept with a novel dual-scale pixel-based charge-readout system. It promises to enable a significant improvement in sensitivity to…

Instrumentation and Methods for Astrophysics · Physics 2023-01-25 M. Buuck , A. Mishra , E. Charles , N. Di Lalla , O. Hitchcock , M. E. Monzani , N. Omodei , T. Shutt

This thesis discusses two different approaches for the measurement of cosmic-ray antiparticles in the GeV to TeV energy range. The first part of this thesis discusses the prospects of antiparticle flux measurements with the proposed PEBS…

Instrumentation and Methods for Astrophysics · Physics 2009-09-15 Ph. von Doetinchem

One of the scientific goals of the main instrument of GLAST is the study of Gamma-Ray Bursts (GRBs) in the energy range from ~20 MeV to ~300 GeV. In order to extend the energy measurement towards lower energies a secondary instrument, the…

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