English

AMS-100: The Next Generation Magnetic Spectrometer in Space -- An International Science Platform for Physics and Astrophysics at Lagrange Point 2

Instrumentation and Methods for Astrophysics 2019-08-15 v1 High Energy Astrophysical Phenomena

Abstract

The next generation magnetic spectrometer in space, AMS-100, is designed to have a geometrical acceptance of 100m2sr100\,\mathrm{m}^2\,\mathrm{sr} and to be operated for at least ten years at the Sun-Earth Lagrange Point 2. Compared to existing experiments, it will improve the sensitivity for the observation of new phenomena in cosmic rays, and in particular in cosmic antimatter, by at least a factor of 1000. The magnet design is based on high temperature superconductor tapes, which allow the construction of a thin solenoid with a homogeneous magnetic field of 1 Tesla inside. The inner volume is instrumented with a silicon tracker reaching a maximum detectable rigidity of 100 TV and a calorimeter system that is 70 radiation lengths deep, equivalent to four nuclear interaction lengths, which extends the energy reach for cosmic-ray nuclei up to the PeV scale, i.e. beyond the cosmic-ray knee. Covering most of the sky continuously, AMS-100 will detect high-energy gamma rays in the calorimeter system and by pair conversion in the thin solenoid, reconstructed with excellent angular resolution in the silicon tracker.

Keywords

Cite

@article{arxiv.1907.04168,
  title  = {AMS-100: The Next Generation Magnetic Spectrometer in Space -- An International Science Platform for Physics and Astrophysics at Lagrange Point 2},
  author = {Stefan Schael and Alexander Atanasyan and Javier Berdugo and Thomas Bretz and Markus Czupalla and Bernd Dachwald and Philip von Doetinchem and Matteo Duranti and Henning Gast and Waclaw Karpinski and Thomas Kirn and Klaus Lübelsmeyer and Carlos Maña and Pier Simone Marrocchesi and Philipp Mertsch and Igor V. Moskalenko and Thomas Schervan and Michael Schluse and Kai-Uwe Schröder and Arndt Schultz von Dratzig and Carmine Senatore and L. Spies and Scott P. Wakely and Michael Wlochal and Davide Uglietti and Jannik Zimmermann},
  journal= {arXiv preprint arXiv:1907.04168},
  year   = {2019}
}

Comments

26 pages, 15 figures, to be submitted to Nuclear Instruments and Methods in Physics Research Section A. Corresponding author: Stefan Schael