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January 22, 2026JACOW0 citationsOpen Access

Design studies of a retarding potential energy analyser (RPEA) for low-energy antimatter experiments

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BRBharat Singh RawatNKNarender KumarSCSruthy Chandran

Key Points

  • The central aim is to design and optimize a retarding potential energy analyser for low-energy antimatter experiments.
  • Conducted conceptual design studies of a novel retarding potential energy analyser (RPEA) for low-energy antimatter beams.
  • Utilized simulation tools such as CST studio and G4Beamline to analyze and optimize the RPEA geometry.
  • Considered various parameters like beam characteristics and collector geometry in the design process.
  • The proposed RPEA can measure energy and current of low-energy antiproton and positron bunches with promising energy resolution.
  • Further studies are needed to evaluate its effectiveness in practical applications.

Abstract

Retarding Potential Energy Analysers (RPEAs) are widely used diagnostic instruments for measuring energy distribution of charged particle beams. In this work we will discuss the conceptual design studies of a novel RPEA for low-energy antimatter beams (antiprotons/positrons). Simulation tools such as CST studio and G4Beamline were used for studying the prototype RPEA and to optimize its geometry for considering different parameters such as, beam characteristics, collector geometry, the losses occurring due to secondary electrons and annihilation, grid design etc. The proposed diagnostic can offer the potential for measuring the energy and current of low-energy (1–10 keV) antiproton/positron bunches in experiments such as AEgIS, with promising energy resolution. However, further detailed studies are required to assess its viability for implementation in a practical detector system.

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Cite This Study

Rawat et al. (2026) studied this question.

synapsesocial.com/papers/6971be10642b1836717e2aa8https://doi.org/10.18429/jacow-ibic2025-mopmo02
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