Abstract <p>This article explores the application of machine learning techniques to the isochronization of the magnetic field in the MSC 230 isochronous cyclotron. The primary objective is to reduce the computational effort typically required for adjusting the magnet geometry in order to achieve isochronicity. By predicting the necessary modifications to the magnet’s geometry, our approach aims to streamline the iterative process. We compare several machine learning models against traditional methods, demonstrating their potential to reduce the number of iterations needed.</p>

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Machine Learning for Cyclotron Magnetic Field Isochronization

  • I. D. Lyapin,
  • O. V. Karamyshev

摘要

Abstract

This article explores the application of machine learning techniques to the isochronization of the magnetic field in the MSC 230 isochronous cyclotron. The primary objective is to reduce the computational effort typically required for adjusting the magnet geometry in order to achieve isochronicity. By predicting the necessary modifications to the magnet’s geometry, our approach aims to streamline the iterative process. We compare several machine learning models against traditional methods, demonstrating their potential to reduce the number of iterations needed.