Physical Review Accelerators and Beams (Apr 2022)

Optimization of flat to round transformers with self-fields using adjoint techniques

  • L. Dovlatyan,
  • B. L. Beaudoin,
  • S. Bernal,
  • I. Haber,
  • D. Sutter,
  • T. M. Antonsen, Jr.

DOI
https://doi.org/10.1103/PhysRevAccelBeams.25.044002
Journal volume & issue
Vol. 25, no. 4
p. 044002

Abstract

Read online Read online

A continuous system of moment equations is introduced that models the transverse dynamics of a beam of charged particles as it passes through an arbitrary lattice of quadrupoles and solenoids in the presence of self-fields. Then, figures of merit are introduced specifying system characteristics to be optimized. The resulting model is used to optimize the parameters of the lattice elements of a flat to round transformer with self-fields, as could be applied in electron cooling. Results are shown for a case of no self-fields and two cases with self-fields. The optimization is based on a gradient descent algorithm in which the gradient is calculated using adjoint methods that prove to be very computationally efficient. Two figures of merit are studied and compared: one emphasizing radial force balance in the solenoid, the other emphasizing minimization of transverse beam energy in the solenoid.