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arxiv: 1610.09522 · v1 · pith:QL5PE5ATnew · submitted 2016-10-29 · ⚛️ physics.acc-ph · physics.comp-ph

A Fast 3D Poisson Solver with Longitudinal Periodic and Transverse Open Boundary Conditions for Space-Charge Simulations

classification ⚛️ physics.acc-ph physics.comp-ph
keywords computationalboundarylongitudinalmethodpoissonbeamconditionsdomain
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A three-dimensional (3D) Poisson solver with longitudinal periodic and transverse open boundary conditions can have important applications in beam physics of particle accelerators. In this paper, we present a fast efficient method to solve the Poisson equation using a spectral finite-difference method. This method uses a computational domain that contains the charged particle beam only and has a computational complexity of $O(N_u(logN_{mode}))$, where $N_u$ is the total number of unknowns and $N_{mode}$ is the maximum number of longitudinal or azimuthal modes. This saves both the computational time and the memory usage by using an artificial boundary condition in a large extended computational domain.

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