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Absorption of charged particles in perfectly matched layers by optimal damping of the deposited current

Perfectly matched layers (PMLs) are widely used in particle-in-cell simulations, in order to absorb electromagnetic waves that propagate out of the simulation domain. However, when charged particles cross the interface between the simulation domain and the PMLs, a number of numerical artifacts can a...

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Autores principales: Lehe, Remi, Blelly, Aurore, Giacomel, Lorenzo, Jambunathan, Revathi, Vay, Jean-Luc
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevE.106.045306
http://cds.cern.ch/record/2839273
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author Lehe, Remi
Blelly, Aurore
Giacomel, Lorenzo
Jambunathan, Revathi
Vay, Jean-Luc
author_facet Lehe, Remi
Blelly, Aurore
Giacomel, Lorenzo
Jambunathan, Revathi
Vay, Jean-Luc
author_sort Lehe, Remi
collection CERN
description Perfectly matched layers (PMLs) are widely used in particle-in-cell simulations, in order to absorb electromagnetic waves that propagate out of the simulation domain. However, when charged particles cross the interface between the simulation domain and the PMLs, a number of numerical artifacts can arise. In order to mitigate these artifacts, we introduce a PML algorithm whereby the current deposited by the macroparticles in the PML is damped by an analytically derived optimal coefficient. The benefits of this algorithm are illustrated in practical simulations. In particular, it is shown that this algorithm is well suited for particles exiting the box in near-normal incidence, in the sense that the fields behave as if the exiting particle is propagating in an infinite vacuum.
id cern-2839273
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28392732022-11-02T20:53:22Zdoi:10.1103/PhysRevE.106.045306http://cds.cern.ch/record/2839273engLehe, RemiBlelly, AuroreGiacomel, LorenzoJambunathan, RevathiVay, Jean-LucAbsorption of charged particles in perfectly matched layers by optimal damping of the deposited currentphysics.plasm-phphysics.acc-phphysics.comp-phPhysics in GeneralAccelerators and Storage RingsComputing and ComputersPerfectly matched layers (PMLs) are widely used in particle-in-cell simulations, in order to absorb electromagnetic waves that propagate out of the simulation domain. However, when charged particles cross the interface between the simulation domain and the PMLs, a number of numerical artifacts can arise. In order to mitigate these artifacts, we introduce a PML algorithm whereby the current deposited by the macroparticles in the PML is damped by an analytically derived optimal coefficient. The benefits of this algorithm are illustrated in practical simulations. In particular, it is shown that this algorithm is well suited for particles exiting the box in near-normal incidence, in the sense that the fields behave as if the exiting particle is propagating in an infinite vacuum.Perfectly-Matched Layers (PML) are widely used in Particle-In-Cell simulations, in order to absorb electromagnetic waves that propagate out of the simulation domain. However, when charged particles cross the interface between the simulation domain and the PMLs, a number of numerical artifacts can arise. In order to mitigate these artifacts, we introduce a new PML algorithm whereby the current deposited by the macroparticles in the PML is damped by an analytically-derived, optimal coefficient. The benefits of this new algorithm is illustrated in practical simulations.arXiv:2201.09084oai:cds.cern.ch:28392732022
spellingShingle physics.plasm-ph
physics.acc-ph
physics.comp-ph
Physics in General
Accelerators and Storage Rings
Computing and Computers
Lehe, Remi
Blelly, Aurore
Giacomel, Lorenzo
Jambunathan, Revathi
Vay, Jean-Luc
Absorption of charged particles in perfectly matched layers by optimal damping of the deposited current
title Absorption of charged particles in perfectly matched layers by optimal damping of the deposited current
title_full Absorption of charged particles in perfectly matched layers by optimal damping of the deposited current
title_fullStr Absorption of charged particles in perfectly matched layers by optimal damping of the deposited current
title_full_unstemmed Absorption of charged particles in perfectly matched layers by optimal damping of the deposited current
title_short Absorption of charged particles in perfectly matched layers by optimal damping of the deposited current
title_sort absorption of charged particles in perfectly matched layers by optimal damping of the deposited current
topic physics.plasm-ph
physics.acc-ph
physics.comp-ph
Physics in General
Accelerators and Storage Rings
Computing and Computers
url https://dx.doi.org/10.1103/PhysRevE.106.045306
http://cds.cern.ch/record/2839273
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AT giacomellorenzo absorptionofchargedparticlesinperfectlymatchedlayersbyoptimaldampingofthedepositedcurrent
AT jambunathanrevathi absorptionofchargedparticlesinperfectlymatchedlayersbyoptimaldampingofthedepositedcurrent
AT vayjeanluc absorptionofchargedparticlesinperfectlymatchedlayersbyoptimaldampingofthedepositedcurrent