An explicit, energy-conserving particle-in-cell scheme for relativistic plasmas
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arXiv
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| Format: | Preprint |
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2026
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| _version_ | 1866914578436194304 |
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| author | Ricketson, Lee Hu, Jingwei |
| author_facet | Ricketson, Lee Hu, Jingwei |
| contents | We extend the recently-developed explicit, energy-conserving particle-in-cell (PIC) scheme of [1] to the relativistic Vlasov-Maxwell system. As in the non-relativistic case, the method is built on an optimization problem that is analytically solvable, local to each particle, and designed to enforce exact energy conservation. Although the solution to this optimization problem is not guaranteed to be real, we show that such instances are rare enough for practical simulation parameters to permit dramatic improvements in energy conservation over traditional explicit PIC schemes. We show that, as in the non-relativistic case, the scheme is compatible with popular field-solvers for electromagnetic PIC schemes, including the Yee/FDTD and pseudo-spectral analytic time-domain (PSATD) methods. The scheme is verified on standard relativistic test problems, where its conservation properties are confirmed. |
| format | Preprint |
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arxiv_https___arxiv_org_abs_2605_18542 |
| institution | arXiv |
| publishDate | 2026 |
| record_format | arxiv |
| spellingShingle | An explicit, energy-conserving particle-in-cell scheme for relativistic plasmas Ricketson, Lee Hu, Jingwei Plasma Physics Numerical Analysis Mathematical Physics We extend the recently-developed explicit, energy-conserving particle-in-cell (PIC) scheme of [1] to the relativistic Vlasov-Maxwell system. As in the non-relativistic case, the method is built on an optimization problem that is analytically solvable, local to each particle, and designed to enforce exact energy conservation. Although the solution to this optimization problem is not guaranteed to be real, we show that such instances are rare enough for practical simulation parameters to permit dramatic improvements in energy conservation over traditional explicit PIC schemes. We show that, as in the non-relativistic case, the scheme is compatible with popular field-solvers for electromagnetic PIC schemes, including the Yee/FDTD and pseudo-spectral analytic time-domain (PSATD) methods. The scheme is verified on standard relativistic test problems, where its conservation properties are confirmed. |
| title | An explicit, energy-conserving particle-in-cell scheme for relativistic plasmas |
| topic | Plasma Physics Numerical Analysis Mathematical Physics |
| url | https://arxiv.org/abs/2605.18542 |