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Solving Maxwell's Equations

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arxiv 2403.11181 v2 pith:IQJO7ETR submitted 2024-03-17 physics.gen-ph

classification physics.gen-ph
keywords equationsmaxwellschrodingersolutionsolvesource-freetheoremderived
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This paper discusses the use of the Riemann-Silberstein vector to solve the source-free Maxwell's equations and obtains novel analytical solutions. The solving process naturally leads to the spinor form of the source-free Maxwell's equations. Several powerful theorems are established to solve this spinor form equation. The Waveguide Solution Theorem provides an elegant way to solve waveguide problems, while The Schrodinger Solution Theorem connects the Maxwell's equations with the two-dimensional Schrodinger equation. By utilizing The Schrodinger Solution Theorem, a precise formula for spatiotemporal diffraction of the Maxwell's equations is derived, which allows for the reconstruction of electromagnetic waves throughout space and time based on the field distribution on the diffraction screen. And finally, by studying some relevant contour integrals, two additional simple but beautiful mathematical theorems that are necessarily satisfied by electromagnetic field in any source-free region are derived.

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  1. RACE-Align: Retrieval-Augmented and Chain-of-Thought Enhanced Preference Alignment for Large Language Models

    cs.CL 2025-06 reject novelty 3.0 of 10

    RACE-Align generates preference pairs from RAG-grounded chain-of-thought answers and applies DPO to align a 1.7B model, showing improved reasoning scores in TCM QA but lacking statistical support.

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