{"total":4,"items":[{"citing_arxiv_id":"2607.07385","ref_index":18,"ref_count":1,"confidence":0.88,"is_internal_anchor":false,"paper_title":"JAX-FVM: A differentiable, entropy-stable finite volume solver on unstructured meshes for compressible flows","primary_cat":"math.NA","submitted_at":"2026-07-08T13:17:00+00:00","verdict":"CONDITIONAL","verdict_confidence":"MODERATE","novelty_score":6.0,"formal_verification":"none","one_line_summary":"JAX-FVM is a differentiable, entropy-stable finite volume solver for 2D compressible Euler/Navier-Stokes equations on unstructured meshes, built in JAX.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null},{"citing_arxiv_id":"2606.13398","ref_index":71,"ref_count":1,"confidence":0.88,"is_internal_anchor":false,"paper_title":"A robust super-time-stepping scheme for Ohmic and ambipolar diffusion","primary_cat":"astro-ph.IM","submitted_at":"2026-06-11T14:30:11+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":7.0,"formal_verification":"none","one_line_summary":"A Runge-Kutta-Gegenbauer super-time-stepping method for stable, efficient handling of anisotropic non-ideal MHD diffusion.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null},{"citing_arxiv_id":"1907.05480","ref_index":20,"ref_count":1,"confidence":0.88,"is_internal_anchor":false,"paper_title":"Simulating the interaction of a non-magnetized planet with the stellar wind produced by a sun-like star using the FLASH Code","primary_cat":"physics.space-ph","submitted_at":"2019-07-11T20:35:57+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":4.0,"formal_verification":"none","one_line_summary":"Adapts FLASH code for MHD rigid body simulations to model non-magnetized planet-stellar wind interactions and examine viscosity influence on flow patterns.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null},{"citing_arxiv_id":"1906.09708","ref_index":67,"ref_count":1,"confidence":0.88,"is_internal_anchor":false,"paper_title":"Development and Application of Numerical Techniques for General-Relativistic Magnetohydrodynamics Simulations of Black Hole Accretion","primary_cat":"astro-ph.HE","submitted_at":"2019-06-24T03:40:43+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":4.0,"formal_verification":"none","one_line_summary":"Implements advanced GRMHD numerical techniques in Athena++ and demonstrates them via simulations of magnetically arrested disks around black holes.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null}],"limit":50,"offset":0}