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Paper Citation Record · LEDGER

Adaptive numerical simulations with Trixi.jl: A case study of Julia for scientific computing

As of 21 August 2026, this Paper Citation Record lists 0 of 0 outbound references and 17 inbound Pith citation observations for arXiv:2108.06476.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2108.06476 v2

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measured 17 of 17 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-21T06:32:19.484+00:00

measured 17 of 17 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-08-12T16:53:48.416578Z

measured 0 of 1 external citation measurements

A source-named dated measurement, never combined with another source.

Source: arxiv_reference, observed 2026-07-01T00:45:12.508493Z

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Outbound references

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Pith citing papers

Observation 1b2da876-1b4b-4051-809e-ec3a50388492 · inbound

Entropy-stable fluxes for high-order Discontinuous Galerkin simulations of high-enthalpy flows cites this paper.

Entropy-stable fluxes for high-order Discontinuous Galerkin simulations of high-enthalpy flows Adaptive numerical simulations with Trixi.jl: A case study of Julia for scientific computing

Reference 20

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Observation b0088193-b4dd-4c7b-a018-b00509cead4b · inbound

Fusion-DeepONet: A Data-Efficient Neural Operator for Geometry-Dependent Hypersonic and Supersonic Flows cites this paper.

Fusion-DeepONet: A Data-Efficient Neural Operator for Geometry-Dependent Hypersonic and Supersonic Flows Adaptive numerical simulations with Trixi.jl: A case study of Julia for scientific computing

Reference 32

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Observation bd35061c-0ec6-4c32-88a9-35e06beafa3f · inbound

Paired Explicit Relaxation Runge-Kutta Methods: Entropy-Conservative and Entropy-Stable High-Order Optimized Multirate Time Integration cites this paper.

Paired Explicit Relaxation Runge-Kutta Methods: Entropy-Conservative and Entropy-Stable High-Order Optimized Multirate Time Integration Adaptive numerical simulations with Trixi.jl: A case study of Julia for scientific computing

Reference 82

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Observation ab8aab1e-e93e-42a8-b563-5b17edc14f7a · inbound

Entropy Stable Nodal Discontinuous Galerkin Methods via Quadratic Knapsack Limiting cites this paper.

Entropy Stable Nodal Discontinuous Galerkin Methods via Quadratic Knapsack Limiting Adaptive numerical simulations with Trixi.jl: A case study of Julia for scientific computing

Reference 24

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Observation 73983580-3e26-4b6c-838c-3627092aea72 · inbound

Computing Radially-Symmetric Solutions of the Ultra-Relativistic Euler Equations with Entropy-Stable Discontinuous Galerkin Methods cites this paper.

Computing Radially-Symmetric Solutions of the Ultra-Relativistic Euler Equations with Entropy-Stable Discontinuous Galerkin Methods Adaptive numerical simulations with Trixi.jl: A case study of Julia for scientific computing

Reference 55

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Observation 3e439c0f-9d96-4ea7-8c56-704f2bc8506a · inbound

ATHENA: Agentic Team for Hierarchical Evolutionary Numerical Algorithms cites this paper.

ATHENA: Agentic Team for Hierarchical Evolutionary Numerical Algorithms Adaptive numerical simulations with Trixi.jl: A case study of Julia for scientific computing

Reference 41

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arxiv_id, observed 2026-05-17T01:58:51.652353Z

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Observation d991c863-c995-4dd9-870e-4eb6c7804727 · inbound

ATHENA: Agentic Team for Hierarchical Evolutionary Numerical Algorithms cites this paper.

ATHENA: Agentic Team for Hierarchical Evolutionary Numerical Algorithms Adaptive numerical simulations with Trixi.jl: A case study of Julia for scientific computing

Reference 41

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Observation 94a15e0e-2f64-4092-ad8d-9e06bed382c2 · inbound

Entropy correction artificial viscosity for high order DG methods using multiple artificial viscosities cites this paper.

Entropy correction artificial viscosity for high order DG methods using multiple artificial viscosities Adaptive numerical simulations with Trixi.jl: A case study of Julia for scientific computing

Reference 27

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arxiv_id, observed 2026-05-13T18:48:08.063857Z

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Observation 9bb2896e-936a-4b15-8a19-ed849aec390b · inbound

Curvature-Aware Optimization for High-Accuracy Physics-Informed Neural Networks cites this paper.

Curvature-Aware Optimization for High-Accuracy Physics-Informed Neural Networks Adaptive numerical simulations with Trixi.jl: A case study of Julia for scientific computing

Reference 61

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Observation 8df96baf-13ba-4542-91ce-0c44fc8d0d33 · inbound

Admissible Lax-Wendroff Flux Reconstruction Method with Automatic Differentiation on Adaptive Curved Meshes for Relativistic Hydrodynamics cites this paper.

Admissible Lax-Wendroff Flux Reconstruction Method with Automatic Differentiation on Adaptive Curved Meshes for Relativistic Hydrodynamics Adaptive numerical simulations with Trixi.jl: A case study of Julia for scientific computing

Reference 77

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Observation 032ce54f-2cd2-4cfd-9486-211ab9d25645 · inbound

Characterizing electronic scattering rates with transport in multiterminal devices cites this paper.

Characterizing electronic scattering rates with transport in multiterminal devices Adaptive numerical simulations with Trixi.jl: A case study of Julia for scientific computing

Reference 58

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Observation 5566ba03-6564-43fa-8d8b-43b6890cbbed · inbound

Characterizing electronic scattering rates with transport in multiterminal devices cites this paper.

Characterizing electronic scattering rates with transport in multiterminal devices Adaptive numerical simulations with Trixi.jl: A case study of Julia for scientific computing

Reference 58

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Observation e8fb38b0-043c-49ea-96b1-3d8b6a940137 · inbound

Characterizing electronic scattering rates with transport in multiterminal devices cites this paper.

Characterizing electronic scattering rates with transport in multiterminal devices Adaptive numerical simulations with Trixi.jl: A case study of Julia for scientific computing

Reference 58

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Observation 4dafae26-4449-4ed8-adf2-6783b773ae5e · inbound

GRAFT-ATHENA: Self-Improving Agentic Teams for Autonomous Discovery and Evolutionary Numerical Algorithms cites this paper.

GRAFT-ATHENA: Self-Improving Agentic Teams for Autonomous Discovery and Evolutionary Numerical Algorithms Adaptive numerical simulations with Trixi.jl: A case study of Julia for scientific computing

Reference 24

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Observation 3d53da04-f42b-4545-a345-7028886a5a31 · inbound

Convergence analysis of structure-preserving schemes for the multicomponent compressible Euler flows cites this paper.

Convergence analysis of structure-preserving schemes for the multicomponent compressible Euler flows Adaptive numerical simulations with Trixi.jl: A case study of Julia for scientific computing

Reference 40

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Observation e7f63c0f-434b-4b99-98fe-2ea1d8a49f4d · inbound

Gaussian FSBP operators: Comparison and application to numerical methods for hyperbolic conservation laws cites this paper.

Gaussian FSBP operators: Comparison and application to numerical methods for hyperbolic conservation laws Adaptive numerical simulations with Trixi.jl: A case study of Julia for scientific computing

Reference 218

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Observation b8427755-a0dc-4f3a-827a-17cf511a4a54 · inbound

Adaptive Multiphysics Coupling for Hyperbolic Systems cites this paper.

Adaptive Multiphysics Coupling for Hyperbolic Systems Adaptive numerical simulations with Trixi.jl: A case study of Julia for scientific computing

Reference 5

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