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Paper Citation Record · LEDGER

Information geometric regularization for computing sensitivities of flows with shocks

As of 13 August 2026, this Paper Citation Record lists 62 of 62 outbound references and 0 inbound Pith citation observations for arXiv:2608.09759.

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2608.09759 v1

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measured 62 of 62 reference resolution

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62 of 62 outbound references displayed

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Outbound references

Observation 7a61c1b7-54f4-4307-a9eb-d04afeb5eb55 · outbound

This paper cites An interior penalty finite element method with discontinuous elements.

Information geometric regularization for computing sensitivities of flows with shocks An interior penalty finite element method with discontinuous elements

Reference 1

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Observation b634df1e-90b3-4c3c-8826-9489b878224d · outbound

This paper cites Hamiltonian in- formation geometric regularization of the compressible Euler equations.

Information geometric regularization for computing sensitivities of flows with shocks Hamiltonian in- formation geometric regularization of the compressible Euler equations

Reference 2

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Observation 7e3ae394-32bc-45b7-a2b3-87d0d5326498 · outbound

This paper cites Shock solutions for the one-dimensional information geometric regularization of compressible flow.

Information geometric regularization for computing sensitivities of flows with shocks Shock solutions for the one-dimensional information geometric regularization of compressible flow

Reference 3

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Observation fff49135-8aef-40b1-b9a4-819759dd45c5 · outbound

This paper cites On a regularization of the compressible Euler equations for an isothermal gas.

Information geometric regularization for computing sensitivities of flows with shocks On a regularization of the compressible Euler equations for an isothermal gas

Reference 4

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Observation 2a4d1e18-24b6-4d1e-916e-edd034606ee8 · outbound

This paper cites Adjoint-based sensitivity of shock-laden flows.

Information geometric regularization for computing sensitivities of flows with shocks Adjoint-based sensitivity of shock-laden flows

Reference 5

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Observation 9196a618-88e2-4f72-a2cc-2d5cc5a8783d · outbound

This paper cites Fast macroscopic forcing method.

Information geometric regularization for computing sensitivities of flows with shocks Fast macroscopic forcing method

Reference 6

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Observation 8cb4828a-6727-4075-aaeb-0515db7924ee · outbound

This paper cites Information geometric regularization of the barotropic Euler equation.

Information geometric regularization for computing sensitivities of flows with shocks Information geometric regularization of the barotropic Euler equation

Reference 7

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Observation f6bc5dc4-3d54-4196-8148-19d05ce56f79 · outbound

This paper cites Information geometric regularization of unidimensional pressureless Euler equations yields global strong solutions.

Information geometric regularization for computing sensitivities of flows with shocks Information geometric regularization of unidimensional pressureless Euler equations yields global strong solutions

Reference 8

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Observation b4add99f-cfab-4ddf-8ce4-2993b85fe010 · outbound

This paper cites An artificial viscosity approach to high order entropy stable discontinuous Galerkin methods.

Information geometric regularization for computing sensitivities of flows with shocks An artificial viscosity approach to high order entropy stable discontinuous Galerkin methods

Reference 9

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Observation dcbbdc9a-1def-4627-935d-619e2da3f435 · outbound

This paper cites Checkpointing schemes for adjoint codes: Application to the meteorolog- ical model Meso-NH.

Information geometric regularization for computing sensitivities of flows with shocks Checkpointing schemes for adjoint codes: Application to the meteorolog- ical model Meso-NH

Reference 10

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Observation 6e8ef13f-1dab-4754-afe9-5f7cc8d99176 · outbound

This paper cites Discontinuous Galerkin meth- ods: theory, computation and applications , volume 11.

Information geometric regularization for computing sensitivities of flows with shocks Discontinuous Galerkin meth- ods: theory, computation and applications , volume 11

Reference 11

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Observation d256fcec-479e-44bb-9e38-2c4139240702 · outbound

This paper cites The local discontinuous Galerkin method for time- dependent convection-diffusion systems.

Information geometric regularization for computing sensitivities of flows with shocks The local discontinuous Galerkin method for time- dependent convection-diffusion systems

Reference 12

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Observation 0e39d0b0-185a-4d77-a12b-6942e6757496 · outbound

This paper cites The free compressible viscous vortex.

Information geometric regularization for computing sensitivities of flows with shocks The free compressible viscous vortex

Reference 13

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Observation 1b14e56d-a3f7-40d9-93c5-4b2e8022cef2 · outbound

This paper cites Hyperviscosity for shock-turbulence interactions.

Information geometric regularization for computing sensitivities of flows with shocks Hyperviscosity for shock-turbulence interactions

Reference 14

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Observation 2b50baa4-832d-42ad-ac49-125352caf255 · outbound

This paper cites Interior penalty procedures for elliptic and parabolic galerkin methods.

Information geometric regularization for computing sensitivities of flows with shocks Interior penalty procedures for elliptic and parabolic galerkin methods

Reference 15

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Observation 82693a29-0796-4bec-8b4e-8980fcddec41 · outbound

This paper cites Discontinuous Galerkin Semidiscretization of the Information Geometric Regularized Compressible Euler Equations.

Information geometric regularization for computing sensitivities of flows with shocks Discontinuous Galerkin Semidiscretization of the Information Geometric Regularized Compressible Euler Equations

Reference 16

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Observation a250b83a-7372-494e-99fc-10e2763d66b5 · outbound

This paper cites Adjoint equations in CFD-duality, boundary conditions and solution behaviour.

Information geometric regularization for computing sensitivities of flows with shocks Adjoint equations in CFD-duality, boundary conditions and solution behaviour

Reference 17

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Observation 4819d9b0-7b40-461f-abb4-2c18b9e68f3b · outbound

This paper cites On the properties of solutions of the adjoint Euler equations.

Information geometric regularization for computing sensitivities of flows with shocks On the properties of solutions of the adjoint Euler equations

Reference 18

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Observation e36c4dd3-eb00-4e24-b621-1fbdbe1b287d · outbound

This paper cites An introduction to the adjoint approach to design.

Information geometric regularization for computing sensitivities of flows with shocks An introduction to the adjoint approach to design

Reference 19

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Observation 8a7ccfe5-0665-4f09-a17c-6c6ee4971230 · outbound

This paper cites Giles and Stefan Ulbrich.

Information geometric regularization for computing sensitivities of flows with shocks Giles and Stefan Ulbrich

Reference 20

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This paper cites Giles and Stefan Ulbrich.

Information geometric regularization for computing sensitivities of flows with shocks Giles and Stefan Ulbrich

Reference 21

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This paper cites Smooth and compactly supported viscous sub-cell shock capturing for discontinuous Galerkin methods.

Information geometric regularization for computing sensitivities of flows with shocks Smooth and compactly supported viscous sub-cell shock capturing for discontinuous Galerkin methods

Reference 22

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Information geometric regularization for computing sensitivities of flows with shocks Evaluating derivatives: principles and techniques of algorithmic differentiation

Reference 23

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Observation c358b2c7-7463-43ff-b0e1-6829d8a3fb74 · outbound

This paper cites Hamiltonian regularisation of the unidimensional barotropic Euler equations.

Information geometric regularization for computing sensitivities of flows with shocks Hamiltonian regularisation of the unidimensional barotropic Euler equations

Reference 24

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This paper cites Global weak solutions of a Hamiltonian regularised Burgers equation.

Information geometric regularization for computing sensitivities of flows with shocks Global weak solutions of a Hamiltonian regularised Burgers equation

Reference 25

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This paper cites Second-order invari- ant domain preserving approximation of the Euler equations using convex limiting.

Information geometric regularization for computing sensitivities of flows with shocks Second-order invari- ant domain preserving approximation of the Euler equations using convex limiting

Reference 26

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Information geometric regularization for computing sensitivities of flows with shocks Entropy viscosity method for nonlinear conservation laws

Reference 27

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This paper cites Strong sta- bility preserving explicit Runge–Kutta methods of maximal effective order.

Information geometric regularization for computing sensitivities of flows with shocks Strong sta- bility preserving explicit Runge–Kutta methods of maximal effective order

Reference 28

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Information geometric regularization for computing sensitivities of flows with shocks High resolution schemes for hyperbolic conservation laws

Reference 29

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Observation c789eb2c-f014-4e2b-aaf0-b40a93f630ee · outbound

This paper cites Uniformly high order accurate essentially non-oscillatory schemes, III.

Information geometric regularization for computing sensitivities of flows with shocks Uniformly high order accurate essentially non-oscillatory schemes, III

Reference 30

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Information geometric regularization for computing sensitivities of flows with shocks Aerodynamic design via control theory

Reference 31

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Information geometric regularization for computing sensitivities of flows with shocks Origins and further development of the Jameson–Schmidt–Turkel scheme

Reference 32

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Information geometric regularization for computing sensitivities of flows with shocks Control theory based airfoil design using the Euler equations

Reference 33

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Information geometric regularization for computing sensitivities of flows with shocks Efficient implementation of weighted ENO schemes

Reference 34

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This paper cites Assessment of localized artificial dif- fusivity scheme for large-eddy simulation of compressible turbulent flows.

Information geometric regularization for computing sensitivities of flows with shocks Assessment of localized artificial dif- fusivity scheme for large-eddy simulation of compressible turbulent flows

Reference 35

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Observation 3ffd8f42-d43f-4a32-85f9-03a41485a8d8 · outbound

This paper cites Essai sur le mouvement d’un fluide visqueux emplissant l’espace.

Information geometric regularization for computing sensitivities of flows with shocks Essai sur le mouvement d’un fluide visqueux emplissant l’espace

Reference 36

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Observation 76d7b81e-37bc-429b-b1da-b34545e5ca77 · outbound

This paper cites Numerical methods for conservation laws , volume.

Information geometric regularization for computing sensitivities of flows with shocks Numerical methods for conservation laws , volume

Reference 37

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Observation 027fd04b-a13f-4436-8122-55a54ff4e320 · outbound

This paper cites Adjoint-based computation of nonlocal eddy viscosity in turbulent channel flow.

Information geometric regularization for computing sensitivities of flows with shocks Adjoint-based computation of nonlocal eddy viscosity in turbulent channel flow

Reference 38

Resolution
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source=pdf_text observed=2026-08-11T11:21:28.786699Z digest=sha256:f2b3a4c5040057fde389d027d29a0b79536d413b788e6c17768f11fed210043e

Observation 8d5eb27d-750c-406b-b190-e54c27379566 · outbound

This paper cites Well-posedness and derivative blow-up for a dispersionless regularized shallow water system.

Information geometric regularization for computing sensitivities of flows with shocks Well-posedness and derivative blow-up for a dispersionless regularized shallow water system

Reference 39

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Observation 32ce0864-892d-4ede-ad64-482f8012f7ff · outbound

This paper cites A note on the dual consistency of the discrete adjoint quasi-one-dimensional Euler equations with cell-centered and cell-vertex central discretizations.

Information geometric regularization for computing sensitivities of flows with shocks A note on the dual consistency of the discrete adjoint quasi-one-dimensional Euler equations with cell-centered and cell-vertex central discretizations

Reference 40

Resolution
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Observation f70e2286-98dd-41c5-a866-c814811f3abe · outbound

This paper cites Watch your adjoints! Lack of mesh convergence in inviscid adjoint solutions.

Information geometric regularization for computing sensitivities of flows with shocks Watch your adjoints! Lack of mesh convergence in inviscid adjoint solutions

Reference 41

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Observation fa6b1c18-844a-4976-b869-34757c4a3572 · outbound

This paper cites Suitability of artificial bulk viscosity for large- eddy simulation of turbulent flows with shocks.

Information geometric regularization for computing sensitivities of flows with shocks Suitability of artificial bulk viscosity for large- eddy simulation of turbulent flows with shocks

Reference 42

Resolution
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No event found in the named queried sources as of 2026-08-13T06:32:02.005865+00:00.

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Observation f7418f60-570d-4f39-a660-d1883d63025a · outbound

This paper cites Instead of rewriting foreign code for machine learn- ing, automatically synthesize fast gradients.

Information geometric regularization for computing sensitivities of flows with shocks Instead of rewriting foreign code for machine learn- ing, automatically synthesize fast gradients

Reference 43

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raw_fallback, observed 2026-08-11T11:21:29.375521Z

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source=pdf_text observed=2026-08-11T11:21:28.806606Z digest=sha256:f3b5288bf1bb850eb7614c7cd94624ebf7c7fa41c9bc44967c9da50ff9465e33

Observation 92c79640-0127-4a9e-a3cf-39e0014415ac · outbound

This paper cites Moses, Valentin Churavy, Ludger Paehler, Jan H¨ uckelheim, Sri Hari Krishna Narayanan, Michel Schanen, and Johannes Doerfert.

Information geometric regularization for computing sensitivities of flows with shocks Moses, Valentin Churavy, Ludger Paehler, Jan H¨ uckelheim, Sri Hari Krishna Narayanan, Michel Schanen, and Johannes Doerfert

Reference 44

Resolution
verified fuzzy
raw_fallback, observed 2026-08-11T11:21:29.361400Z

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Observation b29ad14d-1da1-4bad-a79d-331eced1e489 · outbound

This paper cites Resolvent analysis of shock-laden flows.

Information geometric regularization for computing sensitivities of flows with shocks Resolvent analysis of shock-laden flows

Reference 45

Resolution
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raw_fallback, observed 2026-08-11T11:21:29.347234Z

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Observation fb56671b-40d9-4017-a843-21290552baae · outbound

This paper cites Aerodynamic shape optimization using a Cartesian adjoint method and CAD geometry.

Information geometric regularization for computing sensitivities of flows with shocks Aerodynamic shape optimization using a Cartesian adjoint method and CAD geometry

Reference 46

Resolution
verified fuzzy
raw_fallback, observed 2026-08-11T11:21:29.334202Z

Source-reported events for the cited work

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source=pdf_text observed=2026-08-11T11:21:28.818854Z digest=sha256:514939cc71ae5b17b6a99d38afdc3435f4b78e4b321a06046a97f66bf4783c43

Observation 1357bab9-a0ea-4d0f-a00e-db9ec40f77bf · outbound

This paper cites Sub-cell shock capturing for discontinuous Galerkin meth- ods.

Information geometric regularization for computing sensitivities of flows with shocks Sub-cell shock capturing for discontinuous Galerkin meth- ods

Reference 47

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Observation 7bc68f42-3e26-4810-9f77-9929b115f375 · outbound

This paper cites Weakly singular shock pro- INFORMATION GEOMETRIC REGULARIZATION FOR COMPUTING SENSITIVITIES 21 files for a non-dispersive regularization of shallow-water equations.

Information geometric regularization for computing sensitivities of flows with shocks Weakly singular shock pro- INFORMATION GEOMETRIC REGULARIZATION FOR COMPUTING SENSITIVITIES 21 files for a non-dispersive regularization of shallow-water equations

Reference 48

Resolution
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Observation f495e1f3-fc20-443f-982f-28933313ebdd · outbound

This paper cites Numerical entropy production for central schemes.

Information geometric regularization for computing sensitivities of flows with shocks Numerical entropy production for central schemes

Reference 49

Resolution
verified fuzzy
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Observation 16961124-be1f-496d-b50f-3df374249206 · outbound

This paper cites Bryngelson, and Florian Sch¨ afer.

Information geometric regularization for computing sensitivities of flows with shocks Bryngelson, and Florian Sch¨ afer

Reference 50

Resolution
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raw_fallback, observed 2026-08-11T11:21:29.289956Z

Source-reported events for the cited work

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Observation 53921666-d5fb-4d0d-96ed-9d9d4e668c6a · outbound

This paper cites Forward-Mode Automatic Differentiation in Julia.

Information geometric regularization for computing sensitivities of flows with shocks Forward-Mode Automatic Differentiation in Julia

Reference 51

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unresolved
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source=pdf_text observed=2026-08-11T11:21:28.841191Z digest=sha256:e5c8f3f4665ad42d2542b66b4aee373d3578a9caf6470ec45f3692c08b8b68b8

Observation 6dd51ed7-56b1-435b-bb4a-adde40e94367 · outbound

This paper cites Total-variation-diminishing time discretizations.

Information geometric regularization for computing sensitivities of flows with shocks Total-variation-diminishing time discretizations

Reference 52

Resolution
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raw_fallback, observed 2026-08-11T11:21:29.275287Z

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Observation aa475fa2-99b6-40fd-86f6-76ecdc92a75b · outbound

This paper cites Essentially non-oscillatory and weighted essentially non-oscillatory schemes for hyperbolic conservation laws.

Information geometric regularization for computing sensitivities of flows with shocks Essentially non-oscillatory and weighted essentially non-oscillatory schemes for hyperbolic conservation laws

Reference 53

Resolution
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raw_fallback, observed 2026-08-11T11:21:29.262035Z

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source=pdf_text observed=2026-08-11T11:21:28.850187Z digest=sha256:0a69643f6cabc4ae109a4d3dc3712fac55428563fc2928808036e301c731d625

Observation 778fb5fb-0c85-4693-9b71-cd273a035f13 · outbound

This paper cites Thermodynamically Constrained Information Geometric Regularization for Compressible Flows.

Information geometric regularization for computing sensitivities of flows with shocks Thermodynamically Constrained Information Geometric Regularization for Compressible Flows

Reference 54

Resolution
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source=pdf_text observed=2026-08-11T11:21:28.854175Z digest=sha256:5316d9fc5e53962fbca3a9de3959fc2a77b016440b6fe043ec46b2841381668d

Observation a0cb46f3-ad07-4c34-802b-7753b7a78181 · outbound

This paper cites A sensitivity and adjoint calculus for discontinuous solutions of hyperbolic conservation laws with source terms.SIAM journal on control and optimization, 41(3):740– 797, 2002.

Information geometric regularization for computing sensitivities of flows with shocks A sensitivity and adjoint calculus for discontinuous solutions of hyperbolic conservation laws with source terms.SIAM journal on control and optimization, 41(3):740– 797, 2002

Reference 55

Resolution
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Observation 0cc3124e-2bca-43f3-b9db-5a22a31ad161 · outbound

This paper cites Adjoint-based derivative computations for the optimal control of discontinuous solutions of hyperbolic conservation laws.

Information geometric regularization for computing sensitivities of flows with shocks Adjoint-based derivative computations for the optimal control of discontinuous solutions of hyperbolic conservation laws

Reference 56

Resolution
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raw_fallback, observed 2026-08-11T11:21:29.236663Z

Source-reported events for the cited work

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source=pdf_text observed=2026-08-11T11:21:28.862281Z digest=sha256:23bc44a103dbcb475e403941f101c2a4e8cc1f47e3278d4445b0b6f204902da3

Observation 7e2bb8b9-beff-4e44-babc-7cb5dd8bdf86 · outbound

This paper cites Towards the ultimate conservative difference scheme.

Information geometric regularization for computing sensitivities of flows with shocks Towards the ultimate conservative difference scheme

Reference 57

Resolution
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raw_fallback, observed 2026-08-11T11:21:29.223439Z

Source-reported events for the cited work

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source=pdf_text observed=2026-08-11T11:21:28.866978Z digest=sha256:ab9746e4823753810a21962c9f0c367de06a229e75b26742affe2f2cc13ee010

Observation eecdeff6-bb00-4bdb-b26d-71c658c29544 · outbound

This paper cites A method for the numerical calculation of hydrodynamic shocks.

Information geometric regularization for computing sensitivities of flows with shocks A method for the numerical calculation of hydrodynamic shocks

Reference 58

Resolution
verified fuzzy
raw_fallback, observed 2026-08-11T11:21:29.209094Z

Source-reported events for the cited work

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source=pdf_text observed=2026-08-11T11:21:28.871311Z digest=sha256:d276dda12451394553a2f3f26934cea1248c87712444a7d861c5636d4b832d6a

Observation a1e65d10-365e-4ab2-b866-f47fd6cc262b · outbound

This paper cites Minimal repetition dynamic checkpoint- ing algorithm for unsteady adjoint calculation.

Information geometric regularization for computing sensitivities of flows with shocks Minimal repetition dynamic checkpoint- ing algorithm for unsteady adjoint calculation

Reference 59

Resolution
verified fuzzy
raw_fallback, observed 2026-08-11T11:21:29.192142Z

Source-reported events for the cited work

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source=pdf_text observed=2026-08-11T11:21:28.877907Z digest=sha256:5033b57aed66259688f5d6c90d1753f4d9383b9e06d5e2033503583b033a26e4

Observation 385e6488-ec6f-415f-aa44-c2124eb4f0ba · outbound

This paper cites An elliptic collocation-finite element method with interior penalties.

Information geometric regularization for computing sensitivities of flows with shocks An elliptic collocation-finite element method with interior penalties

Reference 60

Resolution
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raw_fallback, observed 2026-08-11T11:21:29.179999Z

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No event found in the named queried sources as of 2026-08-13T06:32:02.005865+00:00.

source=pdf_text observed=2026-08-11T11:21:28.882431Z digest=sha256:43b20e4ee9312556634e1e430c292deacbd3def2906d6270201d6a7a6ff35db6

Observation 39b9ce23-ee03-4540-bb96-afd107820a3c · outbound

This paper cites Simulating many-engine spacecraft: Exceeding 1 quadrillion degrees of freedom via information geometric regularization.

Information geometric regularization for computing sensitivities of flows with shocks Simulating many-engine spacecraft: Exceeding 1 quadrillion degrees of freedom via information geometric regularization

Reference 61

Resolution
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raw_fallback, observed 2026-08-11T11:21:29.167583Z

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source=pdf_text observed=2026-08-11T11:21:28.886704Z digest=sha256:9463b0d67c9e361455c7d78c4c740d64fe951a03f49ca75eea94be2fbbaab05d

Observation 35fcec5e-f680-4bd7-a0a7-59d2c3afb3b1 · outbound

This paper cites A Compression-Directional Entropic Stress Method for Shock-Regularized Compressible Flow.

Information geometric regularization for computing sensitivities of flows with shocks A Compression-Directional Entropic Stress Method for Shock-Regularized Compressible Flow

Reference 62

Resolution
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local_arxiv, observed 2026-08-11T11:21:28.932779Z

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source=pdf_text observed=2026-08-11T11:21:28.891169Z digest=sha256:c6aa37ec408be7e34be48fa019c9cd3ece4c81c6cb3c3a73906d3aa7a8764327

Pith citing papers

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