Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-04T18:48:38.640981Z
Paper Citation Record · LEDGER
As of 7 August 2026, this Paper Citation Record lists 71 of 71 outbound references and 0 inbound Pith citation observations for arXiv:2509.09611.
A citation records a reference. It does not transfer a finding from one paper to another.
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Source: paper_references, paper_reference_links, observed 2026-08-04T18:48:38.640981Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-07T06:34:17.273281+00:00
Pith citing papers itemized under the disclosed page cap.
Source: paper_references, paper_reference_links
A source-named dated measurement, never combined with another source.
Source: cited_works
71 of 71 outbound references displayed
External citation measurements
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Observation 513557b2-27e9-43d5-93ad-0dc9e30e54c0 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Neural Operator: Graph Kernel Network for Partial Differential Equations
Reference 1
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Observation 94578f3c-1ad0-4952-a48b-23cf54238f20 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Representation Equivalent Neural Operators: A Framework for Alias-free Operator Learning
Reference 2
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Observation b3010450-c986-43a6-bc87-f57d153982df · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance A survey of projection-based model reduction methods for parametric dynamical systems.SIAM Review, 57(4):483–531, jan 2015
Reference 3
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Observation 662a26f9-5ef9-4292-bbe8-99e61ca19ccd · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance finite-element
Reference 4
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Observation 4de637a2-bbb1-4d8e-8a95-fd143d7efb07 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Kovachki, and Andrew M
Reference 5
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Observation 3d7673e6-57e4-4eac-adc1-d7fa358ce94c · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Convergence rates for greedy algorithms in reduced basis methods.SIAM Journal on Mathematical Analysis, 43(3):1457–1472, 2011
Reference 6
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Observation 7d20a8be-ed6f-47b8-8f21-12d61c6cd1a1 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Convergence and error control of consistent PINNs for elliptic PDEs
Reference 7
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Observation 0f5272fe-b0eb-47f7-8029-24bd85f7b56f · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Springer, 2008
Reference 8
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Observation fa4f69f6-abcf-478a-b40f-95ab6494fc2f · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Model reduction on manifolds: A differential geometric framework.Physica D: Nonlinear Phenomena, 468:134299, 2024
Reference 9
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Observation 3c0fe897-7ade-4349-acd3-74fe0040c57e · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Physics-informed neural networks (PINNs) for fluid mechanics: A review.Acta Mechanica Sinica, pages 1–12, 2022
Reference 10
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Observation a385a59d-7432-4b06-beb4-c2a9087d1d3f · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Choose a transformer: Fourier or galerkin.Advances in neural information processing systems, 34:24924–24940, 2021
Reference 11
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Observation 8506c088-57a8-41df-a292-66cb1b632d9b · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Machine learning and the physical sciences.Reviews of Modern Physics, 91(4):045002, 2019
Reference 12
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Observation 29430890-a516-4c80-895b-1d4bd5098141 · outbound
Reference 13
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Observation 56a4b852-bbbd-48dc-b976-3c011082818d · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance TGPT-PINN: Nonlinear model reduction with transformed GPT-PINNs.Computer Methods in Applied Mechanics and Engineering, 430:117198, 2024
Reference 14
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Observation 45774395-2e52-4bc1-9c29-c432294ffb6f · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance GPT-PINN: Generative pre-trained physics-informed neural networks toward non-intrusive meta-learning of parametric pdes.Finite Elements in Analysis and Design, 228:104047, 2024
Reference 15
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Observation 99f71243-9c8c-4c03-b99d-595d63243a8e · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance de Hoop, Daniel Zhengyu Huang, Elizabeth Qian, and Andrew M
Reference 16
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Observation b38522e5-9434-41c1-913d-9f0d60e68de8 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Approximation rates of deeponets for learning operators arising from advection–diffusion equations.Neural Networks, 153:411–426, 2022
Reference 17
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Observation 40e83ace-9f12-44e9-b206-b11bd711b19c · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance One-Shot Transfer Learning of Physics-Informed Neural Networks
Reference 18
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Observation f0c56067-1988-427d-80fa-06f40dabcf5c · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Machine-learning-assisted modeling.Physics Today, 74(7):36–41, 2021
Reference 19
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Observation 46c71ca7-7a5c-4296-b656-8da000643d28 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Limitations of physics informed machine learning for nonlinear two-phase transport in porous media.Journal of Machine Learning for Modeling and Computing, 1(1), 2020
Reference 20
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Observation 073f64a2-eee6-440b-bed4-3062099fc347 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Knowledge-based modeling of material behavior with neural networks.Journal of engineering mechanics, 117(1):132–153, 1991
Reference 21
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Observation 405e18e5-b1d5-4e09-86a0-25ba73b576ac · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Autoprogressive training of neural network constitutive models.International Journal for Numerical Methods in Engineering, 42(1):105–126, 1998
Reference 22
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Observation 0789942f-950a-45ad-b674-07539b8635b8 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Loss landscape engineering via data regulation on pinns.Machine Learning with Applications, 12:100464, 2023
Reference 23
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Observation 7719b408-b916-467a-a19d-a623cf78fa3e · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Transfer learning enhanced physics informed neural network for phase-field modeling of fracture.Theoretical and Applied Fracture Mechanics, 106:102447, 2020
Reference 24
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Observation 23b9ba83-3a96-42be-bd29-8ac35b3f9b59 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Physics-informeddeepneural operator networks
Reference 25
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Observation ba6226eb-0905-4737-acc7-81e2e1ae3aac · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Multiwavelet-based operator learning for differential equations.Advances in neural information processing systems, 34:24048–24062, 2021
Reference 26
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Observation 7fb5152e-9ea4-4c01-a80e-b7c9296afe81 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Unresolved cited work
Reference 27
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Observation 32d29955-1800-48f3-b725-85eeb73c707d · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance An equivariant neural operator for developing nonlocal tensorial constitutive models.Journal of Computational Physics, 488:112243, 2023
Reference 28
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Observation 685f6cd0-17e9-4f1d-b2cf-20e92dc4fa55 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Manifoldlearningbaseddata-driven modeling for soft biological tissues.Journal of Biomechanics, 117:110124, 2021
Reference 29
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Observation 60e065ee-e904-4c00-9313-98234a669921 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance SpringerBriefs in Mathematics
Reference 30
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Observation ad11e74f-f276-423f-b958-df15058df50d · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Peridynamic neural operators: A data-driven nonlocal constitutive model for complex material responses.Computer Methods in Applied Mechanics and Engineering, 425:116914, 2024
Reference 31
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Observation ae40657e-e455-482a-a3fb-39bfdb67a7ff · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Physics-informed machine learning.Nature Reviews Physics, 3(6):422–440, 2021
Reference 32
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Observation 157a6de7-3da5-467e-94fa-ceaa57548505 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Meta-learning loss functions of parametric partial differential equations using physics-informed neural networks
Reference 33
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Observation 5e45efbc-5ee4-48f5-8b9b-3b41cdff63f4 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Onuniversalapproximationanderrorbounds for fourier neural operators.Journal of Machine Learning Research, 22(290):1–76, 2021
Reference 34
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Observation 21449623-1b9e-48a3-9245-76fd12e098d8 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Chapter9-Operatorlearning: Algorithms and analysis
Reference 35
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Observation b69eadd9-d476-483c-aefa-5d85a879a9db · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Neural operator: Learning maps between function spaces with applications to PDEs.Journal of Machine Learning Research, 24(89):1–97, 2023
Reference 36
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Observation ac36d249-45af-4e9f-a048-88b4c2b0180b · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Galerkin proper orthogonal decomposition methods for a general equation in fluid dynamics.SIAM J
Reference 37
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Observation 45265537-56da-4cfb-85cd-32360840d276 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Operator learning with PCA-Net: upper and lower complexity bounds.Journal of Machine Learning Research, 24(318):1–67, 2023
Reference 38
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Observation f89d96da-5270-45f2-bdaf-1bc92f8621a1 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Data-drivendesignformetamaterials and multiscale systems: A review.Advanced Materials, 36(8):2305254, 2024
Reference 39
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Observation 02ad2051-047d-420f-9e37-b1edb8b89f94 · outbound
Reference 40
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Observation 8c6cd052-c36b-41b8-b8e4-a0a7b56af6ce · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Multipole graph neural operator for parametric partial differential equations.Advances in Neural Information Processing Systems, 33:NeurIPS 2020, 2020
Reference 41
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Observation 161dfb3a-c20f-44ba-bd96-570faddc107e · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Fourier neural operator for parametric partial differential equations
Reference 42
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Observation 771f0685-3797-4331-8d5b-f3b4988572bb · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Physics-Informed Neural Operator for Learning Partial Differential Equations.ACM / IMS J
Reference 43
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Observation 33a48dd3-2716-40d7-bf22-bd83613eed75 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Domain agnostic fourier neural operators.Advances in Neural Information Processing Systems, 36, 2024
Reference 44
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Observation a94a9946-0e66-481f-bba8-b4a50e81be3d · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Rajanna, Edward W
Reference 45
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Observation 16b501b3-c82b-4993-b11c-a75450e92dae · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Learning nonlinear operators via DeepONet based on the universal approximation theorem of operators.Nature Machine Intelligence, 3(3):218–229, 2021
Reference 46
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Observation 03dfad58-dc2c-4207-a412-f3ae85699242 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance A comprehensive and fair comparison of two neural operators (with practical extensions) based on fair data.Computer Methods in Applied Mechanics and Engineering, 393:114778, 2022
Reference 47
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Observation 08038c40-0606-49a2-bea5-617f03273b7c · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Transolver++: An Accurate Neural Solver for PDEs on Million-Scale Geometries
Reference 48
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Observation 5200fb8e-3f2e-4fa1-96bb-8620014467ad · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance A reduced-basis element method.Journal of scientific computing, 17:447–459, 2002
Reference 49
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Observation aabfd268-fc59-41da-8211-5960bc599bcb · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Weakbaselinesandreportingbiasesleadtooveroptimisminmachine learning for fluid-related partial differential equations.Nature Machine Intelligence, pages 1–14, 2024
Reference 50
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Observation 56232ebd-0af7-47fa-b152-666bb91ac9b5 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Integral Autoencoder Network for Discretization- Invariant Learning.Journal of Machine Learning Research, 23:1–45, 2022
Reference 51
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Observation 63648100-8b05-4b19-9c0c-c17c92b206c7 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Ab initio solution of the many-electron schrödinger equation with deep neural networks.Physical Review Research, 2(3):033429, 2020
Reference 52
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Observation ffba99dc-5a12-4a34-ab0b-6d5fde5c14e6 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Physics- informedneuralnetworkwithtransferlearning(tl-pinn)basedondomainsimilaritymeasureforprediction of nuclear reactor transients.Scientific Reports, 13(1):16840, 2023
Reference 53
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Observation f4c5d729-252c-479e-b1f2-daa237e51da8 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Springer International Publishing, Cham, 2016
Reference 54
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Observation b6e4430d-fcb6-4301-b9da-b67e83f891d9 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Unresolved cited work
Reference 55
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Observation bcc74d4e-5f1d-4701-a6de-400bffeb1253 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Hidden fluid mechanics: Learning velocity and pressure fields from flow visualizations.Science, 367(6481):1026–1030, 2020
Reference 56
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Observation 5d807247-d136-47b5-8390-58d7b9cd7025 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Convolutional Neural Operators for robust and accurate learning of PDEs
Reference 57
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Observation e1c425dc-432c-426c-9047-c19e14d80841 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance U-Net: Convolutional Networks for Biomedical Image Segmentation
Reference 58
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Observation 22d473af-4fc3-4040-a30a-2a2e3bb1cff3 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Hyposvi: Hypocentre inversion with stein variational inference and physics informed neural networks.Geophysical Journal International, 228(1):698–710, 2022
Reference 59
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Observation b7975601-cbd7-4f33-9a08-df0342369320 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Factorized Fourier Neural Operators
Reference 60
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Observation 7043ef48-5e6c-40d3-8dc0-2c8e32af96e6 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Understanding and mitigating gradient flow pathologies in physics-informed neural networks.SIAM Journal on Scientific Computing, 43(5):A3055–A3081, 2021
Reference 61
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Observation 3d83eca6-de0f-4cdb-ad3d-ed966eb2fcb8 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Learning the solution operator of parametric partial differential equations with physics-informed deeponets.Science advances, 7(40):eabi8605, 2021
Reference 62
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Observation 189b1d07-ced9-4fab-9348-80f2f9ece0b3 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance When and why pinns fail to train: A neural tangent kernel perspective.Journal of Computational Physics, 449:110768, 2022
Reference 63
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Observation 319ccc2a-4ab3-4e03-b98a-e14116a976ac · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance U-FNO—An enhanced Fourier neural operator-based deep-learning model for multiphase flow.Advances in Water Resources, 163:104180, 2022
Reference 64
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Observation 6b6628af-56d0-479e-9088-97448cddd745 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Transolver: A fast transformer solver for PDEs on general geometries
Reference 65
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Observation 81bf83bd-e68f-44c2-9e0b-0eafe01fc1a2 · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Transfer learning based physics-informed neural networks for solving inverse problems in engineering structures under different loading scenarios
Reference 66
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Observation bb6247c0-5d9a-499c-9185-ffde0989d44e · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Nonlocal Kernel Network (NKN): a Stable and Resolution-Independent Deep Neural Network
Reference 67
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Observation b8ba24fc-c122-4999-ac2a-318c9368f94b · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Learning deep implicit fourier neural operators (ifnos) with applications to heterogeneous material modeling.Computer Methods in Applied Mechanics and Engineering, 398:115296, 2022
Reference 68
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Observation 8b38c305-5128-49cd-8861-40750cb9657c · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Deep potential molecular dynamics: a scalable model with the accuracy of quantum mechanics.Physical Review Letters, 120(14):143001, 2018
Reference 69
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Observation 1f7bbde4-b414-403a-af57-2cbab64d719f · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance MetaNO: How to transfer your knowledge on learning hidden physics.Computer Methods in Applied Mechanics and Engineering, 417:116280, 2023
Reference 70
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Observation 96a3666d-1dc5-4d1a-8808-dba3c86c061d · outbound
ReBaNO: Reduced Basis Neural Operator Mitigating Generalization Gaps and Achieving Discretization Invariance Alias-free mamba neural operator
Reference 71
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