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Paper Citation Record · LEDGER

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics

As of 23 August 2026, this Paper Citation Record lists 42 of 42 outbound references and 0 inbound Pith citation observations for arXiv:2607.04407.

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pith.paper-citation-record.v1
2607.04407 v1

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Outbound references

Observation ffb98997-9d34-43dc-a1d4-f64f32b84368 · outbound

This paper cites Morse and K.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Morse and K

Reference 1

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This paper cites CRC Press, 6 edition, 2016.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics CRC Press, 6 edition, 2016

Reference 2

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This paper cites Springer, New York, 1998.doi:10.1007/b98828.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Springer, New York, 1998.doi:10.1007/b98828

Reference 3

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Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Unresolved cited work

Reference 4

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Observation ff01bb36-bc47-4034-8d7c-d0c47bdb9462 · outbound

This paper cites Revisiting Image Aesthetic Assessment via Self-Supervised Feature Learning.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Revisiting Image Aesthetic Assessment via Self-Supervised Feature Learning

Reference 5

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Observation 04cbbf16-a4d5-43e9-824f-b3cbf96513f1 · outbound

This paper cites Learning nonlinear operators via DeepONet based on the universal approximation theorem of operators.Nature Machine Intelligence, 3:218–229, 2021.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Learning nonlinear operators via DeepONet based on the universal approximation theorem of operators.Nature Machine Intelligence, 3:218–229, 2021

Reference 6

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Observation 2518f963-0a0d-4880-b5bc-48e2fb541712 · outbound

This paper cites Neural operator: Learning maps between function spaces with applications to PDEs.Journal of Machine Learning Research, 24(89):1–97, 2023.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Neural operator: Learning maps between function spaces with applications to PDEs.Journal of Machine Learning Research, 24(89):1–97, 2023

Reference 7

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This paper cites Fourier neural operator for paramet- ricpartialdifferentialequations.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Fourier neural operator for paramet- ricpartialdifferentialequations

Reference 8

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This paper cites Fourier Neural Operator for Parametric Partial Differential Equations.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Fourier Neural Operator for Parametric Partial Differential Equations

Reference 9

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This paper cites Geometry-informed neural operator for large-scale 3d PDEs.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Geometry-informed neural operator for large-scale 3d PDEs

Reference 10

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Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Unresolved cited work

Reference 11

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Observation c2c6e7af-a66e-4dea-a9f0-691464ca8fe0 · outbound

This paper cites Physics-Informed Neural Operator for Learning Partial Differential Equations.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Physics-Informed Neural Operator for Learning Partial Differential Equations

Reference 12

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Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Unresolved cited work

Reference 13

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This paper cites Brunton, Bernd R.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Brunton, Bernd R

Reference 14

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Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Unresolved cited work

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Observation 1cc66955-a2ae-4b8e-bfb4-d6914556e3bc · outbound

This paper cites Qi, Hao Su, Kaichun Mo, and Leonidas J.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Qi, Hao Su, Kaichun Mo, and Leonidas J

Reference 16

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This paper cites Kosiorek, Seungjin Choi, and Yee Whye Teh.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Kosiorek, Seungjin Choi, and Yee Whye Teh

Reference 17

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This paper cites Kernel Neural Operators (KNOs) for Scalable, Memory-efficient, Geometrically-flexible Operator Learning.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Kernel Neural Operators (KNOs) for Scalable, Memory-efficient, Geometrically-flexible Operator Learning

Reference 18

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Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Unresolved cited work

Reference 19

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This paper cites Learning only on boundaries: A physics- informed neural operator for solving parametric partial differential equations in complex geometries, 2024.doi:10.1162/neco_a_01647.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Learning only on boundaries: A physics- informed neural operator for solving parametric partial differential equations in complex geometries, 2024.doi:10.1162/neco_a_01647

Reference 20

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Observation 52c4e61b-51d3-4845-93d4-bff0d852c27f · outbound

This paper cites Boundary integrated neural networks (BINNs) for acoustic radiation and scattering.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Boundary integrated neural networks (BINNs) for acoustic radiation and scattering

Reference 21

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This paper cites Engsig-Karup, and Cheol-Ho Jeong.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Engsig-Karup, and Cheol-Ho Jeong

Reference 22

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Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Engsig-Karup, George Em Karni- adakis, and Cheol-Ho Jeong

Reference 23

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Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Learning Neural Acoustic Fields

Reference 24

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This paper cites Neuralsound: Learning- based modal sound synthesis with acoustic transfer.ACM Transactions on Graphics, 41(4):121:1–121:15, 2022.doi:10.1145/3528223.3530184.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Neuralsound: Learning- based modal sound synthesis with acoustic transfer.ACM Transactions on Graphics, 41(4):121:1–121:15, 2022.doi:10.1145/3528223.3530184

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Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Unresolved cited work

Reference 26

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This paper cites Room impulse response reconstruction with physics-informed deep learning.The Journal of the Acoustical Society of America, 155(2):1048– 1059, 2024.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Room impulse response reconstruction with physics-informed deep learning.The Journal of the Acoustical Society of America, 155(2):1048– 1059, 2024

Reference 27

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Observation 72bf9372-8eb7-48b4-bcc2-6d2e68e882b2 · outbound

This paper cites NAT: Neural acoustic transfer for interactive scenes in real time, 2025.doi:10.1109/TVCG.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics NAT: Neural acoustic transfer for interactive scenes in real time, 2025.doi:10.1109/TVCG

Reference 28

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This paper cites Williams.Fourier Acoustics: Sound Radiation and Nearfield Acoustical Hologra- phy.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Williams.Fourier Acoustics: Sound Radiation and Nearfield Acoustical Hologra- phy

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Observation 779183ca-eaee-460f-af7e-69f4906152ce · outbound

This paper cites Benchmarking preconditioned boundary integral formulations for acoustics.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Benchmarking preconditioned boundary integral formulations for acoustics

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This paper cites Srinivasan, Ben Mildenhall, Sara Fridovich-Keil, Nithin Raghavan, Utkarsh Singhal, Ravi Ramamoorthi, Jonathan T.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Srinivasan, Ben Mildenhall, Sara Fridovich-Keil, Nithin Raghavan, Utkarsh Singhal, Ravi Ramamoorthi, Jonathan T

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Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Unresolved cited work

Reference 32

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This paper cites Theory of the lattice boltzmann method: Dispersion, dissipation, isotropy, galilean invariance, and stability.Physical Review E, 61(6):6546– 6562, 2000.doi:10.1103/PhysRevE.61.6546.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Theory of the lattice boltzmann method: Dispersion, dissipation, isotropy, galilean invariance, and stability.Physical Review E, 61(6):6546– 6562, 2000.doi:10.1103/PhysRevE.61.6546

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Observation 3853e836-f93c-4251-b8d9-e5824cae6aa0 · outbound

This paper cites Multiple-relaxation-time lattice boltzmann models in three dimensions.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Multiple-relaxation-time lattice boltzmann models in three dimensions

Reference 34

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This paper cites Girimaji, and Li-Shi Luo.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Girimaji, and Li-Shi Luo

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This paper cites Chikatamarla, Christos E.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Chikatamarla, Christos E

Reference 36

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Observation e1f66ff6-6759-4a1d-b330-eba30881c205 · outbound

This paper cites Validating the boltz- mann approach to the large-eddy simulations of forced homogeneous incompress- ible turbulence.International Journal of Modern Physics C, page 2750064, 2026.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Validating the boltz- mann approach to the large-eddy simulations of forced homogeneous incompress- ible turbulence.International Journal of Modern Physics C, page 2750064, 2026

Reference 37

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Observation 05efd2b9-6120-4e6c-959f-9acd7ab5a98e · outbound

This paper cites Viscously damped acoustic waves with the lattice boltzmann method.Philosophical Transactions of the Royal Society A, 369(1944):2246–2254, 2011.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Viscously damped acoustic waves with the lattice boltzmann method.Philosophical Transactions of the Royal Society A, 369(1944):2246–2254, 2011

Reference 38

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Observation 5fa91748-98b6-45cc-8e7e-dde3a665e027 · outbound

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Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Unresolved cited work

Reference 39

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Observation d643455c-32a0-469a-ad58-552f882e846a · outbound

This paper cites Optimal low-dispersion low-dissipation LBM schemes for computational aeroacoustics.Journal of Computational Physics, 230(13):5353–5382, 2011.doi:10.1016/j.jcp.2011.03.040.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Optimal low-dispersion low-dissipation LBM schemes for computational aeroacoustics.Journal of Computational Physics, 230(13):5353–5382, 2011.doi:10.1016/j.jcp.2011.03.040

Reference 40

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Observation ad12cab1-7020-43ab-9632-adca465f6004 · outbound

This paper cites Tibshirani.An Introduction to the Bootstrap.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Tibshirani.An Introduction to the Bootstrap

Reference 41

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Observation aa732c50-9f8a-4f20-9cc4-4d3c826944d3 · outbound

This paper cites Learning Mesh-Based Simulation with Graph Networks.

Quadrature-Aware Complex-Linear Neural Operator for Boundary-to-Field Prediction in Resonant Acoustics Learning Mesh-Based Simulation with Graph Networks

Reference 42

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