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Paper Citation Record · LEDGER

Exploring the Effect of Basis Rotation on NQS Performance

As of 10 August 2026, this Paper Citation Record lists 38 of 38 outbound references and 1 inbound Pith citation observation for arXiv:2512.17893.

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

pith.paper-citation-record.v1
2512.17893 v2

Coverage vector

measured 38 of 38 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-08-03T15:16:08.353675Z

measured 39 of 39 standing notices

One-hop event checks from named stored sources.

Source: scholarly_work_events, retraction_status_cache, observed 2026-08-09T06:31:02.800959+00:00

measured 1 of 1 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-05-10T07:41:50.196569Z

measured 0 of 1 external citation measurements

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

Source: arxiv_reference, observed 2026-05-10T07:42:06.657524Z

Reference resolution

38 of 38 outbound references displayed

  • verified exact3
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External citation measurements

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Outbound references

Observation b9336056-2032-4fa9-8e6a-21346258f81c · outbound

This paper cites an unresolved cited work.

Exploring the Effect of Basis Rotation on NQS Performance Unresolved cited work

Reference 1

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Observation 9f37dde8-9831-493d-a6ca-8ac40ae6593b · outbound

This paper cites Tuning the hidden-unit ratio (α RBM =M/N) or network depth is crucial, but even well-tuned shallow mod- els can stall when the target lies in a high-curvature region.

Exploring the Effect of Basis Rotation on NQS Performance Tuning the hidden-unit ratio (α RBM =M/N) or network depth is crucial, but even well-tuned shallow mod- els can stall when the target lies in a high-curvature region

Reference 2

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Observation 33077072-c188-4fdb-ad9b-60358b49031c · outbound

This paper cites Conversely, minimizing infidelity directly can become trapped near saddles, as optimization steps shrink in high-curvature valleys.

Exploring the Effect of Basis Rotation on NQS Performance Conversely, minimizing infidelity directly can become trapped near saddles, as optimization steps shrink in high-curvature valleys

Reference 3

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Observation 40e780f8-7767-46bc-9856-27e4316c866b · outbound

This paper cites Regularization (ϵI) mitigates this but does not fully eliminate saddle- point trapping.

Exploring the Effect of Basis Rotation on NQS Performance Regularization (ϵI) mitigates this but does not fully eliminate saddle- point trapping

Reference 4

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Observation cddb259f-b6b6-4b89-b40c-0f4b9bcfde34 · outbound

This paper cites Without pretraining, different random seeds can yield diverse trajectories.

Exploring the Effect of Basis Rotation on NQS Performance Without pretraining, different random seeds can yield diverse trajectories

Reference 5

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Observation c4de6424-dfa3-4378-bbe3-fb05cc729d5b · outbound

This paper cites The power of quantum neural networks.

Exploring the Effect of Basis Rotation on NQS Performance The power of quantum neural networks

Reference 6

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Observation aa825f91-9c72-425b-931e-2bfb0405d08c · outbound

This paper cites Amari and H.

Exploring the Effect of Basis Rotation on NQS Performance Amari and H

Reference 7

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Observation 8ab596b5-a816-4c99-9ac4-7450edb3cb53 · outbound

This paper cites Natural gradient works efficiently in learning.

Exploring the Effect of Basis Rotation on NQS Performance Natural gradient works efficiently in learning

Reference 8

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Observation 85c47237-8be4-451a-9f0c-ee620edcec07 · outbound

This paper cites Baxter.Exactly Solved Models in Statistical Mechanics.

Exploring the Effect of Basis Rotation on NQS Performance Baxter.Exactly Solved Models in Statistical Mechanics

Reference 9

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Observation 7eadf32d-7acc-448f-8ea4-e7a816d8f53a · outbound

This paper cites Pearlmutter, Alexey An- dreyevich Radul, and Jeffrey Mark Siskind.

Exploring the Effect of Basis Rotation on NQS Performance Pearlmutter, Alexey An- dreyevich Radul, and Jeffrey Mark Siskind

Reference 10

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Observation 9ed963b3-c9c0-4220-a7c5-d8845ba5f025 · outbound

This paper cites Quantum Monte Carlo Approaches for Correlated Systems.

Exploring the Effect of Basis Rotation on NQS Performance Quantum Monte Carlo Approaches for Correlated Systems

Reference 11

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Observation dcfe8fac-8cf1-4389-9d88-edcb087b40da · outbound

This paper cites Reconciling modern machine-learning practice and the classical bias–variance trade-off.

Exploring the Effect of Basis Rotation on NQS Performance Reconciling modern machine-learning practice and the classical bias–variance trade-off

Reference 12

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Observation 26db7683-812d-48ac-a137-c8ef6d186d75 · outbound

This paper cites JAX: com- posable transformations of Python+NumPy programs,.

Exploring the Effect of Basis Rotation on NQS Performance JAX: com- posable transformations of Python+NumPy programs,

Reference 13

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Observation 3abc7674-436a-486a-9ad1-363506b10846 · outbound

This paper cites can neural quantum states learn volume-law ground states?.

Exploring the Effect of Basis Rotation on NQS Performance can neural quantum states learn volume-law ground states?

Reference 14

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Observation 60d45ccb-bf43-4775-a2ec-8d27042f4657 · outbound

This paper cites Solving the quan- tum many-body problem with artificial neural networks.

Exploring the Effect of Basis Rotation on NQS Performance Solving the quan- tum many-body problem with artificial neural networks

Reference 15

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Observation b638b35f-24a5-4e53-ab20-46d8d759a0b1 · outbound

This paper cites Empowering deep neural quantum states through efficient optimization.

Exploring the Effect of Basis Rotation on NQS Performance Empowering deep neural quantum states through efficient optimization

Reference 17

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Observation 62e4671f-831a-46f4-9da4-5445771e93a9 · outbound

This paper cites Basis dependence of Neural Quantum States for the Transverse Field Ising Model.

Exploring the Effect of Basis Rotation on NQS Performance Basis dependence of Neural Quantum States for the Transverse Field Ising Model

Reference 18

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Observation f9c08d40-b86e-4502-8bcf-b37031721ae6 · outbound

This paper cites Efficiency of neural quan- tum states in light of the quantum geometric tensor.

Exploring the Effect of Basis Rotation on NQS Performance Efficiency of neural quan- tum states in light of the quantum geometric tensor

Reference 19

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Observation 6b6fafa8-61c8-4291-90a6-fd398722720a · outbound

This paper cites Coles, and Marco Cerezo.

Exploring the Effect of Basis Rotation on NQS Performance Coles, and Marco Cerezo

Reference 20

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Observation 0ebe7ea0-9b9d-41c4-8430-703ab3656c6e · outbound

This paper cites Das Sarma.

Exploring the Effect of Basis Rotation on NQS Performance Das Sarma

Reference 21

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Observation 26c2fe4d-5f30-4fd4-a6ac-3c58c8e0a0a6 · outbound

This paper cites A practical introduction to tensor net- works: Matrix product states and projected entangled pair states.

Exploring the Effect of Basis Rotation on NQS Performance A practical introduction to tensor net- works: Matrix product states and projected entangled pair states

Reference 22

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Observation d977ee6f-4177-4d9b-b7b1-006967fc93ed · outbound

This paper cites An Introduction to Integrable Techniques for One-Dimensional Quantum Systems.

Exploring the Effect of Basis Rotation on NQS Performance An Introduction to Integrable Techniques for One-Dimensional Quantum Systems

Reference 23

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Observation 1e2c41f2-0947-4467-994a-40f571ba20f1 · outbound

This paper cites Sentef, and Dante M.

Exploring the Effect of Basis Rotation on NQS Performance Sentef, and Dante M

Reference 24

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Observation ae77eda9-173f-4bbf-9ebb-79fe6c468fce · outbound

This paper cites Kohn and L.

Exploring the Effect of Basis Rotation on NQS Performance Kohn and L

Reference 25

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Observation 444cdf4c-cdc9-42ce-89c8-72920474fb7e · outbound

This paper cites Computing Quantum Resources using Tensor Cross Interpolation.

Exploring the Effect of Basis Rotation on NQS Performance Computing Quantum Resources using Tensor Cross Interpolation

Reference 26

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Observation 4650ecd6-2d2e-411f-a86e-34fbf0ef60b9 · outbound

This paper cites An iteration method for the solution of the eigenvalue problem of linear differential and inte- gral operators.

Exploring the Effect of Basis Rotation on NQS Performance An iteration method for the solution of the eigenvalue problem of linear differential and inte- gral operators

Reference 27

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Observation e6e6c95f-a708-45cc-809e-f3edfe2d7388 · outbound

This paper cites NetKet 3: Ma- chine Learning Toolbox for Many-Body Quantum Sys- tems.

Exploring the Effect of Basis Rotation on NQS Performance NetKet 3: Ma- chine Learning Toolbox for Many-Body Quantum Sys- tems

Reference 29

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Observation e54edf2f-8fc5-4ded-8db3-0cd82f7dd56f · outbound

This paper cites New insights and perspectives on the natural gradient method.

Exploring the Effect of Basis Rotation on NQS Performance New insights and perspectives on the natural gradient method

Reference 30

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Observation bad826e6-75cf-46fb-90ba-dd33a6f54435 · outbound

This paper cites When can classical neural networks represent quantum states?.

Exploring the Effect of Basis Rotation on NQS Performance When can classical neural networks represent quantum states?

Reference 31

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Observation 39466beb-46a1-409c-a9c0-97f14b89b719 · outbound

This paper cites Revisiting Natural Gradient for Deep Networks.

Exploring the Effect of Basis Rotation on NQS Performance Revisiting Natural Gradient for Deep Networks

Reference 32

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Observation fc442314-9015-4472-9739-30ca112e30d7 · outbound

This paper cites Pei and Stephen R.

Exploring the Effect of Basis Rotation on NQS Performance Pei and Stephen R

Reference 34

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Observation 50856971-6fff-4cdb-bc89-b8a983fb4634 · outbound

This paper cites Roberts, Sho Yaida, and Boris Hanin.

Exploring the Effect of Basis Rotation on NQS Performance Roberts, Sho Yaida, and Boris Hanin

Reference 35

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Observation 1cdb0fc7-9719-4905-a5de-589262d07852 · outbound

This paper cites Quantum natural gradient.

Exploring the Effect of Basis Rotation on NQS Performance Quantum natural gradient

Reference 36

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Observation 6a200284-b512-494c-8e6f-e0ab5d1bdb5a · outbound

This paper cites Codebase release 3.4 for NetKet.SciPostPhys.Codebases, pages 7–r3.4, 2022.

Exploring the Effect of Basis Rotation on NQS Performance Codebase release 3.4 for NetKet.SciPostPhys.Codebases, pages 7–r3.4, 2022

Reference 39

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Observation 9498040e-1b8d-4289-90ac-466b08ba25ed · outbound

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Exploring the Effect of Basis Rotation on NQS Performance Unresolved cited work

Reference 1950

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Observation aaf574b2-e839-456e-9182-934172f1adb2 · outbound

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Exploring the Effect of Basis Rotation on NQS Performance Unresolved cited work

Reference 2018

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Observation 298dad1e-f522-415f-9ecd-80f230c418fc · outbound

This paper cites URLhttp://dx.

Exploring the Effect of Basis Rotation on NQS Performance URLhttp://dx

Reference 3650

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Observation dc0c8ab6-e10e-4017-b5eb-7571f0cef895 · outbound

This paper cites URLhttp://dx.

Exploring the Effect of Basis Rotation on NQS Performance URLhttp://dx

Reference 9203

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Pith citing papers

Observation 921e88eb-47db-4c85-8925-02519d50248e · inbound

Enhancing Neural-Network Variational Monte Carlo through Basis Transformation cites this paper.

Enhancing Neural-Network Variational Monte Carlo through Basis Transformation Exploring the Effect of Basis Rotation on NQS Performance

Reference 60

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arxiv_id, observed 2026-06-09T02:05:22.991333Z

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