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Paper Citation Record · LEDGER

Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

As of 19 August 2026, this Paper Citation Record lists 0 of 0 outbound references and 29 inbound Pith citation observations for arXiv:2501.05694.

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

pith.paper-citation-record.v1
2501.05694 v1

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measured 29 of 29 standing notices

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Source: scholarly_work_events, retraction_status_cache, observed 2026-08-19T06:32:44.657259+00:00

measured 29 of 29 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-08-16T05:03:26.629112Z

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Source: pith, observed 2026-07-10T22:07:37.589971Z

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Pith citing papers

Observation d31c3d88-e886-4de2-8d67-82fa0eda723c · inbound

Coherently mitigating boson samplers with stochastic errors cites this paper.

Coherently mitigating boson samplers with stochastic errors Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 28

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Observation 13a35d66-cc1f-4a19-86e8-54f1090efe4a · inbound

Regularizing quantum loss landscapes by noise injection cites this paper.

Regularizing quantum loss landscapes by noise injection Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 50

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Observation f52db182-51ac-4ceb-a3bf-12f9c890e5f7 · inbound

Pauli Propagation: A Computational Framework for Simulating Quantum Systems cites this paper.

Pauli Propagation: A Computational Framework for Simulating Quantum Systems Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 74

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Observation 1fdd8d64-2b76-464b-9e39-a602a38b76b7 · inbound

Faster Probabilistic Error Cancellation cites this paper.

Faster Probabilistic Error Cancellation Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 30

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Observation 5f78c2de-337e-4a90-a383-83845fc7e7bb · inbound

Mitigating errors in state preparation and measurement with noncomputational states cites this paper.

Mitigating errors in state preparation and measurement with noncomputational states Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 10

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Observation 3b34a2c7-0366-4161-87be-4674761000e4 · inbound

Out of Tune: Demystifying Noise-Effects on Quantum Fourier Models cites this paper.

Out of Tune: Demystifying Noise-Effects on Quantum Fourier Models Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 51

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Observation 4a1348d0-f813-4ee4-94d0-dda360ec2d92 · inbound

A Framework for Quantum Advantage cites this paper.

A Framework for Quantum Advantage Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 71

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Observation 3da49fe3-5baa-4da4-909d-5803df63f094 · inbound

Quantum Error Mitigation by Global Randomized Error Cancellation for Adiabatic Evolution in the Schwinger Model cites this paper.

Quantum Error Mitigation by Global Randomized Error Cancellation for Adiabatic Evolution in the Schwinger Model Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 24

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Observation 5fba45ff-ab47-4b7b-a346-a5d906ec1307 · inbound

Decomposition of multi-qutrit gates generated by Weyl-Heisenberg strings cites this paper.

Decomposition of multi-qutrit gates generated by Weyl-Heisenberg strings Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 2

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Observation b672ede1-aca2-4ba2-9860-3bfd10fbe8e3 · inbound

Quantum Computational-Sensing Advantage cites this paper.

Quantum Computational-Sensing Advantage Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 12

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Observation c09409ed-9a86-4325-a5b9-d5c1d695a912 · inbound

Pitfalls when tackling the exponential concentration of parameterized quantum models cites this paper.

Pitfalls when tackling the exponential concentration of parameterized quantum models Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 18

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Observation ee1d6d47-69ba-4526-b220-061b3199910a · inbound

Swap Network Augmented Ans\"atze on Arbitrary Connectivity cites this paper.

Swap Network Augmented Ans\"atze on Arbitrary Connectivity Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 33

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arxiv_id, observed 2026-05-19T02:06:58.583005Z

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No event found in the named queried sources as of 2026-08-19T06:32:44.657259+00:00.

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Observation cbf64e8b-6bb6-4d5d-bdc6-e0dae7a73909 · inbound

The vast world of quantum advantage cites this paper.

The vast world of quantum advantage Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 43

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Observation b056095a-01bc-45cb-ac54-caa371007cfe · inbound

Space and Time Cost of Continuous Rotations in Surface Codes cites this paper.

Space and Time Cost of Continuous Rotations in Surface Codes Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 1

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Observation bd6269ab-2bbd-47af-8315-a3361a228779 · inbound

Reliable high-accuracy error mitigation for utility-scale quantum circuits cites this paper.

Reliable high-accuracy error mitigation for utility-scale quantum circuits Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 42

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Observation 163997ad-cd45-4e5e-b3c7-2e655ee90d69 · inbound

Universal Quantum Error Mitigation via Random Inverse Depolarizing Approximation cites this paper.

Universal Quantum Error Mitigation via Random Inverse Depolarizing Approximation Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 13

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Observation 1faeb083-2dbb-4480-a292-eb3e538bf1e7 · inbound

Mind the gaps: The fraught road to quantum advantage cites this paper.

Mind the gaps: The fraught road to quantum advantage Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 84

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arxiv_id, observed 2026-05-18T01:51:39.685097Z

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Observation b5f48697-d91a-48f9-8c7c-2399603aead9 · inbound

Mind the gaps: The fraught road to quantum advantage cites this paper.

Mind the gaps: The fraught road to quantum advantage Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 84

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arxiv_id, observed 2026-05-22T13:11:34.788879Z

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Observation aeabc5f2-ee86-4e06-a467-686d8a0fe7a1 · inbound

Clifford Volume and Free Fermion Volume: Complementary Scalable Benchmarks for Quantum Computers cites this paper.

Clifford Volume and Free Fermion Volume: Complementary Scalable Benchmarks for Quantum Computers Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 31

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Observation b133dcde-edd0-4ef2-84c1-4e05a320bdb3 · inbound

Syndrome aware mitigation of logical errors cites this paper.

Syndrome aware mitigation of logical errors Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 61

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Observation fe4d000c-78b1-4ccd-bc0a-621355395935 · inbound

Low-Resource Quantum Energy Gap Estimation via Randomization cites this paper.

Low-Resource Quantum Energy Gap Estimation via Randomization Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 18

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Observation 9363c5c7-d36a-4484-a38b-bbe7ac392281 · inbound

Hybrid physical/logical zero-noise extrapolation with limited logical executions cites this paper.

Hybrid physical/logical zero-noise extrapolation with limited logical executions Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 32

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Observation 5e5be318-29f8-4a5c-98d0-3e7c01d588d5 · inbound

Hybrid physical/logical zero-noise extrapolation with limited logical executions cites this paper.

Hybrid physical/logical zero-noise extrapolation with limited logical executions Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 22

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Observation b25dcce8-3f9c-4b21-b361-24176e56da06 · inbound

Replay-buffer engineering for noise-robust quantum circuit optimization cites this paper.

Replay-buffer engineering for noise-robust quantum circuit optimization Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 12

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Observation fdf73cb3-3bfb-4dc1-b71b-3f6c123e331e · inbound

Local tensor-train surrogates for quantum learning models cites this paper.

Local tensor-train surrogates for quantum learning models Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 21

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Observation 70d65a11-2bdb-4316-afa3-3521c809123f · inbound

Error Mitigation in Bosonic Systems via Virtual Distillation cites this paper.

Error Mitigation in Bosonic Systems via Virtual Distillation Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 4

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Observation 4164a7e5-2c0c-49f1-a7ad-67afaba1375f · inbound

Feynman's clock and hierarchy-informed sampling for quantum error mitigation cites this paper.

Feynman's clock and hierarchy-informed sampling for quantum error mitigation Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 39

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Observation 4e27d123-6a69-4009-93b4-569628a88b30 · inbound

Orthogonal Quantum Krylov Diagonalisation cites this paper.

Orthogonal Quantum Krylov Diagonalisation Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 26

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Observation 4b258120-084f-4a9b-98df-a77bfee3401d · inbound

Orthogonal Quantum Krylov Diagonalisation cites this paper.

Orthogonal Quantum Krylov Diagonalisation Myths around quantum computation before full fault tolerance: What no-go theorems rule out and what they don't

Reference 26

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