Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-01T05:20:57.747542Z
Paper Citation Record · LEDGER
As of 9 August 2026, this Paper Citation Record lists 46 of 46 outbound references and 0 inbound Pith citation observations for arXiv:2607.22276.
A citation records a reference. It does not transfer a finding from one paper to another.
Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-01T05:20:57.747542Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-09T06:31:02.800959+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
46 of 46 outbound references displayed
External citation measurements
No source-named external measurement is stored.
Observation a516a909-fc25-4cb3-89ab-97aa96a8a74a · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Fault-tolerant quantum computation with constant error rate,
Reference 1
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Observation 824b2b1d-43c8-4e87-80fd-1ebd45d04f93 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Resilient quantum computation,
Reference 2
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Observation 1abab131-bcf7-4255-a1a7-f77a05ea72b0 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Quantum computations: algorithms and error correction,
Reference 3
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Observation 50f4d040-6408-46f1-ba9a-dff22e60c89b · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Is quantum mechanics useful?
Reference 4
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Observation 1e56e7ac-04ab-4ee1-94a6-10f4a195a40f · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Maintaining coherence in quantum computers,
Reference 5
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Observation 0d2f585c-24cb-4c55-8f62-010b1ae1196e · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Internal consistency of fault-tolerant quantum error correction in light of rigorous derivations of the quantum Markovian limit,
Reference 6
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Unavailable: canonical work link unavailable.
Observation 412ed015-6fa0-4b02-91de-63880c59c78d · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability The argument against quantum computers,
Reference 7
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Observation dc802095-31ef-467b-9d4b-96cef6a68d51 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Multilinear Formulas and Skepticism of Quantum Computing
Reference 8
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Unavailable: canonical work link unavailable.
Observation 66daa9b3-deb8-4d81-943c-0ae5718ea1d6 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Quantum error correction below the surface code threshold,
Reference 9
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Observation 1d42b467-ac27-45db-80c5-62d39698340d · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Logical quantum processor based on reconfigurable atom arrays,
Reference 10
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Unavailable: canonical work link unavailable.
Observation 45a47425-1891-4bec-81e9-184eaf7bbcd1 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Experimental quantum error correction below the surface code threshold via all-microwave leakage suppression,
Reference 11
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Unavailable: canonical work link unavailable.
Observation 2a63e747-2987-4e31-a291-adfdbf0d0f7e · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Counting Steps: A New Approach to Objective Probability in Physics
Reference 12
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Observation d8e4e892-18a2-4fb3-a760-a9ab3f21d53a · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Pitowsky,Quantum Probability — Quantum Logic, Lecture Notes in Physics, vol
Reference 13
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Unavailable: canonical work link unavailable.
Observation 90078f2d-2b9f-40fe-bf8e-b847b5500f94 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability On the computational complexity of algorithms,
Reference 14
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Unavailable: canonical work link unavailable.
Observation 67797053-2bdf-4fb8-916f-a45270ed69cd · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Measuring energy, estimating Hamiltonians, and the time– energy uncertainty relation,
Reference 15
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Unavailable: canonical work link unavailable.
Observation ef2a9799-96da-4102-af23-1285464c5baf · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Surface codes: towards practical large-scale quantum computation,
Reference 16
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Unavailable: canonical work link unavailable.
Observation bcef75e5-e20b-4aa3-bc2b-3cf0e1884f33 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Quantum Energetic Advantage before Computational Advantage in Boson Sampling
Reference 17
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Unavailable: canonical work link unavailable.
Observation eca79c6c-7b21-4896-8144-f73d6138a945 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Optimizing quantum gates towards the scale of logical qubits,
Reference 18
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Unavailable: canonical work link unavailable.
Observation 9be706fd-48cb-44c7-be2a-5002c863c853 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Reinforcement Learning Control of Quantum Error Correction
Reference 19
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Observation 7e0925dd-cfa4-4a40-ae01-23e9abe3c11d · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability CaliQEC: in-situ qubit calibration for surface code quantum error correction,
Reference 20
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Unavailable: canonical work link unavailable.
Observation 1152f624-2cdd-4d74-9704-79d075a26c4d · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability CaliScalpel: In-Situ and Fine-Grained Qubit Calibration Integrated with Surface Code Quantum Error Correction
Reference 21
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Unavailable: canonical work link unavailable.
Observation 51459573-69f6-46ae-b1e3-73bd11540f05 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability ReloQate: Transient Drift Detection and In-Situ Recalibration in Surface Code Quantum Error Correction
Reference 22
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Unavailable: canonical work link unavailable.
Observation 47ebb674-4dfb-43a8-89ea-082ddec3ba7d · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability How to factor 2048 bit RSA integers in 8 hours using 20 million noisy qubits,
Reference 23
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Unavailable: canonical work link unavailable.
Observation d52cfe46-d182-4438-a622-3128f12212da · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Quantum error correction for quantum memories,
Reference 24
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Unavailable: canonical work link unavailable.
Observation 5a0705ca-892b-4502-9377-fa97ee6b0789 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Engineering cryogenic setups for 100-qubit scale superconducting circuit systems,
Reference 25
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Unavailable: canonical work link unavailable.
Observation 11d1a355-3fe3-4246-b782-50132defe673 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability CryoZip: An Efficient Cryogenic Compressor for Quantum Error Correction Syndromes
Reference 26
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Unavailable: canonical work link unavailable.
Observation dcc30565-d938-4315-a308-d83ff46342b1 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability QECOOL: on-line quantum error correc- tion with a superconducting decoder for surface code,
Reference 27
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Unavailable: canonical work link unavailable.
Observation c209efd7-d45d-4d2f-92f3-7c0266666da2 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Towards a Control interpretation of Quantum Advantage
Reference 28
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Unavailable: canonical work link unavailable.
Observation ae45fe76-c67d-44e0-9a5d-9e4efb9c99f3 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Optimizing resource efficiencies for scalable full-stack quantum computers,
Reference 29
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Unavailable: canonical work link unavailable.
Observation 76c29275-0dc6-4d67-8a56-36e554dc6aff · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Limitations in quantum computing from resource constraints,
Reference 30
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Unavailable: canonical work link unavailable.
Observation e6f5c5e0-50f6-4530-a94e-f98df21de08b · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Estimating the energy requirements to operate a cryptanalytically relevant quantum computer,
Reference 31
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Unavailable: canonical work link unavailable.
Observation 33728f58-d784-48ff-b5e5-a49adbfaabb2 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Noiseless quantum codes,
Reference 32
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Unavailable: canonical work link unavailable.
Observation 189c3b2e-585c-41e7-bea9-3b2e5764bcd8 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Decoherence-free subspaces for quantum computation,
Reference 33
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Unavailable: canonical work link unavailable.
Observation 6cf475c4-00fc-4e65-b6cc-30f2f7b64e5b · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Dynamically generated decoherence-free subspaces and subsystems on superconduct- ing qubits,
Reference 34
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Unavailable: canonical work link unavailable.
Observation b3af3f55-772e-4f32-abd7-25cd51ecf73b · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability The resource theory of stabilizer quantum computation,
Reference 35
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Observation 70beb893-7bd4-4c0f-b9ee-3dee5a70e5ad · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Application of a resource theory for magic states to fault-tolerant quantum computing,
Reference 36
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Unavailable: canonical work link unavailable.
Observation e15bd35a-1877-4d6a-80e5-49458b9c6c17 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Thermodynamic constraints on quantum information gain and error correction,
Reference 37
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Unavailable: canonical work link unavailable.
Observation 58ac44f7-c94b-4949-ac6f-eecfaae9b13a · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Quantum technologies need a quantum energy initiative,
Reference 38
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Unavailable: canonical work link unavailable.
Observation 099e4f8e-6d86-40fd-b7f5-0a84b3d2b2c9 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Energetics of a single qubit gate,
Reference 39
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Unavailable: canonical work link unavailable.
Observation 1744dd4d-2ee5-43d4-b640-693da5701410 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Energy-efficient quantum computing,
Reference 40
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Unavailable: canonical work link unavailable.
Observation 99bcb2a3-abff-4dde-9f8b-2f80c3c03f37 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Is quantum computing green? An estimate for an energy-efficiency quantum advantage,
Reference 41
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Unavailable: canonical work link unavailable.
Observation 3423a7bf-dbce-4c91-b2ff-0b70f28c13c4 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Energy use in quantum data centers: scaling the impact of computer architecture, qubit performance, size, and thermal parameters,
Reference 42
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Unavailable: canonical work link unavailable.
Observation 96641dbe-ba26-4fb3-946e-a3b0b796e789 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Energy-consumption advantage of quantum computation,
Reference 43
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Observation 9d3978e8-d83f-48ed-8051-def33ca3ca32 · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability The Snake Optimizer for Learning Quantum Processor Control Parameters
Reference 44
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Observation fc52697e-867d-4eae-8a0d-1684e773146e · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Pour-El and I
Reference 45
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Observation 2cead727-14b7-44f6-b516-3d13068549ad · outbound
The Threshold Theorem in Watts: Fault Tolerance as a Question About Objective Probability Non-Turing computers and non-Turing computability,
Reference 46
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Unavailable: canonical work link unavailable.
No inbound Pith citation observations are available.