#qnfo — Public Fediverse posts
Live and recent posts from across the Fediverse tagged #qnfo, aggregated by home.social.
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New synthesis: The Trapped-Ion Ultrametric Testbed — a falsifiability register for testing p-adic structure in quantum dynamics. 16 records, one program, 5 pre-registered observables with kill-conditions, apparatus already demonstrated. DOI: 10.5281/zenodo.22017933 #QNFO #ultrametric #quantum
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New synthesis: The Trapped-Ion Ultrametric Testbed — a falsifiability register for testing p-adic structure in quantum dynamics. 16 records, one program, 5 pre-registered observables with kill-conditions, apparatus already demonstrated. DOI: 10.5281/zenodo.22017933 #QNFO #ultrametric #quantum
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New synthesis: The Trapped-Ion Ultrametric Testbed — a falsifiability register for testing p-adic structure in quantum dynamics. 16 records, one program, 5 pre-registered observables with kill-conditions, apparatus already demonstrated. DOI: 10.5281/zenodo.22017933 #QNFO #ultrametric #quantum
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New paper: Counterfactual Physics — What If p-Adic Methods Had Won? A 4-tier counterfactual analysis of the p-adic physics program (1988 funding, 1968 adelic recognition, 1897 Boltzmann p-adic statistics). DOI: 10.5281/zenodo.21722389 https://papers.qnfo.org/papers/counterfactual-physics/ #QNFO #pAdic #Physics
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New paper: Counterfactual Physics — What If p-Adic Methods Had Won? A 4-tier counterfactual analysis of the p-adic physics program (1988 funding, 1968 adelic recognition, 1897 Boltzmann p-adic statistics). DOI: 10.5281/zenodo.21722389 https://papers.qnfo.org/papers/counterfactual-physics/ #QNFO #pAdic #Physics
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New paper: Counterfactual Physics — What If p-Adic Methods Had Won? A 4-tier counterfactual analysis of the p-adic physics program (1988 funding, 1968 adelic recognition, 1897 Boltzmann p-adic statistics). DOI: 10.5281/zenodo.21722389 https://papers.qnfo.org/papers/counterfactual-physics/ #QNFO #pAdic #Physics
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New paper: Counterfactual Physics — What If p-Adic Methods Had Won? A 4-tier counterfactual analysis of the p-adic physics program (1988 funding, 1968 adelic recognition, 1897 Boltzmann p-adic statistics). DOI: 10.5281/zenodo.21722389 https://papers.qnfo.org/papers/counterfactual-physics/ #QNFO #pAdic #Physics
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New paper: Counterfactual Physics — What If p-Adic Methods Had Won? A 4-tier counterfactual analysis of the p-adic physics program (1988 funding, 1968 adelic recognition, 1897 Boltzmann p-adic statistics). DOI: 10.5281/zenodo.21722389 https://papers.qnfo.org/papers/counterfactual-physics/ #QNFO #pAdic #Physics
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Continuum Trilogy: Ontological Closure (OC) — physically real = Turing-approximable with computable convergence modulus. Phase 4 now complete: 9 practical application domains + 4-tier counterfactual backcasting.
DOI: 10.5281/zenodo.21672990
Paper: https://papers.qnfo.org/papers/continuum-trilogy/
#QNFO #Research #pAdic #OntologicalClosure #QuantumComputing -
Continuum Trilogy: Ontological Closure (OC) — physically real = Turing-approximable with computable convergence modulus. Phase 4 now complete: 9 practical application domains + 4-tier counterfactual backcasting.
DOI: 10.5281/zenodo.21672990
Paper: https://papers.qnfo.org/papers/continuum-trilogy/
#QNFO #Research #pAdic #OntologicalClosure #QuantumComputing -
Continuum Trilogy: Ontological Closure (OC) — physically real = Turing-approximable with computable convergence modulus. Phase 4 now complete: 9 practical application domains + 4-tier counterfactual backcasting.
DOI: 10.5281/zenodo.21672990
Paper: https://papers.qnfo.org/papers/continuum-trilogy/
#QNFO #Research #pAdic #OntologicalClosure #QuantumComputing -
QNFO Unified Plan — Tier 0: ℚ vs ℝ — Justification Memo
All 4 sub-claims established: Measurement Finitude, Observational Equivalence, Ostrowski Applicability, Cardinality Non-Constraint.DOI: https://doi.org/10.5281/zenodo.21664651
Paper: https://papers.qnfo.org (pending deployment)
#QNFO #Physics #NumberTheory #AdelicPhysics -
QNFO Unified Plan — Tier 0: ℚ vs ℝ — Justification Memo
All 4 sub-claims established: Measurement Finitude, Observational Equivalence, Ostrowski Applicability, Cardinality Non-Constraint.DOI: https://doi.org/10.5281/zenodo.21664651
Paper: https://papers.qnfo.org (pending deployment)
#QNFO #Physics #NumberTheory #AdelicPhysics -
QNFO Unified Plan — Tier 0: ℚ vs ℝ — Justification Memo
All 4 sub-claims established: Measurement Finitude, Observational Equivalence, Ostrowski Applicability, Cardinality Non-Constraint.DOI: https://doi.org/10.5281/zenodo.21664651
Paper: https://papers.qnfo.org (pending deployment)
#QNFO #Physics #NumberTheory #AdelicPhysics -
QNFO Unified Plan — Tier 0: ℚ vs ℝ — Justification Memo
All 4 sub-claims established: Measurement Finitude, Observational Equivalence, Ostrowski Applicability, Cardinality Non-Constraint.DOI: https://doi.org/10.5281/zenodo.21664651
Paper: https://papers.qnfo.org (pending deployment)
#QNFO #Physics #NumberTheory #AdelicPhysics -
QNFO Unified Plan — Tier 0: ℚ vs ℝ — Justification Memo
All 4 sub-claims established: Measurement Finitude, Observational Equivalence, Ostrowski Applicability, Cardinality Non-Constraint.DOI: https://doi.org/10.5281/zenodo.21664651
Paper: https://papers.qnfo.org (pending deployment)
#QNFO #Physics #NumberTheory #AdelicPhysics -
The Adelic Physics Program: Epistemological Foundations and Communications Framework
A new meta-paper synthesizing the argument that Q (rational numbers), not R (real numbers), is the physically accessible base field of physics.
DOI: https://doi.org/10.5281/zenodo.21685451
Paper: https://papers.qnfo.org/papers/adelic-epistemological-foundations -
The Adelic Physics Program: Epistemological Foundations and Communications Framework
A new meta-paper synthesizing the argument that Q (rational numbers), not R (real numbers), is the physically accessible base field of physics.
DOI: https://doi.org/10.5281/zenodo.21685451
Paper: https://papers.qnfo.org/papers/adelic-epistemological-foundations -
The Adelic Physics Program: Epistemological Foundations and Communications Framework
A new meta-paper synthesizing the argument that Q (rational numbers), not R (real numbers), is the physically accessible base field of physics.
DOI: https://doi.org/10.5281/zenodo.21685451
Paper: https://papers.qnfo.org/papers/adelic-epistemological-foundations -
New: The Continuum Trilogy — 3 papers establishing the Ontological Closure (OC) program.
I. The Computable Continuum: proving non-computable reals are physically vacuous.
II. P-adic Spin: quantum numbers from Bruhat-Tits geometry.
III. Unified Ontology: depth, breadth, valuation.DOI: 10.5281/zenodo.21672990
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New: The Continuum Trilogy — 3 papers establishing the Ontological Closure (OC) program.
I. The Computable Continuum: proving non-computable reals are physically vacuous.
II. P-adic Spin: quantum numbers from Bruhat-Tits geometry.
III. Unified Ontology: depth, breadth, valuation.DOI: 10.5281/zenodo.21672990
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New: The Continuum Trilogy — 3 papers establishing the Ontological Closure (OC) program.
I. The Computable Continuum: proving non-computable reals are physically vacuous.
II. P-adic Spin: quantum numbers from Bruhat-Tits geometry.
III. Unified Ontology: depth, breadth, valuation.DOI: 10.5281/zenodo.21672990
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New preprint: 'The Computable Real Boundary — Where Physics Ends and Cognitive Fiction Begins.' Drawing on Spencer-Brown's Laws of Form and Leshem's proof that non-recursive reals are empirically indistinguishable, we argue the physics/math boundary is exactly the computable reals. DOI: 10.5281/zenodo.21645350 #QNFO #Physics #Foundations
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New preprint: 'The Computable Real Boundary — Where Physics Ends and Cognitive Fiction Begins.' Drawing on Spencer-Brown's Laws of Form and Leshem's proof that non-recursive reals are empirically indistinguishable, we argue the physics/math boundary is exactly the computable reals. DOI: 10.5281/zenodo.21645350 #QNFO #Physics #Foundations
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New preprint: 'The Computable Real Boundary — Where Physics Ends and Cognitive Fiction Begins.' Drawing on Spencer-Brown's Laws of Form and Leshem's proof that non-recursive reals are empirically indistinguishable, we argue the physics/math boundary is exactly the computable reals. DOI: 10.5281/zenodo.21645350 #QNFO #Physics #Foundations
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New preprint: 'The Computable Real Boundary — Where Physics Ends and Cognitive Fiction Begins.' Drawing on Spencer-Brown's Laws of Form and Leshem's proof that non-recursive reals are empirically indistinguishable, we argue the physics/math boundary is exactly the computable reals. DOI: 10.5281/zenodo.21645350 #QNFO #Physics #Foundations
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New preprint: 'The Computable Real Boundary — Where Physics Ends and Cognitive Fiction Begins.' Drawing on Spencer-Brown's Laws of Form and Leshem's proof that non-recursive reals are empirically indistinguishable, we argue the physics/math boundary is exactly the computable reals. DOI: 10.5281/zenodo.21645350 #QNFO #Physics #Foundations
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📄 New QNFO paper: "Finite Specification, Ontological Indeterminism: The Gisin–Del Santo Program Converges with Autaxys Ontological Closure"
7 convergent theses, 6-domain consilience (Physics→CS→CogSci→InfoTheory→Biology→Sociology), red-team audited. DOI: 10.5281/zenodo.21647362
https://papers.qnfo.org/papers/finite-precision-oc-convergence
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📄 New QNFO paper: "Finite Specification, Ontological Indeterminism: The Gisin–Del Santo Program Converges with Autaxys Ontological Closure"
7 convergent theses, 6-domain consilience (Physics→CS→CogSci→InfoTheory→Biology→Sociology), red-team audited. DOI: 10.5281/zenodo.21647362
https://papers.qnfo.org/papers/finite-precision-oc-convergence
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📄 New QNFO paper: "Finite Specification, Ontological Indeterminism: The Gisin–Del Santo Program Converges with Autaxys Ontological Closure"
7 convergent theses, 6-domain consilience (Physics→CS→CogSci→InfoTheory→Biology→Sociology), red-team audited. DOI: 10.5281/zenodo.21647362
https://papers.qnfo.org/papers/finite-precision-oc-convergence
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📄 New QNFO paper: "Finite Specification, Ontological Indeterminism: The Gisin–Del Santo Program Converges with Autaxys Ontological Closure"
7 convergent theses, 6-domain consilience (Physics→CS→CogSci→InfoTheory→Biology→Sociology), red-team audited. DOI: 10.5281/zenodo.21647362
https://papers.qnfo.org/papers/finite-precision-oc-convergence
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📄 New QNFO paper: "Finite Specification, Ontological Indeterminism: The Gisin–Del Santo Program Converges with Autaxys Ontological Closure"
7 convergent theses, 6-domain consilience (Physics→CS→CogSci→InfoTheory→Biology→Sociology), red-team audited. DOI: 10.5281/zenodo.21647362
https://papers.qnfo.org/papers/finite-precision-oc-convergence
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Q-based physics: rational numbers are sufficient for all finite-precision measurements. Four sub-claims, four falsification conditions, direct response to the base-field objection. DOI: 10.5281/zenodo.21638963 #QNFO #RationalNumbers #PhysicsFoundations
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Q-based physics: rational numbers are sufficient for all finite-precision measurements. Four sub-claims, four falsification conditions, direct response to the base-field objection. DOI: 10.5281/zenodo.21638963 #QNFO #RationalNumbers #PhysicsFoundations
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Q-based physics: rational numbers are sufficient for all finite-precision measurements. Four sub-claims, four falsification conditions, direct response to the base-field objection. DOI: 10.5281/zenodo.21638963 #QNFO #RationalNumbers #PhysicsFoundations
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The joules-per-solution metric — the only honest arbiter of computational advantage.
Total system energy to produce a correct solution, physics-grounded and anti-gaming.
DOI: 10.5281/zenodo.21637028
https://papers.qnfo.org/joules-per-solution-metric -
The joules-per-solution metric — the only honest arbiter of computational advantage.
Total system energy to produce a correct solution, physics-grounded and anti-gaming.
DOI: 10.5281/zenodo.21637028
https://papers.qnfo.org/joules-per-solution-metric -
The joules-per-solution metric — the only honest arbiter of computational advantage.
Total system energy to produce a correct solution, physics-grounded and anti-gaming.
DOI: 10.5281/zenodo.21637028
https://papers.qnfo.org/joules-per-solution-metric -
Harmonic Analysis = Langlands - The FFT is the computational Langlands correspondence for GL(1). The group changes; the spectral decomposition structure is invariant. Paper 15: The Computational Langlands Problem. DOI: https://doi.org/10.5281/zenodo.21628383 #QNFO #Langlands #FFT #HarmonicAnalysis #Mathematics
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Harmonic Analysis = Langlands - The FFT is the computational Langlands correspondence for GL(1). The group changes; the spectral decomposition structure is invariant. Paper 15: The Computational Langlands Problem. DOI: https://doi.org/10.5281/zenodo.21628383 #QNFO #Langlands #FFT #HarmonicAnalysis #Mathematics
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Harmonic Analysis = Langlands - The FFT is the computational Langlands correspondence for GL(1). The group changes; the spectral decomposition structure is invariant. Paper 15: The Computational Langlands Problem. DOI: https://doi.org/10.5281/zenodo.21628383 #QNFO #Langlands #FFT #HarmonicAnalysis #Mathematics
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Hidden-Radix Cryptography vs Post-Quantum Cryptography: A Comparative Analysis
Tracing the evolution from naive base-change cipher through Silent Radix Encryption to p-adic/idèlic constructions — and comparing against all 5 PQC families.
Key finding: entropy ≠ security, but the valuation-theoretic design space is genuinely underexplored.
DOI: 10.5281/zenodo.21609391
Paper: https://papers.qnfo.org/papers/hidden-radix-pqc -
Hidden-Radix Cryptography vs Post-Quantum Cryptography: A Comparative Analysis
Tracing the evolution from naive base-change cipher through Silent Radix Encryption to p-adic/idèlic constructions — and comparing against all 5 PQC families.
Key finding: entropy ≠ security, but the valuation-theoretic design space is genuinely underexplored.
DOI: 10.5281/zenodo.21609391
Paper: https://papers.qnfo.org/papers/hidden-radix-pqc -
Hidden-Radix Cryptography vs Post-Quantum Cryptography: A Comparative Analysis
Tracing the evolution from naive base-change cipher through Silent Radix Encryption to p-adic/idèlic constructions — and comparing against all 5 PQC families.
Key finding: entropy ≠ security, but the valuation-theoretic design space is genuinely underexplored.
DOI: 10.5281/zenodo.21609391
Paper: https://papers.qnfo.org/papers/hidden-radix-pqc -
Hidden-Radix Cryptography vs Post-Quantum Cryptography: A Comparative Analysis
Tracing the evolution from naive base-change cipher through Silent Radix Encryption to p-adic/idèlic constructions — and comparing against all 5 PQC families.
Key finding: entropy ≠ security, but the valuation-theoretic design space is genuinely underexplored.
DOI: 10.5281/zenodo.21609391
Paper: https://papers.qnfo.org/papers/hidden-radix-pqc -
Hidden-Radix Cryptography vs Post-Quantum Cryptography: A Comparative Analysis
Tracing the evolution from naive base-change cipher through Silent Radix Encryption to p-adic/idèlic constructions — and comparing against all 5 PQC families.
Key finding: entropy ≠ security, but the valuation-theoretic design space is genuinely underexplored.
DOI: 10.5281/zenodo.21609391
Paper: https://papers.qnfo.org/papers/hidden-radix-pqc -
New paper: Hidden-Radix Cryptography vs Post-Quantum Cryptography.
Traces hidden-radix from naive base-change ciphers through SRE to p-adic completions and the idelic ring. Compares against all five PQC families: lattice, code, hash, multivariate, and isogeny-based.
https://doi.org/10.5281/zenodo.21609391
https://papers.qnfo.org/papers/hidden-radix-pqc/ -
New paper: Hidden-Radix Cryptography vs Post-Quantum Cryptography.
Traces hidden-radix from naive base-change ciphers through SRE to p-adic completions and the idelic ring. Compares against all five PQC families: lattice, code, hash, multivariate, and isogeny-based.
https://doi.org/10.5281/zenodo.21609391
https://papers.qnfo.org/papers/hidden-radix-pqc/ -
New paper: Hidden-Radix Cryptography vs Post-Quantum Cryptography.
Traces hidden-radix from naive base-change ciphers through SRE to p-adic completions and the idelic ring. Compares against all five PQC families: lattice, code, hash, multivariate, and isogeny-based.
https://doi.org/10.5281/zenodo.21609391
https://papers.qnfo.org/papers/hidden-radix-pqc/ -
New paper: Hidden-Radix Cryptography vs Post-Quantum Cryptography.
Traces hidden-radix from naive base-change ciphers through SRE to p-adic completions and the idelic ring. Compares against all five PQC families: lattice, code, hash, multivariate, and isogeny-based.
https://doi.org/10.5281/zenodo.21609391
https://papers.qnfo.org/papers/hidden-radix-pqc/ -
New paper: Hidden-Radix Cryptography vs Post-Quantum Cryptography.
Traces hidden-radix from naive base-change ciphers through SRE to p-adic completions and the idelic ring. Compares against all five PQC families: lattice, code, hash, multivariate, and isogeny-based.
https://doi.org/10.5281/zenodo.21609391
https://papers.qnfo.org/papers/hidden-radix-pqc/ -
@Good_News_Community And that might be a good time to #announce more #goodnews: #QNFO is beginning #research on an #autaxic table of #patterns as a #standardmodel successor, having already discovered a new fundamental "particle," the #infoton, that's not actually a #particle at all...
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@Good_News_Community And that might be a good time to #announce more #goodnews: #QNFO is beginning #research on an #autaxic table of #patterns as a #standardmodel successor, having already discovered a new fundamental "particle," the #infoton, that's not actually a #particle at all...
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@Good_News_Community And that might be a good time to #announce more #goodnews: #QNFO is beginning #research on an #autaxic table of #patterns as a #standardmodel successor, having already discovered a new fundamental "particle," the #infoton, that's not actually a #particle at all...
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Oh #irony! I've been critical of how much is invested in particle accelerators with little generalizable #research to show outside of #physics circles. So, who is going to start hosting and archiving my #QNFO research and #openaccess #journal for #autaxys and #autology? #CERN via @zenodo_org !
This is the most user-friendly and promising platform for #openscience I've come across (so far). No gatekeeping and my work gets indexed and a #DOI automatically.
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Oh #irony! I've been critical of how much is invested in particle accelerators with little generalizable #research to show outside of #physics circles. So, who is going to start hosting and archiving my #QNFO research and #openaccess #journal for #autaxys and #autology? #CERN via @zenodo_org !
This is the most user-friendly and promising platform for #openscience I've come across (so far). No gatekeeping and my work gets indexed and a #DOI automatically.
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Oh #irony! I've been critical of how much is invested in particle accelerators with little generalizable #research to show outside of #physics circles. So, who is going to start hosting and archiving my #QNFO research and #openaccess #journal for #autaxys and #autology? #CERN via @zenodo_org !
This is the most user-friendly and promising platform for #openscience I've come across (so far). No gatekeeping and my work gets indexed and a #DOI automatically.
-
Oh #irony! I've been critical of how much is invested in particle accelerators with little generalizable #research to show outside of #physics circles. So, who is going to start hosting and archiving my #QNFO research and #openaccess #journal for #autaxys and #autology? #CERN via @zenodo_org !
This is the most user-friendly and promising platform for #openscience I've come across (so far). No gatekeeping and my work gets indexed and a #DOI automatically.
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Why are there conservation laws? Ch. 8 of "A New Way of Seeing" suggests:
Conservation of Distinguishability. "Once a stable distinction or pattern... emerges... it possesses an ontological inertia." The autaxic basis for all conservation principles.https://qnfo.org/releases/2025/New+Way+of+Seeing/_New+Way+of+Seeing
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Why are there conservation laws? Ch. 8 of "A New Way of Seeing" suggests:
Conservation of Distinguishability. "Once a stable distinction or pattern... emerges... it possesses an ontological inertia." The autaxic basis for all conservation principles.https://qnfo.org/releases/2025/New+Way+of+Seeing/_New+Way+of+Seeing