The Quantized Harmonic Sieve: Overcoming the Decimal Metric — An Addendum to The Theory of Harmonic Quantization

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Autor principal: Conlin, Chris
Formato: Recurso digital
Lenguaje:inglés
Publicado: Zenodo 2026
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author Conlin, Chris
author_facet Conlin, Chris
contents <p>This addendum to The Theory of Harmonic Quantization (THQ) addresses the "epistemological trap" of the decimal metric—an anthropocentric reliance on base-10 arithmetic that generates artificial infinities and the 122-order-of-magnitude discrepancy known as the Vacuum Catastrophe. We propose the Quantized Harmonic Sieve, a base-agnostic geometric operator that replaces linear, continuous integration with a discrete summation of resonant modes.</p> <p>By defining the vacuum as a High-Q Resonator governed by pure geometric proportion (π and Φ), we demonstrate how geometric impedance suppresses non-resonant "noise" and stabilizes the spacetime metric. This framework provides a unified mechanical explanation for structural emergence across scales, bridging cosmological constant determination with recent empirical observations of biological cosmogenesis and affective resonance.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19201934
institution Zenodo
language eng
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle The Quantized Harmonic Sieve: Overcoming the Decimal Metric — An Addendum to The Theory of Harmonic Quantization
Conlin, Chris
Mathematical physics
Theoretical physics
Biophysics
<p>This addendum to The Theory of Harmonic Quantization (THQ) addresses the "epistemological trap" of the decimal metric—an anthropocentric reliance on base-10 arithmetic that generates artificial infinities and the 122-order-of-magnitude discrepancy known as the Vacuum Catastrophe. We propose the Quantized Harmonic Sieve, a base-agnostic geometric operator that replaces linear, continuous integration with a discrete summation of resonant modes.</p> <p>By defining the vacuum as a High-Q Resonator governed by pure geometric proportion (π and Φ), we demonstrate how geometric impedance suppresses non-resonant "noise" and stabilizes the spacetime metric. This framework provides a unified mechanical explanation for structural emergence across scales, bridging cosmological constant determination with recent empirical observations of biological cosmogenesis and affective resonance.</p>
title The Quantized Harmonic Sieve: Overcoming the Decimal Metric — An Addendum to The Theory of Harmonic Quantization
topic Mathematical physics
Theoretical physics
Biophysics
url https://doi.org/10.5281/zenodo.19201934