String State Mechanism of Black Hole Hawking Radiation under the Critical String Length Framework: Unifying Force Field Demarcation from Blackbody Radiation to Schwarzschild Radius

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Autore principale: chen, xuehong
Natura: Recurso digital
Lingua:inglese
Pubblicazione: Zenodo 2025
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author chen, xuehong
author_facet chen, xuehong
contents <p>Abstract</p> <p> </p> <p>Although the quantum tunneling explanation of Hawking radiation reveals the existence of black hole radiation, it does not触及 the underlying logic of "radiation energy source and force field essence". Based on Chen's Superstring Theory, this paper constructs a unified explanatory framework for black hole radiation and blackbody radiation through the universal rule of critical string length (L_p \approx 10^{-35}\,\text{m}): The Schwarzschild radius is not only the observational boundary of the particle domain (world radius), but its string velocity correction form (r_s' = r_s \cdot \phi^n, \phi=0.618) is also the critical point of force field demarcation between gravitational strings (\mathcal{G}) and repulsive strings (\mathcal{R}). Research shows that: Black hole radiation is essentially the fractal damping scattering of repulsive strings near the critical string length, which is isomorphic to the energy discretization mechanism in the high-frequency region of blackbody radiation; The dual physical connotations of the Schwarzschild radius (observational boundary/force field demarcation point) are self-consistently connected through the string state dynamic equilibrium equation, and cross-scale experiments (blackbody radiation spectrum, black hole shadow observation) verify that the theoretical error is <0.8%. This study provides an essential string state explanation for Hawking radiation, promoting the division of "particle domain-energy domain" from micro quantum phenomena to macro astrophysics.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_16809394
institution Zenodo
language eng
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle String State Mechanism of Black Hole Hawking Radiation under the Critical String Length Framework: Unifying Force Field Demarcation from Blackbody Radiation to Schwarzschild Radius
chen, xuehong
Hawking radiation;
critical string length;
Schwarzschild radius;
blackbody radiation;
string state force field demarcation
<p>Abstract</p> <p> </p> <p>Although the quantum tunneling explanation of Hawking radiation reveals the existence of black hole radiation, it does not触及 the underlying logic of "radiation energy source and force field essence". Based on Chen's Superstring Theory, this paper constructs a unified explanatory framework for black hole radiation and blackbody radiation through the universal rule of critical string length (L_p \approx 10^{-35}\,\text{m}): The Schwarzschild radius is not only the observational boundary of the particle domain (world radius), but its string velocity correction form (r_s' = r_s \cdot \phi^n, \phi=0.618) is also the critical point of force field demarcation between gravitational strings (\mathcal{G}) and repulsive strings (\mathcal{R}). Research shows that: Black hole radiation is essentially the fractal damping scattering of repulsive strings near the critical string length, which is isomorphic to the energy discretization mechanism in the high-frequency region of blackbody radiation; The dual physical connotations of the Schwarzschild radius (observational boundary/force field demarcation point) are self-consistently connected through the string state dynamic equilibrium equation, and cross-scale experiments (blackbody radiation spectrum, black hole shadow observation) verify that the theoretical error is <0.8%. This study provides an essential string state explanation for Hawking radiation, promoting the division of "particle domain-energy domain" from micro quantum phenomena to macro astrophysics.</p>
title String State Mechanism of Black Hole Hawking Radiation under the Critical String Length Framework: Unifying Force Field Demarcation from Blackbody Radiation to Schwarzschild Radius
topic Hawking radiation;
critical string length;
Schwarzschild radius;
blackbody radiation;
string state force field demarcation
url https://doi.org/10.5281/zenodo.16809394