A Conjecture on Superconductivity Mechanism Based on the Light-Speed Standing Wave Electron Model / 基于光速驻波电子模型的超导机理创想
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2026
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| _version_ | 1866901084803432448 |
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| author | Wu, Longjian |
| author_facet | Wu, Longjian |
| contents | <p>This is a theoretical conjecture article focusing on the mechanism of superconductivity, which is <strong>simultaneously available in both Chinese and English versions</strong>. Based on the light-speed standing wave electron model derived from the boundary interface theory, the article puts forward a novel perspective on the origin of superconductivity by centering on the core of global equivalent and seamless atomic orbital overlap, and combines relevant experimental data to discuss the regulatory effect of temperature on orbital overlap. It aims to provide a supplementary and original thinking direction for the research of superconductivity mechanism, without involving excessive self-evaluation or exaggerated claims, and maintains a rigorous and objective academic attitude throughout the content.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_19290393 |
| institution | Zenodo |
| language | |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | A Conjecture on Superconductivity Mechanism Based on the Light-Speed Standing Wave Electron Model / 基于光速驻波电子模型的超导机理创想 Wu, Longjian Superconductivity mechanism Light-speed standing wave electron model Boundary interface theory Global orbital overlap Atomic thermal vibration Superconducting critical temperature Zero-resistance effect Orbital confinement <p>This is a theoretical conjecture article focusing on the mechanism of superconductivity, which is <strong>simultaneously available in both Chinese and English versions</strong>. Based on the light-speed standing wave electron model derived from the boundary interface theory, the article puts forward a novel perspective on the origin of superconductivity by centering on the core of global equivalent and seamless atomic orbital overlap, and combines relevant experimental data to discuss the regulatory effect of temperature on orbital overlap. It aims to provide a supplementary and original thinking direction for the research of superconductivity mechanism, without involving excessive self-evaluation or exaggerated claims, and maintains a rigorous and objective academic attitude throughout the content.</p> |
| title | A Conjecture on Superconductivity Mechanism Based on the Light-Speed Standing Wave Electron Model / 基于光速驻波电子模型的超导机理创想 |
| topic | Superconductivity mechanism Light-speed standing wave electron model Boundary interface theory Global orbital overlap Atomic thermal vibration Superconducting critical temperature Zero-resistance effect Orbital confinement |
| url | https://doi.org/10.5281/zenodo.19290393 |