Unveiling Novel Dark Matter Particles: Insights from Fractal Quantum Gravity Theory

1
Shuming Li
Shuming Li
2
Lihua Li Huang
Lihua Li Huang
3
Shuwei Li
Shuwei Li
4
Shuyun Li
Shuyun Li

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GJSFR Volume 24 Issue A3

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As a promising quantum gravity theory, the newly developed fractal quantum gravity theory (FQG) has introduced the smallest constant of the product of space, time and energy of STQAs (Space-Time Quantum of Action). The product of space, time and energy of every particle is integer times of this smallest constant-STQA. Based on the FQG equation, we have deduced that every physical parameter of existing or possibly existing particle takes some special or limited extrema values.

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No external funding was declared for this work.

Conflict of Interest

The authors declare no conflict of interest.

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No ethics committee approval was required for this article type.

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Shuming Li. 2026. \u201cUnveiling Novel Dark Matter Particles: Insights from Fractal Quantum Gravity Theory\u201d. Global Journal of Science Frontier Research - A: Physics & Space Science GJSFR-A Volume 24 (GJSFR Volume 24 Issue A3): .

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Dark Matter Particle Insights from Fractal Geometry.
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GJSFR Volume 24 Issue A3
Pg. 17- 25
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Crossref Journal DOI 10.17406/GJSFR

Print ISSN 0975-5896

e-ISSN 2249-4626

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May 18, 2024

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English

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As a promising quantum gravity theory, the newly developed fractal quantum gravity theory (FQG) has introduced the smallest constant of the product of space, time and energy of STQAs (Space-Time Quantum of Action). The product of space, time and energy of every particle is integer times of this smallest constant-STQA. Based on the FQG equation, we have deduced that every physical parameter of existing or possibly existing particle takes some special or limited extrema values.

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Unveiling Novel Dark Matter Particles: Insights from Fractal Quantum Gravity Theory

Shuming Li
Shuming Li
Lihua Li Huang
Lihua Li Huang
Shuwei Li
Shuwei Li
Shuyun Li
Shuyun Li

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