Modified structure equations and mass–radius relations of white dwarfs arising from the linear generalized uncertainty principle
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Publication:5856622
DOI10.1142/S021827182150005XzbMath1457.85004OpenAlexW3104120119MaRDI QIDQ5856622
Adrian G. Abac, Roland Emerito S. Otadoy, Jose Perico H. Esguerra
Publication date: 26 March 2021
Published in: International Journal of Modern Physics D (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1142/s021827182150005x
Macroscopic interaction of the gravitational field with matter (hydrodynamics, etc.) (83C55) Galactic and stellar structure (85A15) Uncertainty relations, also entropic (81S07)
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Cites Work
- Unnamed Item
- Unnamed Item
- Generalized uncertainty principle from quantum geometry
- On the two new types of the higher order GUP with minimal length uncertainty and maximal momentum
- General relativistic effects in the structure of massive white dwarfs
- Modified commutators are not sufficient to determine a quantum gravity minimal length scale
- Quantum gravity effects on statistics and compact star configurations
- Minimal length scale scenarios for quantum gravity
- The Maximum Mass of Ideal White Dwarfs
- DOUBLY-SPECIAL RELATIVITY: FIRST RESULTS AND KEY OPEN PROBLEMS
- RELATIVITY IN SPACETIMES WITH SHORT-DISTANCE STRUCTURE GOVERNED BY AN OBSERVER-INDEPENDENT (PLANCKIAN) LENGTH SCALE
- Generalized uncertainty principle: Approaches and applications
- Minimal length in quantum gravity, equivalence principle and holographic entropy bound
- On Massive Neutron Cores
- Testable scenario for relativity with minimum length
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