Superfluid vacuum state, time-varying cosmological constant, and nonsingular cosmological models
Journal Article
·
· Found. Phys.; (United States)
Some cosmological consequences of the superfluid vacuum state developed previously are discussed, particularly with regard to the initial stages of the universe. The transition temperature of the hadronic superfluid (superfluid during the hadron era) is estimated to be 10/sup 13/ K, which is the same as the Hagedorn temperature, giving a physical basis of the thermodynamic bootstrap model.
- Research Organization:
- Indian Inst. of Science, Bangalore
- OSTI ID:
- 7330050
- Journal Information:
- Found. Phys.; (United States), Vol. 6:6
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
71 CLASSICAL AND QUANTUM MECHANICS
GENERAL PHYSICS
72 PHYSICS OF ELEMENTARY PARTICLES AND FIELDS
BOOTSTRAP MODEL
COSMOLOGY
COSMOLOGICAL MODELS
SUPERFLUIDITY
HADRONS
THERMODYNAMIC MODEL
TIME DEPENDENCE
UNIVERSE
COMPOSITE MODELS
ELEMENTARY PARTICLES
MATHEMATICAL MODELS
PARTICLE MODELS
STATISTICAL MODELS
640106* - Astrophysics & Cosmology- Cosmology
645201 - High Energy Physics- Particle Interactions & Properties-Theoretical- General & Scattering Theory
GENERAL PHYSICS
72 PHYSICS OF ELEMENTARY PARTICLES AND FIELDS
BOOTSTRAP MODEL
COSMOLOGY
COSMOLOGICAL MODELS
SUPERFLUIDITY
HADRONS
THERMODYNAMIC MODEL
TIME DEPENDENCE
UNIVERSE
COMPOSITE MODELS
ELEMENTARY PARTICLES
MATHEMATICAL MODELS
PARTICLE MODELS
STATISTICAL MODELS
640106* - Astrophysics & Cosmology- Cosmology
645201 - High Energy Physics- Particle Interactions & Properties-Theoretical- General & Scattering Theory