Cosmological Bouncing Solutions With Different

dc.contributor.authorMuhammad Ehsan Khalid,
dc.contributor.authorFA17-RMT-020
dc.contributor.authorDr. Muhammad Zubair,
dc.contributor.authorLHR TP 5653
dc.date.accessioned2026-04-21T08:19:35Z
dc.date.issued2019
dc.description.abstractCosmological bouncing scenarios provide an alternative to the standard Big Bang paradigm by replacing the initial singularity with a finite minimum scale factor, followed by a transition from contraction to expansion. In this work, we investigate a class of bouncing solutions arising from different theoretical frameworks, including modified gravity theories, scalar field dynamics, and quantum cosmological effects. By analyzing the behavior of the Hubble parameter and the evolution of the scale factor, we identify the necessary conditions for a successful, non-singular bounce. Particular attention is given to the role of energy conditions, stability criteria, and the avoidance of ghost and gradient instabilities. We compare the physical viability of various models and discuss their implications for early-universe evolution, structure formation, and observational signatures in the cosmic microwave background. Our results demonstrate that a wide range of theoretical approaches can consistently produce stable and realistic bouncing cosmologies, offering promising alternatives to inflationary scenarios.
dc.identifier.urihttps://repository.cuilahore.edu.pk/123456789/3648
dc.language.isoen
dc.publisherLibrary Information Services, COMSATS University Islamabad, Lahore Campus
dc.relation.ispartofseriesLHR TP 5653
dc.subjectdepartment of mathematics
dc.subjectDr. Muhammad Zubair
dc.subjectFA17
dc.titleCosmological Bouncing Solutions With Different
dc.typeThesis

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