Quantum coherent states in cosmology

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TitreQuantum coherent states in cosmology
Type de publicationConference Paper
Year of Publication2015
AuteursZiaeepour H
EditorDiosi L, Elze HT, Fronzoni L, Halliwell JJ, Kiefer C, Prati E, Vitiello G
Conference Name7TH INTERNATIONAL WORKSHOP DICE2014 SPACETIME - MATTER - QUANTUM MECHANICS
PublisherUniv Pisa, Domus Galilaena; Centro Interdisciplinare Studio Sistemi Complessi; Univ Salerno, Dipartimento Fisica; Ist Italiano Studi Filosofici; Inst Phys Publishing; Springer Verlag
Conference LocationDIRAC HOUSE, TEMPLE BACK, BRISTOL BS1 6BE, ENGLAND
Résumé

Coherent states consist of superposition of infinite number of particles and do not have a classical analogue. We study their evolution in a FLRW cosmology and show that only when full quantum corrections are considered, they may survive the expansion of the Universe and form a global condensate. This state of matter can be the origin of accelerating expansion of the Universe, generally called dark energy, and inflation in the early universe. Additionally, such a quantum pool may be the ultimate environment for decoherence at shorter distances. If dark energy is a quantum coherent state, its dominant contribution to the total energy of the Universe at present provides a low entropy state which may be necessary as an initial condition for a new Big Bang in the framework of bouncing cosmology models.

DOI10.1088/1742-6596/626/1/012034