arXiv:gr-qc/0407089·v4·General Relativity and Quantum Cosmology
Brany Liouville Inflation
John Ellis (CERN)🇨🇭 · N.E. Mavromatos (King's Coll. Lon.)🇬🇧 · D.V. Nanopoulos (TAMU)🇺🇸 · A. Sakharov (CERN and ETH)🇨🇭
Abstract
We present a specific model for cosmological inflation driven by the Liouville field in a non-critical supersymmetric string framework, in which the departure from criticality is due to open strings stretched between the two moving Type-II 5-branes. We use WMAP and other data on fluctuations in the cosmic microwave background to fix parameters of the model, such as the relative separation and velocity of the 5-branes, respecting also the constraints imposed by data on light propagation from distant gamma-ray bursters. The model also suggests a small, relaxing component in the present vacuum energy that may accommodate the breaking of supersymmetry.
Comments: 23 pages LATEX, two eps figures incorporated; version accepted for publication in NJP