Scalar field cosmology modified by the Generalized Uncertainty Principle
arXiv:1508.06543 · doi:10.1088/0264-9381/32/24/245006
Abstract
We consider quintessence scalar field cosmology in which the Lagrangian of the scalar field is modified by the Generalized Uncertainty Principle. We show that the perturbation terms which arise from the deformed algebra are equivalent with the existence of a second scalar field, where the two fields interact in the kinetic part. Moreover, we consider a spatially flat Friedmann-Lema\^ıtre-Robertson-Walker spacetime (FLRW), and we derive the gravitational field equations. We show that the modified equation of state parameter can cross the phantom divide line; that is . Furthermore, we derive the field equations in the dimensionless parameters, the dynamical system which arises is a singular perturbation system in which we study the existence of the fixed points in the slow manifold. Finally, we perform numerical simulations for some well known models and we show that for these models with the specific initial conditions, the parameter crosses the phantom barrier.
12 pages; 3 figures; discussion improved; new references; accepted for publication by CQG
References in corpus (7)
- Dynamics of dark energy
- Universality of Quantum Gravity Corrections
- Dark energy from modified gravity with Lagrange multipliers
- Minimum Length Cutoff in Inflation and Uniqueness of the Action
- Generation of Cosmological Seed Magnetic Fields from Inflation with Cutoff
- Two scalar field cosmology: Conservation laws and exact solutions
- Gravity and Scalar Fields
Cited by in corpus (35)
- Constraining the generalized uncertainty principle with the gravitational wave event GW150914
- The past and future dynamics of quintom dark energy models
- 30 years in: Quo vadis generalized uncertainty principle?
- Phenomenology of GUP stars
- Noether symmetries and stability of ideal gas solution in Galileon Cosmology
- Constraints on quintessence scalar field models using cosmological observations
- Exact Solutions in Chiral Cosmology
- Dynamical symmetries in Brans-Dicke cosmology
- Cosmological Evolution and Exact Solutions in a Fourth-order Theory of Gravity
- Cosmological constraints on the Generalized Uncertainty Principle from modified Friedmann equations
- Gaussian Processes Reconstruction of the Dark Energy Potential
- Cosmological Solutions in Multiscalar Field Theory
- Interacting quintessence in light of Generalized Uncertainty Principle: Cosmological perturbations and dynamics
- Einstein static universe from GUP
- GUP modified Hawking Radiation and Transmission/Reflection Coefficients of Rotating Polytropic Black Hole
- Constraining the Generalized Uncertainty Principle with the light twisted by rotating black holes and M87*
- Dark Energy within the Generalized Uncertainty Principle in Light of DESI DR2
- Cosmological Evolution of Two-Scalar fields Cosmology in the Jordan frame
- Cosmology with Negative Absolute Temperatures
- Generalized Uncertainty Principle mimicking dynamical Dark Energy: matter perturbations and gravitational wave data analysis
- Averaging Generalized Scalar Field Cosmologies I: Locally Rotationally Symmetric Bianchi III and open Friedmann-Lemaître-Robertson-Walker models
- Dynamics of Quintessence in Generalized Uncertainty Principle
- Constraining the generalized uncertainty principle with neutron interferometry
- Approximate conditions admitted by classes of the Lagrangian
- Challenging CDM with Higher-Order GUP Corrections
- Scalar field evolution at background and perturbation levels for a broad class of potentials
- Black branes in four-dimensional conformal equivalent theories
- Inhomogeneous spacetimes in Einstein-æther Cosmology
- Do current observations support transient acceleration of our universe?
- Quintessence scalar field and cosmological constant: Dynamics of a multi-component dark energy model
- Modified Brans-Dicke cosmology with Minimum Length Uncertainty
- Szekeres Universes with GUP corrections
- Scalar field inflation driven by a modification of the Heisenberg algebra
- Generalized Uncertainty Principle: from the harmonic oscillator to a QFT toy model
- Equations for fields with additional fundamental physical constants