The stability of scalar quintessence potentials under quantum fluctuations is investigated for both uncoupled models and models with a coupling to fermions. We find that uncoupled models are usually stable in the late universe. However, the coupling to fermions is severely restricted. We check whether a graviton induced fermion-quintessence coupling is compatible with this restriction
We investigate some aspects of quintessence models with a non-minimally coupled scalar field and in ...
We consider the coupling of quintessence to observable matter in supergravity and study the dynamics...
Extended Higgs sectors have been studied extensively in context of dark matter phenomenology in tand...
The stability of scalar quintessence potentials under quantum fluctuations is investigated both for ...
We investigate the impact of quantum fluctuations on a light rolling quintessence field from three d...
A new component of the cosmic medium, a light scalar field or ''quintessence '', has been proposed r...
We present a two-field model that realises inflation and the observed density of dark energy today, ...
We present evidence that the simplest particle-physics scalar-field models of dynamical dark energy ...
We study a coupled quintessence model in which the interaction with the dark-matter sector is a func...
Recent observations indicate that the majority of all matter in the universe is in the form of a d...
The quest for understanding the late-time acceleration is haunted by an immense freedom in the analy...
Some physical imprints of quintessence scalar fields on dark matter (DM) clustering are illustrated,...
The role of a scalar field is reexamined through the introduction of a quasi-quintessence model. Unl...
AbstractAt present we know nothing about the nature of the dark energy accounting for about 70% of t...
We revise the stability of the tracking solutions and briefly review the potentials of quintessence ...
We investigate some aspects of quintessence models with a non-minimally coupled scalar field and in ...
We consider the coupling of quintessence to observable matter in supergravity and study the dynamics...
Extended Higgs sectors have been studied extensively in context of dark matter phenomenology in tand...
The stability of scalar quintessence potentials under quantum fluctuations is investigated both for ...
We investigate the impact of quantum fluctuations on a light rolling quintessence field from three d...
A new component of the cosmic medium, a light scalar field or ''quintessence '', has been proposed r...
We present a two-field model that realises inflation and the observed density of dark energy today, ...
We present evidence that the simplest particle-physics scalar-field models of dynamical dark energy ...
We study a coupled quintessence model in which the interaction with the dark-matter sector is a func...
Recent observations indicate that the majority of all matter in the universe is in the form of a d...
The quest for understanding the late-time acceleration is haunted by an immense freedom in the analy...
Some physical imprints of quintessence scalar fields on dark matter (DM) clustering are illustrated,...
The role of a scalar field is reexamined through the introduction of a quasi-quintessence model. Unl...
AbstractAt present we know nothing about the nature of the dark energy accounting for about 70% of t...
We revise the stability of the tracking solutions and briefly review the potentials of quintessence ...
We investigate some aspects of quintessence models with a non-minimally coupled scalar field and in ...
We consider the coupling of quintessence to observable matter in supergravity and study the dynamics...
Extended Higgs sectors have been studied extensively in context of dark matter phenomenology in tand...