AbstractWe propose a new class of inflation models in which the coefficient of the inflaton kinetic term rapidly changes with energy scale. This naturally occurs especially if the inflaton moves over a long distance during inflation as in the case of large-scale inflation. The peculiar behavior of the kinetic term opens up a new way to construct an inflation model. As a concrete example we construct a linear inflation model in supergravity. It is straightforward to build a chaotic inflation model with a fractional power along the same line. Interestingly, the potential takes a different form after inflation because of the running kinetic term
AbstractMultiple axions form a landscape in the presence of various shift symmetry breaking terms. E...
AbstractWe propose a multi-natural inflation model in which the single-field inflaton potential cons...
The measurement of a large tensor-to-scalar ratio by the BICEP2 experiment, <math altimg="si1.gif" x...
AbstractWe propose a new class of inflation models in which the coefficient of the inflaton kinetic ...
We investigate the effect of non-canonical kinetic terms on inflation in supergravity. We find that ...
It is shown that a large class of higher-order (i.e. non-quadratic) scalar kinetic terms can, withou...
It is shown that a large class of higher-order (i.e. non-quadratic) scalar kinetic terms can, withou...
We consider a possibility that one of the flat directions in the minimal supersymmetric standard mod...
AbstractA new family of inflation models is introduced and studied. The models are characterised by ...
We argue that there may arise a relatively flat inflaton potential over super-Planckian field values...
AbstractWe consider a possibility that one of the flat directions in the minimal supersymmetric stan...
A new family of inflation models is introduced and studied. The models are characterised by a scalar...
AbstractModels of chaotic inflation with a fractional power-law potential are not only viable but al...
Palatini $F(R)$ gravity proved to be a powerful tool in order to realize asymptotically flat inflato...
We propose a multi-natural inflation model in which the single-field inflaton potential consists of ...
AbstractMultiple axions form a landscape in the presence of various shift symmetry breaking terms. E...
AbstractWe propose a multi-natural inflation model in which the single-field inflaton potential cons...
The measurement of a large tensor-to-scalar ratio by the BICEP2 experiment, <math altimg="si1.gif" x...
AbstractWe propose a new class of inflation models in which the coefficient of the inflaton kinetic ...
We investigate the effect of non-canonical kinetic terms on inflation in supergravity. We find that ...
It is shown that a large class of higher-order (i.e. non-quadratic) scalar kinetic terms can, withou...
It is shown that a large class of higher-order (i.e. non-quadratic) scalar kinetic terms can, withou...
We consider a possibility that one of the flat directions in the minimal supersymmetric standard mod...
AbstractA new family of inflation models is introduced and studied. The models are characterised by ...
We argue that there may arise a relatively flat inflaton potential over super-Planckian field values...
AbstractWe consider a possibility that one of the flat directions in the minimal supersymmetric stan...
A new family of inflation models is introduced and studied. The models are characterised by a scalar...
AbstractModels of chaotic inflation with a fractional power-law potential are not only viable but al...
Palatini $F(R)$ gravity proved to be a powerful tool in order to realize asymptotically flat inflato...
We propose a multi-natural inflation model in which the single-field inflaton potential consists of ...
AbstractMultiple axions form a landscape in the presence of various shift symmetry breaking terms. E...
AbstractWe propose a multi-natural inflation model in which the single-field inflaton potential cons...
The measurement of a large tensor-to-scalar ratio by the BICEP2 experiment, <math altimg="si1.gif" x...