AbstractCombining feebly interacting massive particle (FIMP) dark matter (DM) with scale invariance (SI) leads to extremely light FIMP (thus the FImP) with FImP miracle, i.e., the mass and relic generations of FImP DM share the same dynamics. In this paper we show that due to the lightness of FImP, it, especially for a scalar FImP, can easily accommodate large DM self-interaction. For a fermionic FImP, such as the sterile neutrino, self-interaction additionally requires a mediator which is another FImP, a scalar boson with mass either much lighter or heavier than the FImP DM. DM self-interaction opens a new window to observe FImP (miracle), which does not leave traces in the conventional DM searches. As an example, FImP can account for the ...
In this study, we investigate the feasibility of Feebly Interacting Massive particles (FIMP) as poss...
Feebly Interacting Massive Particles (FIMPs) are dark matter candidates that never thermalize in the...
Feebly Interacting Massive Particles (FIMPs) are dark matter candidates that never thermalize in the...
AbstractCombining feebly interacting massive particle (FIMP) dark matter (DM) with scale invariance ...
In this article we propose a class of extremely light feebly interacting massive particle, FI m Ps. ...
For more than eighty years, we face evidence that about 26% of the energy budget of the universe tod...
In this article we propose a class of extremely light feebly interacting massive particle, FImPs. Th...
We study dark matter production in scenarios where a scale invariant hidden sector interacts with th...
We propose a self-interacting inelastic dark matter (DM) scenario as a possible origin of the recent...
The scotogenic model is one of the simplest scenarios for physics beyond the Standard Model that can...
A small fraction of millicharged dark matter (DM) is considered in the literature to give an interpr...
Self-interacting dark matter (SIDM) with a light mediator is a promising scenario to alleviate the s...
We propose and study a scalar extension of the Standard Model which respects a ℤ3 symmetry remnant o...
We present an overview of scenarios where the observed Dark Matter (DM) abundance consists of Feebly...
We briefly review scenarios with feebly interacting particles (FIMPs) as dark matter candidates. The...
In this study, we investigate the feasibility of Feebly Interacting Massive particles (FIMP) as poss...
Feebly Interacting Massive Particles (FIMPs) are dark matter candidates that never thermalize in the...
Feebly Interacting Massive Particles (FIMPs) are dark matter candidates that never thermalize in the...
AbstractCombining feebly interacting massive particle (FIMP) dark matter (DM) with scale invariance ...
In this article we propose a class of extremely light feebly interacting massive particle, FI m Ps. ...
For more than eighty years, we face evidence that about 26% of the energy budget of the universe tod...
In this article we propose a class of extremely light feebly interacting massive particle, FImPs. Th...
We study dark matter production in scenarios where a scale invariant hidden sector interacts with th...
We propose a self-interacting inelastic dark matter (DM) scenario as a possible origin of the recent...
The scotogenic model is one of the simplest scenarios for physics beyond the Standard Model that can...
A small fraction of millicharged dark matter (DM) is considered in the literature to give an interpr...
Self-interacting dark matter (SIDM) with a light mediator is a promising scenario to alleviate the s...
We propose and study a scalar extension of the Standard Model which respects a ℤ3 symmetry remnant o...
We present an overview of scenarios where the observed Dark Matter (DM) abundance consists of Feebly...
We briefly review scenarios with feebly interacting particles (FIMPs) as dark matter candidates. The...
In this study, we investigate the feasibility of Feebly Interacting Massive particles (FIMP) as poss...
Feebly Interacting Massive Particles (FIMPs) are dark matter candidates that never thermalize in the...
Feebly Interacting Massive Particles (FIMPs) are dark matter candidates that never thermalize in the...