Gravitino/Axino as Decaying Dark Matter and Cosmological Tensions
arXiv:1705.04521 · doi:10.1016/j.physletb.2017.06.071
Abstract
In supersymmetric axion models, if the gravitino or axino is the lightest SUSY particle (LSP), the other is often the next-to-LSP (NLSP). We investigate the cosmology of such a scenario and point out that the lifetime of the NLSP naturally becomes comparable to the present age of the universe in a viable parameter region. This is a well-motivated example of the so-called decaying dark matter model, which is recently considered as an extension of the CDM model to relax some cosmological tensions.
16 pages, 2 figures, Journal version
References in corpus (21)
- A 2.4% Determination of the Local Value of the Hubble Constant
- KiDS-450: Cosmological parameter constraints from tomographic weak gravitational lensing
- Big-Bang Nucleosynthesis and Gravitino
- Reconciling Planck with the local value of in extended parameter space
- Thermal production of gravitinos
- Resonant detection of axion mediated forces with Nuclear Magnetic Resonance
- Reconciling CMB and structure growth measurements with dark energy interactions
- A fresh look at linear cosmological constraints on a decaying dark matter component
- Pseudoscalar - sterile neutrino interactions: reconciling the cosmos with neutrino oscillations
- Partially Acoustic Dark Matter, Interacting Dark Radiation, and Large Scale Structure
- Search for sterile neutrinos in holographic dark energy cosmology: Reconciling Planck observation with the local measurement of the Hubble constant
- How the Dark Energy Can Reconcile \textit{Planck} with Local Determination of the Hubble Constant
- Light dark photon and fermionic dark radiation for the Hubble constant and the structure formation
- Cosmological implications of supersymmetric axion models
- Residual Non-Abelian Dark Matter and Dark Radiation
- Metastable GeV-scale particles as a solution to the cosmological lithium problem
- Flavor versus mass eigenstates in neutrino asymmetries: implications for cosmology
- Axions and saxions from the primordial supersymmetric plasma and extra radiation signatures
- A comment on power-law inflation with a dark radiation component
- Inflation from a Supersymmetric Axion Model
- The mu-problem and axion in gauge mediation
Cited by in corpus (14)
- Converting non-relativistic dark matter to radiation
- Searching for dark matter - dark energy interactions: going beyond the conformal case
- Quintessence Axion Dark Energy and a Solution to the Hubble Tension
- MeV-GeV -ray telescopes probing axino LSP/gravitino NLSP as dark matter in the SSM
- Constraints on decaying dark matter from weak lensing and cluster counts
- Axion Dark Radiation: Hubble Tension and Hyper-kamiokande Neutrino Experiment
- Enlightening the dark ages with dark matter
- Decaying axinolike dark matter: Discriminative solution to small-scale issues
- Constraints on brane inflation after Planck 2015: Impacts of the latest local measurement of the Hubble constant
- Gravitino Cosmology Helped by a Right Handed (S)Neutrino
- Common Origin of Warm Dark Matter and Dark Radiation
- Right-handed sneutrino and gravitino multicomponent dark matter in light of neutrino detectors
- Gauge mediation without gravitino problem by virtue of the QCD anomaly
- Fenomenología de modelos supersimétricos: partículas y materia oscura