Decays into Light Scalar Dark Matter
arXiv:0909.4919 · doi:10.1103/PhysRevD.80.115019
Abstract
We examine decays of a spin-1 bottomonium into a pair of light scalar Dark Matter (DM) particles, assuming that Dark Matter is produced due to exchange of heavy degrees of freedom. We perform a model-independent analysis and derive formulae for the branching ratios of these decays. We confront our calculation results with the experimental data. We show that the considered branching ratios are within the reach of the present BaBaR experimental sensitivity. Thus, Dark Matter production in Upsilon decays leads to constraints on parameters of various models containing a light spin-0 DM particle. We illustrate this for the models with a "WIMPless miracle", in particular for a Gauge Mediated SUSY breaking scenario, with a spin-0 DM particle in the hidden sector. Another example considered is the type II 2HDM with a scalar DM particle.
37 pages, 10 figures, the final version
References in corpus (21)
- Observation of an anomalous positron abundance in the cosmic radiation
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Likelihoods and Parameters from the WMAP data
- Gauge Singlet Scalars as Cold Dark Matter
- First results from DAMA/LIBRA and the combined results with DAMA/NaI
- A new measurement of the antiproton-to-proton flux ratio up to 100 GeV in the cosmic radiation
- LHC Phenomenology of an Extended Standard Model with a Real Scalar Singlet
- The WIMPless Miracle: Dark Matter Particles without Weak-scale Masses or Weak Interactions
- Complex Singlet Extension of the Standard Model
- U-boson production in e+e- annihilations, psi and Upsilon decays, and Light Dark Matter
- WIMP dark matter, Higgs exchange and DAMA
- A Non-thermal WIMP Miracle
- A Natural Supersymmetric Model with MeV Dark Matter
- Decay constants and radiative decays of heavy mesons in light-front quark model
- Constraints on Light Dark Matter and U bosons, from psi, Upsilon, K+, pi0, eta and eta' decays
- The NMSSM Close to the R-symmetry Limit and Naturalness in Decays for $m_a<2\mb$
- Probing NMSSM Scenarios with Minimal Fine-Tuning by Searching for Decays of the Upsilon to a Light CP-Odd Higgs Boson
- Gamma rays from the annihilation of singlet scalar dark matter
- Scalar Dark Matter Effects in Higgs and Top Quark Decays
- Search for Invisible Decay of the
- Experimental constraints on nMSSM and implications on its phenomenology
- Dark Matter and LHC: What is the Connection?
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- Heavy quarkonium: progress, puzzles, and opportunities
- Direct Detection of sub-GeV Dark Matter with Scintillating Targets
- Multi-lepton Signatures of a Hidden Sector in Rare B Decays
- The Simplest Dark-Matter Model, CDMS II Results, and Higgs Detection at LHC
- Search for Production of Invisible Final States in Single-Photon Decays of Upsilon(1S)
- Dark matter and a suppression mechanism for neutrino masses in the Higgs triplet model
- Searching for light Dark Matter in heavy meson decays
- Hidden Higgs Boson at the LHC and Light Dark Matter Searches
- Gamma-rays from Dark Showers with Twin Higgs Models
- WIMPless Dark Matter from Non-Abelian Hidden Sectors with Anomaly-Mediated Supersymmetry Breaking
- Low Mass Dark Matter and Invisible Higgs Width In Darkon Models
- Probing Invisible Vector Meson Decays with NA64 and LDMX
- Scalar Dark Matter and Standard Model with Four Generations
- Particle Physics Implications and Constraints on Dark Matter Interpretations of the CDMS Signal
- Invisible Upsilon decays into Light Dark Matter
- A dark force for baryons
- Search for a light CP-odd Higgs boson and low-mass dark matter at the Belle experiment
- Constraints on Scalar Phantoms
- Complementary Constraints on Light Dark Matter from Heavy Quarkonium Decays
- WIMPless Dark Matter in Anomaly-Mediated Supersymmetry Breaking with Hidden QED
- Scalar Dark Matter Search at the LHC through FCNC Top Decay
- Search for Low-Mass Dark Matter at BABAR
- WIMPless Dark Matter from an AMSB Hidden Sector with No New Mass Parameters
- The implication of for the effective field theories of neutrino and dark matter
- Constraints on Light Dark Matter from Single-Photon Decays of Heavy Quarkonium
- Experimental review of the physics at colliders and the LHC
- Invisible decays of vector Charmonia and Bottomonia to determine the Weak Mixing Angle at quarkonia scale