Peaked Signals from Dark Matter Velocity Structures in Direct Detection Experiments
arXiv:1003.3664 · doi:10.1088/1475-7516/2010/06/032
Abstract
In direct dark matter detection experiments, conventional elastic scattering of WIMPs results in exponentially falling recoil spectra. In contrast, theories of WIMPs with excited states can lead to nuclear recoil spectra that peak at finite recoil energies E_R. The peaks of such signals are typically fairly broad, with Delta E_R/E_peak ~ 1. We show that in the presence of dark matter structures with low velocity dispersion, such as streams or clumps, peaks from up-scattering can become extremely narrow with FWHM of a few keV only. This differs dramatically from the conventionally expected WIMP spectrum and would, once detected, open the possibility to measure the dark matter velocity structure with a fantastic accuracy. As an intriguing example, we confront the observed cluster of 3 events near 42 keV from the CRESST commissioning run with this scenario, and find a wide range of parameters capable for producing such a peak. We compare the possible signals at other experiments, and find that such a particle could also give rise to the signal at DAMA, although not from the same stream. Over some range of parameters a signal would be visible at xenon experiments. We show that such dark matter peaks are a very clear signal, and can be easily disentangled from potential backgrounds, both terrestrial or due to WIMP down-scattering, by an enhanced annual modulation signature in both the amplitude of the signal and its shape.
23 pages, 12 figures
References in corpus (37)
- Observation of an anomalous positron abundance in the cosmic radiation
- Local Kinematics and the Local Standard of Rest
- A Theory of Dark Matter
- New results from DAMA/LIBRA
- Results from the Final Exposure of the CDMS II Experiment
- The Sagittarius Dwarf Galaxy: a Model for Evolution in a Triaxial Milky Way Halo
- Non-Abelian Dark Sectors and Their Collider Signatures
- Thin, thick and dark discs in LCDM
- Probing Dark Forces and Light Hidden Sectors at Low-Energy e+e- Colliders
- Dark Matter Direct Detection with Non-Maxwellian Velocity Structure
- Phase-space structure in the local dark matter distribution and its signature in direct detection experiments
- Heavy Dark Matter Through the Higgs Portal
- Kinetic Mixing as the Origin of Light Dark Scales
- Inelastic Dark Matter in Light of DAMA/LIBRA
- Minimal Dark Matter predictions for galactic positrons, anti-protons, photons
- Results from the First Science Run of the ZEPLIN-III Dark Matter Search Experiment
- Annual Modulation of Dark Matter in the Presence of Streams
- First limits on WIMP nuclear recoil signals in ZEPLIN-II: a two phase xenon detector for dark matter detection
- Commissioning Run of the CRESST-II Dark Matter Search
- Candidates for Inelastic Dark Matter
- Capture of Inelastic Dark Matter in White Dwarves
- Direct Detection of Multi-component Secluded WIMPs
- Global interpretation of direct Dark Matter searches after CDMS-II results
- The Inert Doublet Model and Inelastic Dark Matter
- Investigating halo substructures with annual modulation signature
- High Energy Positrons and the WMAP Haze from Exciting Dark Matter
- Is the sky falling? Searching for stellar streams in the local Milky Way disc in the CORAVEL and RAVE surveys
- Resonant Dark Matter
- Using the Energy Spectrum at DAMA/LIBRA to Probe Light Dark Matter
- Capture of Inelastic Dark Matter in the Sun
- PAMELA, DAMA, INTEGRAL and Signatures of Metastable Excited WIMPs
- Determining the WIMP mass from a single direct detection experiment, a more detailed study
- Search for Dark Matter with CRESST
- Inelastic Dark Matter As An Efficient Fuel For Compact Stars
- Neutrino Constraints on Inelastic Dark Matter after CDMS II
- Neutron Background Studies for the CRESST Dark Matter Experiment
- EDELWEISS-II Dark Matter Search : status and first results
Cited by in corpus (19)
- The Tevatron at the Frontier of Dark Matter Direct Detection
- Cores in Dwarf Galaxies from Dark Matter with a Yukawa Potential
- Non-relativistic effective theory of dark matter direct detection
- Integrating Out Astrophysical Uncertainties
- A Next-Generation Liquid Xenon Observatory for Dark Matter and Neutrino Physics
- Magnetic Inelastic Dark Matter
- Exothermic Dark Matter
- Interpreting Dark Matter Direct Detection Independently of the Local Velocity and Density Distribution
- Direct Detection of Dark Matter Debris Flows
- Exploring New Physics with O(keV) Electron Recoils in Direct Detection Experiments
- Can CoGeNT and DAMA Modulations Be Due to Dark Matter?
- Flavored Dark Matter in Direct Detection Experiments and at LHC
- A CoGeNT Modulation Analysis
- Impure Thoughts on Inelastic Dark Matter
- Probing the Local Velocity Distribution of WIMP Dark Matter with Directional Detectors
- Direct Detection of Dynamical Dark Matter
- The Poker Face of Inelastic Dark Matter: Prospects at Upcoming Direct Detection Experiments
- Effective field theory and inelastic dark matter results from XENON1T
- Higgs properties in the Stealth Doublet Model