Bayesian Reconstruction of the Velocity Distribution of Weakly Interacting Massive Particles from Direct Dark Matter Detection Data
arXiv:1403.5610 · doi:10.1088/1475-7516/2014/08/009
Abstract
In this paper, we extended our earlier work on the reconstruction of the (time-averaged) one-dimensional velocity distribution of Galactic Weakly Interacting Massive Particles (WIMPs) and introduce the Bayesian fitting procedure to the theoretically predicted velocity distribution functions. In this reconstruction process, the (rough) velocity distribution reconstructed by using raw data from direct Dark Matter detection experiments directly, i.e. measured recoil energies, with one or more different target materials, has been used as "reconstructed-input" information. By assuming a fitting velocity distribution function and scanning the parameter space based on the Bayesian analysis, the astronomical characteristic parameters, e.g. the Solar and Earth's Galactic velocities, will be pinned down as the output results. Our Monte-Carlo simulations show that this Bayesian scanning procedure could reconstruct the true (input) WIMP velocity distribution function pretty precisely with negligible systematic deviations of the reconstructed characteristic Solar and Earth's velocities and 1 sigma statistical uncertainties of <~ 20 km/s. Moreover, for the use of an improper fitting velocity distribution function, our reconstruction process could still offer useful information about the shape of the velocity distribution. In addition, by comparing these estimates to theoretical predictions, one could distinguish different (basic) functional forms of the theoretically predicted one-dimensional WIMP velocity distribution function with 2 sigma to 4 sigma confidence levels.
62 pages, 36 figures (121 eps plots), 18 tables; v2: revised version, compacted for publication
References in corpus (10)
- Direct dark matter detection: the next decade
- The Dark Matter at the End of the Galaxy
- Halo-to-Halo Similarity and Scatter in the Velocity Distribution of Dark Matter
- Complementarity of Dark Matter Direct Detection Targets
- Model-Independent Determination of the WIMP Mass from Direct Dark Matter Detection Data
- Determining the WIMP mass from a single direct detection experiment, a more detailed study
- Fundamental statistical limitations of future dark matter direct detection experiments
- Taming astrophysical bias in direct dark matter searches
- Parametrizing the local dark matter speed distribution: a detailed analysis
- Statistical coverage for supersymmetric parameter estimation: a case study with direct detection of dark matter
Cited by in corpus (3)
- AMIDAS-II: Upgrade of the AMIDAS Package and Website for Direct Dark Matter Detection Experiments and Phenomenology
- Reconstructing the WIMP Velocity Distribution from Direct Dark Matter Detection Data with a Non-Negligible Threshold Energy
- Effects of Threshold Energy on Reconstructions of Properties of Low-Mass WIMPs in Direct Dark Matter Detection Experiments