Parametrizing the local dark matter speed distribution: a detailed analysis
arXiv:1312.1852 · doi:10.1103/PhysRevD.89.085026
Abstract
In a recent paper, a new parametrization for the dark matter (DM) speed distribution f(v) was proposed for use in the analysis of data from direct detection experiments. This parametrization involves expressing the logarithm of the speed distribution as a polynomial in the speed v. We present here a more detailed analysis of the properties of this parametrization. We show that the method leads to statistically unbiased mass reconstructions and exact coverage of credible intervals. The method performs well over a wide range of DM masses, even when finite energy resolution and backgrounds are taken into account. We also show how to select the appropriate number of basis functions for the parametrization. Finally, we look at how the speed distribution itself can be reconstructed, and how the method can be used to determine if the data are consistent with some test distribution. In summary, we show that this parametrization performs consistently well over a wide range of input parameters and over large numbers of statistical ensembles and can therefore reliably be used to reconstruct both the DM mass and speed distribution from direct detection data.
14 pages, 13 figures
References in corpus (16)
- Dark Matter Results from 225 Live Days of XENON100 Data
- The RAVE Survey: Constraining the Local Galactic Escape Speed
- On the local dark matter density
- Non-relativistic effective theory of dark matter direct detection
- Phase-space structure in the local dark matter distribution and its signature in direct detection experiments
- First results from a Dark Matter search with liquid Argon at 87 K in the Gran Sasso Underground Laboratory
- 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
- Dependence of direct detection signals on the WIMP velocity distribution
- 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
- Dark Matter Indirect Signatures
- Taming astrophysical bias in direct dark matter searches
- Improved determination of the WIMP mass from direct detection data
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