On the dark matter origin of an LDMX signal
arXiv:2411.10216 · doi:10.1088/1475-7516/2025/07/020
Abstract
Fixed target experiments where beam electrons are focused upon a thin target have shown great potential for probing new physics, including the sub-GeV dark matter (DM) paradigm. However, a signal in future experiments such as the light dark matter experiment (LDMX) would require an independent validation to assert its DM origin. To this end, we propose to combine LDMX and next generation DM direct detection (DD) data in a four-step analysis strategy, which we here illustrate with Monte Carlo simulations. In the first step, the hypothetical LDMX signal (i.e. an excess in the final state electron energy and transverse momentum distributions) is . In the second step, a DM DD experiment operates with increasing exposure to test the DM origin of the LDMX signal. Here, LDMX and DD data are simulated. In the third step, a posterior probability density function (pdf) for the DM model parameters is extracted from the DD data, and used to the electron recoil energy and transverse momentum distributions at LDMX. In the last step, and electron recoil energy and transverse momentum distributions are compared in a chi-square test. We present the results of this comparison in terms of a threshold exposure that a DD experiment has to operate with to assert whether and distributions be statistically dependent. We find that this threshold exposure grows with the DM particle mass, . It varies from 0.012 kg-year for a DM mass of MeV to 1 kg-year for MeV, which is or will soon be within reach.
Version accepted for publication in JCAP
References in corpus (10)
- New Fixed-Target Experiments to Search for Dark Gauge Forces
- GPAW: An open Python package for electronic-structure calculations
- Light dark matter in neutrino beams: production modelling and scattering signatures at MiniBooNE, T2K and SHiP
- First Constraints from DAMIC-M on Sub-GeV Dark-Matter Particles Interacting with Electrons
- DarkELF: A python package for dark matter scattering in dielectric targets
- Probing Invisible Vector Meson Decays with NA64 and LDMX
- Resonant or asymmetric: The status of sub-GeV dark matter
- Dark matter - electron interactions in materials beyond the dark photon model
- Current Status and Future Prospects for the Light Dark Matter eXperiment
- Linear response theory for light dark matter-electron scattering in materials