Exploring New Physics with O(keV) Electron Recoils in Direct Detection Experiments
arXiv:2006.14521 · doi:10.1007/JHEP01(2021)178
Abstract
Motivated by the recent XENON1T results, we explore various new physics models that can be discovered through searches for electron recoils in O(keV)-threshold direct-detection experiments. First, we consider the absorption of light bosons, either as dark matter relics or being produced directly in the Sun. In the latter case, we find that keV mass bosons produced in the Sun provide an adequate fit to the data but are excluded by stellar cooling constraints. We address this tension by introducing a novel Chameleon-like axion model, which can explain the excess while evading the stellar bounds. We find that absorption of bosonic dark matter provides a viable explanation for the excess only if the dark matter is a dark photon or an axion. In the latter case, photophobic axion couplings are necessary to avoid X-ray constraints. Second, we analyze models of dark matter-electron scattering to determine which models might explain the excess. Standard scattering of dark matter with electrons is generically in conflict with data from lower-threshold experiments. Momentum-dependent interactions with a heavy mediator can fit the data with dark matter mass heavier than a GeV but are generically in tension with collider constraints. Next, we consider dark matter consisting of two (or more) states that have a small mass splitting. The exothermic (down)scattering of the heavier state to the lighter state can fit the data for keV mass splittings. Finally, we consider a subcomponent of dark matter that is accelerated by scattering off cosmic rays, finding that dark matter interacting though an O(100 keV)-mass mediator can fit the data. The cross sections required in this scenario are, however, typically challenged by complementary probes of the light mediator. Throughout our study, we implement an unbinned Monte Carlo analysis and use an improved energy reconstruction of the XENON1T events.
v2: various corrections, clarifications, and additions. 50 pages, 9 pages references, 25 figures
References in corpus (54)
- A Theory of Dark Matter
- Revisiting the bound on axion-photon coupling from Globular Clusters
- SENSEI: Direct-Detection Results on sub-GeV Dark Matter from a New Skipper-CCD
- Light Dark Matter: Models and Constraints
- Bosonic super-WIMPs as keV-scale dark matter
- Exciting Dark Matter and the INTEGRAL/SPI 511 keV signal
- LEP Shines Light on Dark Matter
- Stellar cooling bounds on new light particles: plasma mixing effects
- Single-electron and single-photon sensitivity with a silicon Skipper CCD
- SENSEI: Direct-Detection Constraints on Sub-GeV Dark Matter from a Shallow Underground Run Using a Prototype Skipper-CCD
- Stellar Recipes for Axion Hunters
- Helioscope Bounds on Hidden Sector Photons
- Revisiting the axion bounds from the Galactic white dwarf luminosity function
- The Need for Purely Laboratory-Based Axion-Like Particle Searches
- Results on MeV-scale dark matter from a gram-scale cryogenic calorimeter operated above ground
- Compatibility of the chameleon-field model with fifth-force experiments, cosmology, and PVLAS and CAST results
- The photo-philic QCD axion
- Compatibility of CAST search with axion-like interpretation of PVLAS results
- Direct Detection of Multi-component Secluded WIMPs
- Low Energy Signatures of the TeV Scale See-Saw Mechanism
- Exothermic Dark Matter
- Limits on Axion Couplings from the first 80-day data of PandaX-II Experiment
- Self-Scattering for Dark Matter with an Excited State
- XENON1T excess from anomaly-free ALP dark matter and its implications for stellar cooling anomaly
- Boosted Dark Matter Interpretation of the XENON1T Excess
- Co-SIMP Miracle
- Solar axions cannot explain the XENON1T excess
- Dark Matter and the XENON1T electron recoil excess
- Impact of Resonance on Thermal Targets for Invisible Dark Photon Searches
- Search for the light dark matter with an X-ray spectrometer
- Atmospheric Dark Matter and Xenon1T Excess
- Explaining the XENON1T excess with Luminous Dark Matter
- Inelastic Dark Matter Electron Scattering and the XENON1T Excess
- Light new physics in XENON1T
- Neutrino self-interactions and XENON1T electron recoil excess
- Electric But Not Eclectic: Thermal Relic Dark Matter for the XENON1T Excess
- The Validity of the Weizsacker-Williams Approximation and the Analysis of Beam Dump Experiments: Production of a New Scalar Boson
- Light vector mediators facing XENON1T data
- PAMELA, DAMA, INTEGRAL and Signatures of Metastable Excited WIMPs
- Can Nonstandard Neutrino Interactions explain the XENON1T spectral excess?
- Anomaly-free flavor models for Nambu-Goldstone bosons and the 3.5 keV X-ray line signal
- XENON1T Anomaly and its Implication for Decaying Warm Dark Matter
- Prospects of Migdal Effect in the Explanation of XENON1T Electron Recoil Excess
- Hidden Photon Dark Matter in the Light of XENON1T and Stellar Cooling
- Gravitational Production of Hidden Photon Dark Matter in Light of the XENON1T Excess
- The Messenger Sector of SUSY Flavour Models and Radiative Breaking of Flavour Universality
- On-shell mediator dark matter models and the Xenon1T anomaly
- Exothermic Dark Matter for XENON1T Excess
- Collider Constraints on a Dark Matter Interpretation of the XENON1T Excess
- Investigating the XENON1T Low-Energy Electronic Recoil Excess Using NEST
- Galactic Origin of Relativistic Bosons and XENON1T Excess
- Self Interacting Dark Matter in the Solar System
- PVLAS experiment, star cooling and BBN constraints: Possible interpretation with temperature dependent gauge symmetry breaking
- Scalars Gliding Through an Expanding Universe
Cited by in corpus (58)
- Dark photon limits: a handbook
- A Next-Generation Liquid Xenon Observatory for Dark Matter and Neutrino Physics
- Looking forward to Lepton-flavor-violating ALPs
- Superradiance evolution of black hole shadows revisited
- Direct detection of dark energy: the XENON1T excess and future prospects
- Light Dark Matter from Inflaton Decay
- A Review of Basic Energy Reconstruction Techniques in Liquid Xenon and Argon Detectors for Dark Matter and Neutrino Physics Using NEST
- Electromagnetic Signatures of Dark Photon Superradiance
- The DFSZ axion in the CMB
- Dark Matter Absorption via Electronic Excitations
- Lepton-flavor violating axions at MEG II
- Earth-bound Milli-charge Relics
- Present and future status of light dark matter models from cosmic-ray electron upscattering
- Millicharged Cosmic Rays and Low Recoil Detectors
- Global fits of axion-like particles to XENON1T and astrophysical data
- Hunting for CP-violating axionlike particle interactions
- An Active-to-Sterile Neutrino Transition Dipole Moment and the XENON1T Excess
- Cosmic Axion Force
- The ups and downs of inelastic dark matter: Electron recoils from terrestrial upscattering
- Ultralight scalars in leptonic observables
- Light vector mediators at direct detection experiments
- Sun Heated MeV-scale Dark Matter and the XENON1T Electron Recoil Excess
- Novel constraints on fifth forces and ultralight dark sector with asteroidal data
- Endothermic self-interacting dark matter in Milky Way-like dark matter haloes
- Implications of the XENON1T Excess on the Dark Matter Interpretation
- Searching for axion-like particle decay in the near-infrared background: an updated analysis
- Dark matter substructures affect dark matter-electron scattering in xenon-based direct detection experiments
- Canonical seesaw implication for two-component dark matter
- The Spectrum of Dark Radiation as a Probe of Reheating
- Stellar limits on light CP-even scalar
- Electron-target experiment constraints on light dark matter produced in primordial black hole evaporation
- Solar Active-Sterile Neutrino Conversion with Atomic Effects at Dark Matter Direct Detection Experiments
- Detection of Inelastic Dark Matter via Electron Recoils in SENSEI
- Probing sub-GeV leptophilic dark matter at Belle II and NA64
- Axion-like particles from primordial black hole evaporation and their detection in neutrino experiments
- Exothermic dark mesons in light of electron recoil excess at XENON1T
- Prospects of nuclear-coupled-dark-matter detection via correlation spectroscopy of I and Ca
- Terrestrial Probes of Electromagnetically Interacting Dark Radiation
- PASSAT at Future Neutrino Experiments: Hybrid Beam-Dump-Helioscope Facilities to Probe Light Axion-Like Particles
- Accurate electron-recoil ionization factors for dark matter direct detection in xenon, krypton and argon
- Anomaly-free axion dark matter in three Higgs doublet model and its phenomenological implications
- Explorations of pseudo-Dirac dark matter having keV splittings and interacting via transition electric and magnetic dipole moments
- Type-II Majoron Dark Matter
- Migdal-type effect in the dark matter absorption process
- Constraining CP violating nucleon-nucleon long range interactions in diatomic eEDM searches
- Dark Fluxes from Accreting Black Holes and Direct Detections
- Probing new hadronic forces with heavy exotic atoms
- Positronium Decays with Dark and Fermionic Dark Matter
- A strong broadband 21 cm cosmological signal from dark matter spin-flip interactions
- Quasi-Sterile Neutrinos from Dark Sectors I. BSM matter effects in neutrino oscillations and the short-baseline anomalies
- Probing Light Inelastic Dark Matter from Direct Detection
- Can sub-GeV dark matter coherently scatter on the electrons in the Atom?
- Lorentz violating backgrounds from quadratic, shift-symmetric, ultralight dark matter
- Inelastic Dark Matter at the Fermilab Short Baseline Neutrino Program
- Millicharged Particles from the Heavens: Single- and Multiple-Scattering Signatures
- Neutrino masses, matter-antimatter asymmetry, dark matter, and supermassive black hole formation explained with Majorons
- The Dark Photon: a 2026 Perspective
- Dark Matter Effective Field Theory and an Application to Vector Dark Matter