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In most direct detection experiments, the free nuclear recoil description of dark matter scattering breaks down for masses $\lesssim$ 100 MeV, or when the recoil energy is comparable to a few times the typical phonon energy. For dark matter…

High Energy Physics - Phenomenology · Physics 2023-08-28 Brian Campbell-Deem , Simon Knapen , Tongyan Lin , Ethan Villarama

High-energy photons with $\mathcal{O}$(MeV) energies from radioactive contaminants can scatter in a solid-state target material and constitute an important low-energy background for sub-GeV dark matter direct-detection searches. This…

High Energy Physics - Phenomenology · Physics 2022-08-17 Kim V. Berghaus , Rouven Essig , Yonit Hochberg , Yutaro Shoji , Mukul Sholapurkar

At sufficiently low nuclear recoil energy, the scattering of dark matter (DM) in crystals gives rise to single phonon and multiphonon excitations. In anisotropic crystals, the scattering rate into phonons modulates over each sidereal day as…

High Energy Physics - Phenomenology · Physics 2024-11-07 Connor Stratman , Tongyan Lin

The scattering of sub-GeV dark matter in direct detection experiments happens at characteristic wavelengths comparable or larger than the interparticle spacing. Collective effects in the target material must therefore be accounted for when…

High Energy Physics - Phenomenology · Physics 2023-08-02 Simon Knapen

We consider the scattering of dark matter particles from superfluid liquid $^4$He, which has been proposed as a target for their direct detection. Focusing on dark matter masses below ~1 MeV, we demonstrate from sum-rule arguments the…

High Energy Physics - Phenomenology · Physics 2021-06-18 Gordon Baym , D. H. Beck , Jeffrey P. Filippini , C. J. Pethick , Jessie Shelton

We explored the efficacy of lab-grown diamonds as potential target materials for the direct detection of sub-GeV dark matter~(DM) using metallic magnetic calorimeters~(MMCs). Diamond, with its excellent phononic properties and the low…

Instrumentation and Detectors · Physics 2025-03-26 I. Kim , N. A. Kurinsky , H. Kagan , S. T. P. Boyd , G. B. Kim

Direct detection experiments are looking for nuclear recoils from scattering of sub-GeV dark matter (DM) in crystals, and have thresholds as low as ~ 10 eV or DM masses of ~ 100 MeV. Future experiments are aiming for even lower thresholds.…

High Energy Physics - Phenomenology · Physics 2023-09-21 Tongyan Lin , Chia-Hsien Shen , Mukul Sholapurkar , Ethan Villarama

We examine in depth a recent proposal to utilize superfluid helium for direct detection of sub-MeV mass dark matter. For sub-keV recoil energies, nuclear scattering events in liquid helium primarily deposit energy into long-lived phonon and…

High Energy Physics - Phenomenology · Physics 2017-03-29 Simon Knapen , Tongyan Lin , Kathryn M. Zurek

We describe a novel search for MeV-to-GeV-mass dark matter, in which the dark matter scatters off electrons in a scintillating target. The excitation and subsequent de-excitation of the electron produces one or more photons, which could be…

High Energy Physics - Phenomenology · Physics 2017-08-02 Stephen Derenzo , Rouven Essig , Andrea Massari , Adrían Soto , Tien-Tien Yu

We employ an effective field theory to study the detectability of sub-GeV dark matter through its interaction with the gapless excitations of superfluid helium-4. In a quantum field theory language, the possible interactions between the…

High Energy Physics - Phenomenology · Physics 2019-07-03 Francesca Acanfora , Angelo Esposito , Antonio D. Polosa

When a nucleus in an atom undergoes a collision, there is a small probability to inelastically excite an electron as a result of the Migdal effect. In this Letter, we present a first complete derivation of the Migdal effect from dark…

High Energy Physics - Phenomenology · Physics 2021-09-07 Simon Knapen , Jonathan Kozaczuk , Tongyan Lin

We show how the relativistic effective field theory for the superfluid phase of helium-4 can replace the standard methods used to compute the production rates of low momentum excitations due to the interaction with an external probe. This…

High Energy Physics - Phenomenology · Physics 2019-12-11 Andrea Caputo , Angelo Esposito , Antonio D. Polosa

Scattering of light dark matter with sub-eV energy deposition can be detected with collective excitations in condensed matter systems. When dark matter has spin-independent couplings to atoms or ions, it has been shown to efficiently excite…

High Energy Physics - Phenomenology · Physics 2020-05-27 Tanner Trickle , Zhengkang Zhang , Kathryn M. Zurek

We propose to use high-purity lab-grown diamond for the detection of sub-GeV dark matter. Diamond targets can be sensitive to both nuclear and electron recoils from dark matter scattering in the MeV and above mass range, as well as to…

High Energy Physics - Experiment · Physics 2019-06-19 Noah Kurinsky , To Chin Yu , Yonit Hochberg , Blas Cabrera

We present the analysis of a new signature for light dark matter detection with superfluid $^4$He: the emission of three phonons. We show that, in a region of mass below the MeV, the kinematics of this process can offer a way to reconstruct…

High Energy Physics - Phenomenology · Physics 2021-03-31 Andrea Caputo , Angelo Esposito , Fulvio Piccinini , Antonio D. Polosa , Giuseppe Rossi

We consider the direct detection of dark matter (DM) with polar materials, where single production of optical or acoustic phonons gives excellent reach to scattering of sub-MeV DM for both scalar and vector mediators. Using Density…

High Energy Physics - Phenomenology · Physics 2019-01-02 Sinead Griffin , Simon Knapen , Tongyan Lin , Kathryn M. Zurek

We present a unified theoretical framework for computing spin-independent direct detection rates via various channels relevant for sub-GeV dark matter -- nuclear recoils, electron transitions and single phonon excitations. Despite the very…

High Energy Physics - Phenomenology · Physics 2021-10-29 Tanner Trickle , Zhengkang Zhang , Kathryn M. Zurek , Katherine Inzani , Sinéad M. Griffin

We calculate the scattering rate of sub-GeV dark matter in solid-state targets for spin-dependent dark matter -- nucleon interactions. For dark matter particles with mass below 100 MeV, the scattering occurs predominantly through incoherent…

High Energy Physics - Phenomenology · Physics 2025-06-16 Stefania Gori , Simon Knapen , Tongyan Lin , Pankaj Munbodh , Bethany Suter

Direct detection strategies are proposed for dark matter particles with MeV to GeV mass. In this largely unexplored mass range, dark matter scattering with electrons can cause single-electron ionization signals, which are detectable with…

High Energy Physics - Phenomenology · Physics 2012-06-01 Rouven Essig , Jeremy Mardon , Tomer Volansky

We show that axion dark matter in the range meV $\lesssim m_a\lesssim$ 100 meV can incoherently excite phonons in crystal targets with unpolarised nuclear spins. This can occur through its coupling to nuclear spins and/or through its…

High Energy Physics - Phenomenology · Physics 2024-11-19 Itay M. Bloch , Simon Knapen , Amalia Madden , Giacomo Marocco
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