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We employ an $^{88}$Y/Be photoneutron source to derive the quenching factor for neutron-induced nuclear recoils in germanium, probing recoil energies from a few hundred eV$_{nr}$ to 8.5keV$_{nr}$. A comprehensive Monte Carlo simulation of…

Instrumentation and Detectors · Physics 2016-12-28 B. J. Scholz , A. E. Chavarria , J. I. Collar , P. Privitera , A. E. Robinson

Germanium is the detector material of choice in many rare-event searches looking for low-energy nuclear recoils induced by dark matter particles or neutrinos. We perform a systematic exploration of its quenching factor for sub-keV nuclear…

Nuclear Experiment · Physics 2021-06-30 J. I. Collar , A. R. L. Kavner , C. M. Lewis

This article reports the measurement of the ionization quenching factor in germanium for nuclear recoil energies between 0.4 and 6.3 keV$_{nr}$. Precise knowledge of this factor in this energy range is relevant for coherent elastic…

Instrumentation and Detectors · Physics 2022-09-20 A. Bonhomme , H. Bonet , C. Buck , J. Hakenmüller , G. Heusser , T. Hugle , M. Lindner , W. Maneschg , R. Nolte , T. Rink , E. Pirovano , H. Strecker

Ionization produced by low-energy nuclear recoils is among the primary direct signatures of dark matter interactions. Despite the urgency of dark matter detection and the recent measurements of coherent elastic neutrino-nucleus scattering,…

Nuclear Experiment · Physics 2024-09-24 A. R. L. Kavner , I. Jovanovic

The discrepancies in claims of experimental evidence in the search for weakly interacting massive particle (WIMP) dark matter necessitate a model for ionization efficiency (the quenching factor) at energies below 10 keV. We have carefully…

Instrumentation and Methods for Astrophysics · Physics 2015-06-04 D. Barker , D. -M. Mei

Two photo-neutron sources, $^{88}$Y$^{9}$Be and $^{124}$Sb$^{9}$Be, have been used to investigate the ionization yield of nuclear recoils in the CDMSlite germanium detectors by the SuperCDMS collaboration. This work evaluates the yield for…

Instrumentation and Detectors · Physics 2022-11-24 SuperCDMS Collaboration , M. F. Albakry , I. Alkhatib , D. W. P. Amaral , T. Aralis , T. Aramaki , I. J. Arnquist , I. Ataee Langroudy , E. Azadbakht , S. Banik , C. Bathurst , D. A. Bauer , L. V. S. Bezerra , R. Bhattacharyya , M. A. Bowles , P. L. Brink , R. Bunker , B. Cabrera , R. Calkins , R. A. Cameron , C. Cartaro , D. G. Cerdeño , Y. -Y. Chang , M. Chaudhuri , R. Chen , N. Chott , J. Cooley , H. Coombes , J. Corbett , P. Cushman , F. De Brienne , M. L. di Vacri , M. D. Diamond , E. Fascione , E. Figueroa-Feliciano , C. W. Fink , K. Fouts , M. Fritts , G. Gerbier , R. Germond , M. Ghaith , S. R. Golwala , J. Hall , B. A. Hines , M. I. Hollister , Z. Hong , E. W. Hoppe , L. Hsu , M. E. Huber , V. Iyer , A. Jastram , V. K. S. Kashyap , M. H. Kelsey , A. Kubik , N. A. Kurinsky , R. E. Lawrence , M. Lee , A. Li , J. Liu , Y. Liu , B. Loer , P. Lukens , D. MacDonell , D. B. MacFarlane , R. Mahapatra , V. Mandic , N. Mast , A. J. Mayer , H. Meyer zu Theenhausen , É. Michaud , E. Michielin , N. Mirabolfathi , B. Mohanty , J. D. Morales Mendoza , S. Nagorny , J. Nelson , H. Neog , V. Novati , J. L. Orrell , M. D. Osborne , S. M. Oser , W. A. Page , R. Partridge , D. S. Pedreros , R. Podviianiuk , F. Ponce , S. Poudel , A. Pradeep , M. Pyle , W. Rau , E. Reid , R. Ren , T. Reynolds , A. Roberts , A. E. Robinson , T. Saab , B. Sadoulet , I. Saikia , J. Sander , A. Sattari , A. Scarff , B. Schmidt , R. W. Schnee , S. Scorza , B. Serfass , D. J. Sincavage , C. Stanford , J. Street , F. K. Thasrawala , D. Toback , R. Underwood , S. Verma , A. N. Villano , B. von Krosigk , S. L. Watkins , O. Wen , Z. Williams , M. J. Wilson , J. Winchell , K. Wykoff , S. Yellin , B. A. Young , T. C. Yu , B. Zatschler , S. Zatschler , A. Zaytsev , E. Zhang , L. Zheng , S. Zuber

Nuclear recoils in germanium and silicon are shown to have much larger variance in electron-hole production than their electron-recoil counterparts for recoil energies between 10 and 200\,keV. This effect--owing primarily to deviations in…

Instrumentation and Detectors · Physics 2022-12-13 M. Matheny , A. Roberts , A. Srinivasan , A. N. Villano

Results of observations of low energy nuclear and electron recoil events in liquid xenon scintillator detectors are given. The relative scintillation efficiency for nuclear recoils is 0.22 +/- 0.01 in the recoil energy range 40 keV - 70…

Nuclear recoil measurements with high-purity Germanium detectors are very promising to directly detect dark matter candidates. The main background sources in such experiments are natural radioactivity and microphonic noise. Digital pulse…

High Energy Physics - Experiment · Physics 2009-10-31 L. Baudis , J. Hellmig , H. V. Klapdor-Kleingrothaus , Y. Ramachers , J. W. Hammer , A. Mayer

We report an absolute energy response function to electronic and nuclear recoils for germanium and liquid xenon detectors. As a result, we show that the detection energy threshold of nuclear recoils for a dual-phase xenon detector can be a…

Instrumentation and Detectors · Physics 2017-03-29 D. -M. Mei , W. -Z. Wei , L. Wang

We study the basic integral equation in Lindhard's theory describing the energy given to atomic motion by nuclear recoils in a pure material when the atomic binding energy is taken into account. The numerical solution, which depends only on…

High Energy Physics - Phenomenology · Physics 2020-05-06 Youssef Sarkis , Alexis Aguilar-Arevalo , Juan Carlos D'Olivo

We report a measurement of the ionization efficiency of silicon nuclei recoiling with sub-keV kinetic energy in the bulk silicon of a charge-coupled device (CCD). Nuclear recoils are produced by low-energy neutrons ($<$24 keV) from a…

The potential of the GENIUS proposal to measure the spectrum of low energy solar neutrinos in real time is studied. The detection reaction is elastic neutrino-electron scattering. The energy resolution for detecting the recoil electrons is…

High Energy Physics - Experiment · Physics 2014-11-17 L. Baudis , H. V. Klapdor-Kleingrothaus

We have measured the ionization efficiency of silicon nuclear recoils with kinetic energy between 1.8 and 20 keV. We bombarded a silicon-drift diode with a neutron beam to perform an elastic-scattering experiment. A broad-energy neutron…

Nuclear recoil ionization yield constitutes a critical uncertainty source in low-energy detection for dark matter (DM) and coherent elastic neutrino-nucleus scattering (CE$\nu$NS) experiments. We present a novel methodology employing…

Instrumentation and Detectors · Physics 2026-03-18 Chang-Hao Fang

We present a model for the nuclear recoil ionization efficiency in silicon based on an extension of Lindhard's theory where atomic bond disruption is modeled as a function of the initial ion energy, the interatomic potential, and the…

Atomic Physics · Physics 2023-06-21 Y. Sarkis , A. Aguilar-Arevalo , J. C. D'Olivo

The most precise to-date evaluation of the nuclear recoil effect on the $n=1$ and $n=2$ energy levels of He-like ions is presented in the range $Z=12-100$. The one-electron recoil contribution is calculated within the framework of the…

Atomic Physics · Physics 2018-04-03 A. V. Malyshev , R. V. Popov , V. M. Shabaev , N. A. Zubova

The Super Cryogenic Dark Matter Search experiment (SuperCDMS) at the Soudan Underground Laboratory studied energy loss associated with Frenkel defect formation in germanium crystals at mK temperatures using in situ $^{210}$Pb sources. We…

Instrumentation and Detectors · Physics 2019-04-17 Robert Agnese , Taylor Aralis , Tsuguo Aramaki , Isaac Arnquist , Elham Azadbakht , William Baker , Samir Banik , D'Ann Barker , Dan Bauer , Thomas Binder , Michael Bowles , Paul Brink , Ray Bunker , Blas Cabrera , Robert Calkins , Concetta Cartaro , David Cerdeno , Yen-Yung Chang , Jodi Cooley , Brett Cornell , Priscilla Cushman , Philippe Di Stefano , Todd Doughty , Eleanor Fascione , Tali Figueroa , Caleb Fink , Matt Fritts , Gilles Gerbier , Richard Germond , Muad Ghaith , Sunil Golwala , Rusty Harris , Ziqing Hong , Eric Hoppe , Lauren Hsu , Martin Huber , Vijay Iyer , Dan Jardin , Chitrasen Jena , Michael Kelsey , Allison Kennedy , Andrew Kubik , Noah Kurinsky , Richard Lawrence , Ben Loer , Elias Lopez-Asamar , Pat Lukens , Danika MacDonell , Rupak Mahapatra , Vuk Mandic , Nicholas Mast , Eric Miller , Nader Mirabolfathi , Bedangadas Mohanty , Jorge Morales , Jack Nelson , John Orrell , Scott Oser , William Page , Richard Partridge , Mark Pepin , Francisco Ponce , Sudip Poudel , Matt Pyle , Hang Qiu , Wolfgang Rau , Angela Reisetter , Tom Ren , Tyler Reynolds , Amy Roberts , Alan Robinson , Hannah Rogers , Tarek Saab , Bernard Sadoulet , Joel Sander , Andrew Scarff , Richard Schnee , Silvia Scorza , Kartik Senapati , Bruno Serfass , Danielle Speller , Matthew Stein , Joseph Street , Hirohisa Tanaka , David Toback , Ryan Underwood , Anthony Villano , Belina von Krosigk , Samuel Watkins , Jon Wilson , Matthew Wilson , Joshua Winchell , Dennis Wright , Steve Yellin , Betty Young , Xiaohe Zhang , Xuji Zhao

This paper presents progress on the development of a cryostat intended to improve upon the low-energy threshold (below 0.5 keV) of p-type point contact germanium gamma-ray spectrometers. Ultra-low energy thresholds are important in the…

We report on a search for low-energy (E < 20 keV) WIMP-induced nuclear recoils using data collected in 2009 - 2010 by EDELWEISS from four germanium detectors equipped with thermal sensors and an electrode design (ID) which allows to…

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