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Recently, in February 2014, we held a comprehensive meeting at UCLA on the Search for Dark Matter. 190 scientists came to the meeting, many of the leaders in the field of WIMP Dark Matter searches. We first review the data from LUX that…

High Energy Astrophysical Phenomena · Physics 2014-06-23 David Cline

The EDELWEISS-II collaboration has performed a direct search for WIMP dark matter with an array of ten 400 g heat-and-ionization cryogenic detectors equipped with interleaved electrodes for the rejection of near-surface events. Six months…

We identify the maximum cross sections probed by single-scatter ``WIMP" searches in dark matter direct detection. Due to Poisson fluctuations in scatter multiplicity, these ceilings scale logarithmically with mass for heavy dark matter and…

High Energy Physics - Phenomenology · Physics 2024-06-26 Nirmal Raj , Biprajit Mondal

The details of what constitutes the majority of the mass that makes up dark matter in the Universe remains one of the prime puzzles of cosmology and particle physics today - eighty years after the first observational indications. Today, it…

High Energy Astrophysical Phenomena · Physics 2015-12-16 Stefan Funk

We report the following calculations for a recently proposed bosonic dark matter WIMP with well-defined interactions: (1)~the mass as determined by fitting to the relic abundance; (2)~the current annihilation cross-section for indirect…

High Energy Physics - Phenomenology · Physics 2025-09-10 Bailey Tallman , Jehu Martinez , Rohan Shankar , Kane Rylander , Roland E. Allen

Dark Matter experiments searching for Weakly interacting massive particles (WIMPs) primarily use nuclear recoils (NRs) in their attempt to detect WIMPs. Migdal-induced electronic recoils (ERs) provide additional sensitivity to light Dark…

High Energy Physics - Phenomenology · Physics 2022-12-22 J. R. Angevaare , G. Bertone , A. P. Colijn , M. P. Decowski , B. J. Kavanagh

This report describes the experimental strategy and technologies for XLZD, the next-generation xenon observatory sensitive to dark matter and neutrino physics. In the baseline design, the detector will have an active liquid xenon target of…

High Energy Physics - Experiment · Physics 2025-10-29 XLZD Collaboration , J. Aalbers , K. Abe , M. Adrover , S. Ahmed Maouloud , D. S. Akerib , A. K. Al Musalhi , F. Alder , L. Althueser , D. W. P. Amaral , C. S. Amarasinghe , A. Ames , B. Andrieu , N. Angelides , E. Angelino , B. Antunovic , E. Aprile , H. M. Araújo , J. E. Armstrong , M. Arthurs , M. Babicz , A. Baker , M. Balzer , J. Bang , E. Barberio , J. W. Bargemann , E. Barillier , A. Basharina-Freshville , L. Baudis , D. Bauer , M. Bazyk , K. Beattie , N. Beaupere , N. F. Bell , L. Bellagamba , T. Benson , A. Bhatti , T. P. Biesiadzinski , R. Biondi , Y. Biondi , H. J. Birch , E. Bishop , A. Bismark , C. Boehm , K. Boese , A. Bolotnikov , P. Brás , R. Braun , A. Breskin , C. A. J. Brew , S. Brommer , A. Brown , G. Bruni , R. Budnik , S. Burdin , C. Cai , C. Capelli , G. Carini , M. C. Carmona-Benitez , M. Carter , A. Chauvin , A. Chawla , H. Chen , J. J. Cherwinka , Y. T. Chin , N. I. Chott , A. P. Cimental Chavez , K. Clark , A. P. Colijn , D. J. Colling , J. Conrad , M. V. Converse , L. J. Cooper , R. Coronel , D. Costanzo , A. Cottle , G. Cox , J. J. Cuenca-García , D. Curran , D. Cussans , V. D'Andrea , L. C. Daniel Garcia , I. Darlington , S. Dave , A. David , G. J. Davies , M. P. Decowski , A. Deisting , J. Delgaudio , S. Dey , C. Di Donato , L. Di Felice , P. Di Gangi , S. Diglio , C. Ding , J. E. Y. Dobson , M. Doerenkamp , G. Drexlin , E. Druszkiewicz , C. L. Dunbar , K. Eitel , A. Elykov , R. Engel , S. R. Eriksen , S. Fayer , N. M. Fearon , A. D. Ferella , C. Ferrari , N. Fieldhouse , H. Fischer , H. Flaecher , T. Flehmke , M. Flierman , E. D. Fraser , T. M. A. Fruth , K. Fujikawa , W. Fulgione , C. Fuselli , P. Gaemers , R. Gaior , R. J. Gaitskell , N. Gallice , M. Galloway , F. Gao , N. Garroum , A. Geffre , J. Genovesi , C. Ghag , S. Ghosh , R. Giacomobono , R. Gibbons , F. Girard , R. Glade-Beucke , F. Glück , S. Gokhale , L. Grandi , J. Green , J. Grigat , M. G. D. van der Grinten , R. Größle , H. Guan , M. Guida , P. Gyorgy , J. J. Haiston , C. R. Hall , T. Hall , R. Hammann , V. Hannen , S. Hansmann-Menzemer , N. Hargittai , E. Hartigan-O'Connor , S. J. Haselschwardt , M. Hernandez , S. A. Hertel , A. Higuera , C. Hils , K. Hiraoka , L. Hoetzsch , M. Hoferichter , G. J. Homenides , N. F. Hood , M. Horn , D. Q. Huang , S. Hughes , D. Hunt , M. Iacovacci , Y. Itow , E. Jacquet , J. Jakob , R. S. James , F. Joerg , S. Jones , A. C. Kaboth , F. Kahlert , A. C. Kamaha , Y. Kaminaga , M. Kara , P. Kavrigin , S. Kazama , M. Keller , P. Kemp-Russell , D. Khaitan , P. Kharbanda , B. Kilminster , J. Kim , R. Kirk , M. Kleifges , M. Klute , M. Kobayashi , D. Kodroff , D. Koke , A. Kopec , E. V. Korolkova , H. Kraus , S. Kravitz , L. Kreczko , B. von Krosigk , V. A. Kudryavtsev , F. Kuger , N. Kurita , H. Landsman , R. F. Lang , C. Lawes , J. Lee , B. Lehnert , D. S. Leonard , K. T. Lesko , L. Levinson , A. Li , I. Li , S. Li , S. Liang , Z. Liang , J. Lin , Y. -T. Lin , S. Lindemann , S. Linden , M. Lindner , A. Lindote , W. H. Lippincott , K. Liu , J. Loizeau , F. Lombardi , J. A. M. Lopes , M. I. Lopes , W. Lorenzon , M. Loutit , C. Lu , G. M. Lucchetti , T. Luce , S. Luitz , Y. Ma , C. Macolino , J. Mahlstedt , B. Maier , P. A. Majewski , A. Manalaysay , A. Mancuso , L. Manenti , R. L. Mannino , F. Marignetti , T. Marley , T. Marrodán Undagoitia , K. Martens , J. Masbou , E. Masson , S. Mastroianni , C. Maupin , V. Mazza , C. McCabe , M. E. McCarthy , D. N. McKinsey , J. B. McLaughlin , A. Melchiorre , J. Menéndez , M. Messina , E. H. Miller , B. Milosovic , S. Milutinovic , K. Miuchi , R. Miyata , E. Mizrachi , A. Molinario , C. M. B. Monteiro , M. E. Monzani , K. Morå , S. Moriyama , E. Morrison , E. Morteau , Y. Mosbacher , B. J. Mount , J. Müller , M. Murdy , A. St. J. Murphy , M. Murra , A. Naylor , H. N. Nelson , F. Neves , J. L. Newstead , A. Nguyen , K. Ni , J. O'Dell , C. O'Hare , U. Oberlack , M. Obradovic , I. Olcina , K. C. Oliver-Mallory , G. D. Orebi Gann , J. Orpwood , S. Ouahada , K. Oyulmaz , B. Paetsch , K. J. Palladino , J. Palmer , Y. Pan , M. Pandurovic , N. J. Pannifer , S. Paramesvaran , S. J. Patton , Q. Pellegrini , B. Penning , G. Pereira , R. Peres , E. Perry , T. Pershing , F. Piastra , J. Pienaar , A. Piepke , M. Pierre , G. Plante , T. R. Pollmann , F. Pompa , L. Principe , J. Qi , K. Qiao , Y. Qie , J. Qin , S. Radeka , V. Radeka , M. Rajado , D. Ramírez García , A. Ravindran , A. Razeto , J. Reichenbacher , C. A. Rhyne , A. Richards , G. R. C. Rischbieter , H. S. Riyat , R. Rosero , A. Roy , T. Rushton , D. Rynders , R. Saakyan , L. Sanchez , P. Sanchez-Lucas , D. Santone , J. M. F. dos Santos , G. Sartorelli , A. B. M. R. Sazzad , A. Scaffidi , R. W. Schnee , J. Schreiner , P. Schulte , H. Schulze Eißing , M. Schumann , A. Schwenck , A. Schwenk , L. Scotto Lavina , M. Selvi , F. Semeria , P. Shagin , S. Sharma , S. Shaw , W. Shen , L. Sherman , S. Shi , S. Y. Shi , T. Shimada , T. Shutt , J. J. Silk , C. Silva , H. Simgen , G. Sinev , R. Singh , J. Siniscalco , M. Solmaz , V. N. Solovov , Z. Song , P. Sorensen , J. Soria , O. Stanley , M. Steidl , T. Stenhouse , A. Stevens , K. Stifter , T. J. Sumner , A. Takeda , P. -L. Tan , D. J. Taylor , W. C. Taylor , D. Thers , T. Thümmler , D. R. Tiedt , F. Tönnies , Z. Tong , F. Toschi , D. R. Tovey , J. Tranter , M. Trask , G. Trinchero , M. Tripathi , D. R. Tronstad , R. Trotta , C. D. Tunnell , P. Urquijo , A. Usón , M. Utoyama , A. C. Vaitkus , O. Valentino , K. Valerius , S. Vecchi , V. Velan , S. Vetter , L. de Viveiros , G. Volta , D. Vorkapic , A. Wang , J. J. Wang , Y. Wang , D. Waters , K. M. Weerman , C. Weinheimer , M. Weiss , D. Wenz , T. J. Whitis , K. Wild , M. Williams , M. Wilson , S. T. Wilson , C. Wittweg , J. Wolf , F. L. H. Wolfs , S. Woodford , D. Woodward , M. Worcester , C. J. Wright , V. H. S. Wu , S. Wüstling , M. Wurm , Q. Xia , Y. Xing , D. Xu , J. Xu , Y. Xu , Z. Xu , M. Yamashita , L. Yang , J. Ye , M. Yeh , B. Yu , G. Zavattini , W. Zha , M. Zhong , K. Zuber

The XMASS detector is a large single phase liquid Xenon scintillator.After its feasibility had been studied using a 100 kg size prototype detector, an 800 kg size detector is being built for dark matter search with the sensitivity of…

Instrumentation and Methods for Astrophysics · Physics 2019-08-13 Hiroyuki Sekiya

We present results of a dark matter search performed with a 0.6 kg day exposure of the DAMIC experiment at the SNOLAB underground laboratory. We measure the energy spectrum of ionization events in the bulk silicon of charge-coupled devices…

We report on a search for ultra-low-mass axion-like dark matter by analysing the ratio of the spin-precession frequencies of stored ultracold neutrons and $^{199}$Hg atoms for an axion-induced oscillating electric dipole moment of the…

The Cryogenic Dark Matter Search (CDMS-II) employs low-temperature Ge and Si detectors to seek Weakly Interacting Massive Particles (WIMPs) via their elastic scattering interactions with nuclei. Simultaneous measurements of both ionization…

Astrophysics · Physics 2012-08-27 CDMS Collaboration

We present a search for low-mass ($\leq 20 GeV/c^{2}$) weakly interacting massive particles(WIMPs), strong candidates of dark matter particles,using the low-background CsI(Tl) detector array of the Korea Invisible Mass Search (KIMS)…

Dark matter accounts for 26% of the mass-energy density of the Universe, however, its nature and origins remain the most important open questions in physics. The search for Weakly Interacting Massive Particles (WIMPs), one of the leading…

High Energy Physics - Phenomenology · Physics 2024-01-17 Marcin Kuźniak

Models of nuclear dark matter propose that the dark sector contains large composite states consisting of dark nucleons in analogy to Standard Model nuclei. We examine the direct detection phenomenology of a particular class of nuclear dark…

High Energy Physics - Phenomenology · Physics 2017-11-01 A. Butcher , R. Kirk , J. Monroe , S. M. West

The PICASSO experiment reports an improved limit for the existence of cold dark matter WIMPs interacting via spin-dependent interactions with nuclei. The experiment is installed in the Sudbury Neutrino Observatory at a depth of 2070 m. With…

Existence of dark matter indicates the presence of unknown fundamental laws of nature. Ultralight axion-like particles are well-motivated dark matter candidates, emerging naturally from theories of physics at ultrahigh energies. We report…

High Energy Physics - Experiment · Physics 2021-01-11 Alexander V. Gramolin , Deniz Aybas , Dorian Johnson , Janos Adam , Alexander O. Sushkov

Weakly Interacting Massive Particles (WIMPs) are one of the leading candidates for Dark Matter. For understanding the properties of WIMPs and identifying them among new particles produced at colliders (hopefully in the near future),…

High Energy Physics - Phenomenology · Physics 2010-02-17 Manuel Drees , Chung-Lin Shan

The first underground data run of the ZEPLIN-II experiment has set a limit on the nuclear recoil rate in the two-phase xenon detector for direct dark matter searches. In this paper the results from this run are converted into the limits on…

Astrophysics · Physics 2009-06-23 G. J. Alner et al.

In experiments for direct dark matter searches, neutrinos coherently scattering off nuclei can produce similar events as Weakly Interacting Massive Particles (WIMPs). The calculated count rate for solar neutrinos in such experiments is a…

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