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The recent discovery and evidence of neutrino signals from distant sources, TXS 0506+056 and NGC 1068 respectively, provide opportunities to search for rare interactions of neutrinos that they might encounter on their paths. One potential…

High Energy Astrophysical Phenomena · Physics 2023-08-11 Woosik Kang , Carsten Rott

Progress in observational cosmology over the past five years has established that the Universe is dominated dynamically by dark matter and dark energy. Both these new and apparently independent forms of matter-energy have properties that…

Astrophysics · Physics 2009-11-10 J. M. Overduin , P. S. Wesson

Weakly Interacting Massive Particles (WIMPs) are well-motivated candidates for Dark Matter (DM). WIMP models often include self-annihilation into Standard Model particles such as neutrinos which could potentially be detected by the IceCube…

High Energy Astrophysical Phenomena · Physics 2019-08-23 Sebastian Baur

The identity of dark matter is a question of central importance in both astrophysics and particle physics. In the past, the leading particle candidates were cold and collisionless, and typically predicted missing energy signals at particle…

Cosmology and Nongalactic Astrophysics · Physics 2011-02-03 Jonathan L. Feng

We study dark matter, assumed to be composed by weak interacting massive particles (WIMPs), scattering off ${}^2$H and ${}^4$He nuclei. In order to parameterize the WIMP-nucleon interaction the chiral effective field theory approach is…

High Energy Physics - Phenomenology · Physics 2024-09-26 E. Filandri , M. Viviani

Weakly interacting massive particles are a widely well-probed dark matter candidate by the dark matter direct detection experiments. Theoretically, there are a large number of ultraviolet completed models that consist of a weakly…

High Energy Physics - Phenomenology · Physics 2017-12-06 Zuowei Liu , Yushan Su , Yue-Lin Sming Tsai , Bingrong Yu , Qiang Yuan

The status of the recent efforts in the direct search for Weak Interacting Massive Particle (WIMP) Dark Matter is briefly reviewed and the main achievements illustrated by the contributions presented to TAUP 99. The strategies followed in…

Astrophysics · Physics 2009-10-31 Angel Morales

The kinetic decoupling of weakly interacting massive particles (WIMPs) in the early universe sets a scale that can directly be translated into a small-scale cutoff in the spectrum of matter density fluctuations. The formalism presented here…

Cosmology and Nongalactic Astrophysics · Physics 2014-11-18 Torsten Bringmann

In this contribution I review the present status and discuss some prospects for indirect detection of dark matter with gamma-rays. Thanks to the Fermi Large Area Telescope, searches in gamma-rays have reached sensitivities that allow to…

Cosmology and Nongalactic Astrophysics · Physics 2015-06-11 Jan Conrad

The identification of the nature of dark matter is one of the most important problems confronting particle physics. Current observational constraints permit the mass of the dark matter to range from $10^{-22}$ eV - $10^{48}$ GeV. Given the…

High Energy Physics - Phenomenology · Physics 2022-04-08 Surjeet Rajendran

The Proceedings of the 2011 workshop on Fundamental Physics at the Intensity Frontier. Science opportunities at the intensity frontier are identified and described in the areas of heavy quarks, charged leptons, neutrinos, proton decay, new…

High Energy Physics - Experiment · Physics 2012-05-14 J. L. Hewett , H. Weerts , R. Brock , J. N. Butler , B. C. K. Casey , J. Collar , A. de Gouvea , R. Essig , Y. Grossman , W. Haxton , J. A. Jaros , C. K. Jung , Z. T. Lu , K. Pitts , Z. Ligeti , J. R. Patterson , M. Ramsey-Musolf , J. L. Ritchie , A. Roodman , K. Scholberg , C. E. M. Wagner , G. P. Zeller , S. Aefsky , A. Afanasev , K. Agashe , C. Albright , J. Alonso , C. Ankenbrandt , M. Aoki , C. A. Arguelles , N. Arkani-Hamed , J. R. Armendariz , C. Armendariz-Picon , E. Arrieta Diaz , J. Asaadi , D. M. Asner , K. S. Babu , K. Bailey , O. Baker , B. Balantekin , B. Baller , M. Bass , B. Batell , J. Beacham , J. Behr , N. Berger , M. Bergevin , E. Berman , R. Bernstein , A. J. Bevan , M. Bishai , M. Blanke , S. Blessing , A. Blondel , T. Blum , G. Bock , A. Bodek , G. Bonvicini , F. Bossi , J. Boyce , R. Breedon , M. Breidenbach , S. J. Brice , R. A. Briere , S. Brodsky , C. Bromberg , A. Bross , T. E. Browder , D. A. Bryman , M. Buckley , R. Burnstein , E. Caden , P. Campana , R. Carlini , G. Carosi , C. Castromonte , R. Cenci , I. Chakaberia , M. C. Chen , C. H. Cheng , B. Choudhary , N. H. Christ , E. Christensen , M. E. Christy , T. E. Chupp , E. Church , D. B. Cline , T. E. Coan , P. Coloma , J. Comfort , L. Coney , J. Cooper , R. J. Cooper , R. Cowan , D. F. Cowen , D. Cronin-Hennessy , A. Datta , G. S. Davies , M. Demarteau , D. P. DeMille , A. Denig , R. Dermisek , A. Deshpande , M. S. Dewey , R. Dharmapalan , J. Dhooghe , M. R. Dietrich , M. Diwan , Z. Djurcic , S. Dobbs , M. Duraisamy , B. Dutta , H. Duyang , D. A. Dwyer , M. Eads , B. Echenard , S. R. Elliott , C. Escobar , J. Fajans , S. Farooq , C. Faroughy , J. E. Fast , B. Feinberg , J. Felde , G. Feldman , P. Fierlinger , P. Fileviez Perez , B. Filippone , P. Fisher , B. T. Flemming , K. T. Flood , R. Forty , M. J. Frank , A. Freyberger , A. Friedland , R. Gandhi , K. S. Ganezer , A. Garcia , F. G. Garcia , S. Gardner , L. Garrison , A. Gasparian , S. Geer , V. M. Gehman , T. Gershon , M. Gilchriese , C. Ginsberg , I. Gogoladze , M. Gonderinger , M. Goodman , H. Gould , M. Graham , P. W. Graham , R. Gran , J. Grange , G. Gratta , J. P. Green , H. Greenlee , R. C. Group , E. Guardincerri , V. Gudkov , R. Guenette , A. Haas , A. Hahn , T. Han , T. Handler , J. C. Hardy , R. Harnik , D. A. Harris , F. A. Harris , P. G. Harris , J. Hartnett , B. He , B. R. Heckel , K. M. Heeger , S. Henderson , D. Hertzog , R. Hill , E. A Hinds , D. G. Hitlin , R. J. Holt , N. Holtkamp , G. Horton-Smith , P. Huber , W. Huelsnitz , J. Imber , I. Irastorza , J. Jaeckel , I. Jaegle , C. James , A. Jawahery , D. Jensen , C. P. Jessop , B. Jones , H. Jostlein , T. Junk , A. L. Kagan , M. Kalita , Y. Kamyshkov , D. M. Kaplan , G. Karagiorgi , A. Karle , T. Katori , B. Kayser , R. Kephart , S. Kettell , Y. K. Kim , M. Kirby , K. Kirch , J. Klein , J. Kneller , A. Kobach , M. Kohl , J. Kopp , M. Kordosky , W. Korsch , I. Kourbanis , A. D. Krisch , P. Krizan , A. S. Kronfeld , S. Kulkarni , K. S. Kumar , Y. Kuno , T. Kutter , T. Lachenmaier , M. Lamm , J. Lancaster , M. Lancaster , C. Lane , K. Lang , P. Langacker , S. Lazarevic , T. Le , K. Lee , K. T. Lesko , Y. Li , M. Lindgren , A. Lindner , J. Link , D. Lissauer , L. S. Littenberg , B. Littlejohn , C. Y. Liu , W. Loinaz , W. Lorenzon , W. C. Louis , J. Lozier , L. Ludovici , L. Lueking , C. Lunardini , D. B. MacFarlane , P. A. N. Machado , P. B. Mackenzie , J. Maloney , W. J. Marciano , W. Marsh , M. Marshak , J. W. Martin , C. Mauger , K. S. McFarland , C. McGrew , G. McLaughlin , D. McKeen , R. McKeown , B. T. Meadows , R. Mehdiyev , D. Melconian , H. Merkel , M. Messier , J. P. Miller , G. Mills , U. K. Minamisono , S. R. Mishra , I. Mocioiu , S. Moed Sher , R. N. Mohapatra , B. Monreal , C. D. Moore , J. G. Morfin , J. Mousseau , L. A. Moustakas , G. Mueller , P. Mueller , M. Muether , H. P. Mumm , C. Munger , H. Murayama , P. Nath , O. Naviliat-Cuncin , J. K. Nelson , D. Neuffer , J. S. Nico , A. Norman , D. Nygren , Y. Obayashi , T. P. O'Connor , Y. Okada , J. Olsen , L. Orozco , J. L. Orrell , J. Osta , B. Pahlka , J. Paley , V. Papadimitriou , M. Papucci , S. Parke , R. H. Parker , Z. Parsa , K. Partyka , A. Patch , J. C. Pati , R. B. Patterson , Z. Pavlovic , G. Paz , G. N. Perdue , D. Perevalov , G. Perez , R. Petti , W. Pettus , A. Piepke , M. Pivovaroff , R. Plunkett , C. C. Polly , M. Pospelov , R. Povey , A. Prakesh , M. V. Purohit , S. Raby , J. L. Raaf , R. Rajendran , S. Rajendran , G. Rameika , R. Ramsey , A. Rashed , B. N. Ratcliff , B. Rebel , J. Redondo , P. Reimer , D. Reitzner , F. Ringer , A. Ringwald , S. Riordan , B. L. Roberts , D. A. Roberts , R. Robertson , F. Robicheaux , M. Rominsky , R. Roser , J. L. Rosner , C. Rott , P. Rubin , N. Saito , M. Sanchez , S. Sarkar , H. Schellman , B. Schmidt , M. Schmitt , D. W. Schmitz , J. Schneps , A. Schopper , P. Schuster , A. J. Schwartz , M. Schwarz , J. Seeman , Y. K. Semertzidis , K. K. Seth , Q. Shafi , P. Shanahan , R. Sharma , S. R. Sharpe , M. Shiozawa , V. Shiltsev , K. Sigurdson , P. Sikivie , J. Singh , D. Sivers , T. Skwarnicki , N. Smith , J. Sobczyk , H. Sobel , M. Soderberg , Y. H. Song , A. Soni , P. Souder , A. Sousa , J. Spitz , M. Stancari , G. C. Stavenga , J. H. Steffen , S. Stepanyan , D. Stoeckinger , S. Stone , J. Strait , M. Strassler , I. A. Sulai , R. Sundrum , R. Svoboda , B. Szczerbinska , A. Szelc , T. Takeuchi , P. Tanedo , S. Taneja , J. Tang , D. B. Tanner , R. Tayloe , I. Taylor , J. Thomas , C. Thorn , X. Tian , B. G. Tice , M. Tobar , N. Tolich , N. Toro , I. S. Towner , Y. Tsai , R. Tschirhart , C. D. Tunnell , M. Tzanov , A. Upadhye , J. Urheim , S. Vahsen , A. Vainshtein , E. Valencia , R. G. Van de Water , R. S. Van de Water , M. Velasco , J. Vogel , P. Vogel , W. Vogelsang , Y. W. Wah , D. Walker , N. Weiner , A. Weltman , R. Wendell , W. Wester , M. Wetstein , C. White , L. Whitehead , J. Whitmore , E. Widmann , G. Wiedemann , J. Wilkerson , G. Wilkinson , P. Wilson , R. J. Wilson , W. Winter , M. B. Wise , J. Wodin , S. Wojcicki , B. Wojtsekhowski , T. Wongjirad , E. Worcester , J. Wurtele , T. Xin , J. Xu , T. Yamanaka , Y. Yamazaki , I. Yavin , J. Yeck , M. Yeh , M. Yokoyama , J. Yoo , A. Young , E. Zimmerman , K. Zioutas , M. Zisman , J. Zupan , R. Zwaska

In this article, we investigate the phenomenological aspects of a feebly interacting sterile neutrino dark matter candidate within a low-scale seesaw framework. The Type-I seesaw model is augmented by a second complex scalar doublet…

High Energy Physics - Phenomenology · Physics 2025-12-23 Kunal Pandey , Suhail Khan

We present constraints on weakly interacting massive particles (WIMP)-nucleus scattering from the 2013 data of the Large Underground Xenon dark matter experiment, including $1.4\times10^{4}\;\mathrm{kg\; day}$ of search exposure. This new…

Cosmology and Nongalactic Astrophysics · Physics 2016-05-17 LUX Collaboration , D. S. Akerib , H. M. Araújo , X. Bai , A. J. Bailey , J. Balajthy , P. Beltrame , E. P. Bernard , A. Bernstein , T. P. Biesiadzinski , E. M. Boulton , A. Bradley , R. Bramante , S. B. Cahn , M. C. Carmona-Benitez , C. Chan , J. J. Chapman , A. A. Chiller , C. Chiller , A. Currie , J. E. Cutter , T. J. R. Davison , L. de Viveiros , A. Dobi , J. E. Y. Dobson , E. Druszkiewicz , B. N. Edwards , C. H. Faham , S. Fiorucci , R. J. Gaitskell , V. M. Gehman , C. Ghag , K. R. Gibson , M. G. D. Gilchriese , C. R. Hall , M. Hanhardt , S. J. Haselschwardt , S. A. Hertel , D. P. Hogan , M. Horn , D. Q. Huang , C. M. Ignarra , M. Ihm , R. G. Jacobsen , W. Ji , K. Kazkaz , D. Khaitan , R. Knoche , N. A. Larsen , C. Lee , B. G. Lenardo , K. T. Lesko , A. Lindote , M. I. Lopes , D. C. Malling , A. Manalaysay , R. L. Mannino , M. F. Marzioni , D. N. McKinsey , D. M. Mei , J. Mock , M. Moongweluwan , J. A. Morad , A. St. J. Murphy , C. Nehrkorn , H. N. Nelson , F. Neves , K. O`Sullivan , K. C. Oliver-Mallory , R. A. Ott , K. J. Palladino , M. Pangilinan , E. K. Pease , P. Phelps , L. Reichhart , C. Rhyne , S. Shaw , T. A. Shutt , C. Silva , V. N. Solovov , P. Sorensen , S. Stephenson , T. J. Sumner , M. Szydagis , D. J. Taylor , W. Taylor , B. P. Tennyson , P. A. Terman , D. R. Tiedt , W. H. To , M. Tripathi , L. Tvrznikova , S. Uvarov , J. R. Verbus , R. C. Webb , J. T. White , T. J. Whitis , M. S. Witherell , F. L. H. Wolfs , K. Yazdani , S. K. Young , C. Zhang

The complementarity of direct, indirect and collider searches for dark matter has improved our understanding concerning the properties of the dark matter particle. I will review the basic concepts that these methods rely upon and highlight…

High Energy Physics - Phenomenology · Physics 2016-05-31 Farinaldo S. Queiroz

We propose a new alternative to the Weakly Interacting Massive Particle (WIMP) paradigm for dark matter. Rather than being determined by thermal freeze-out, the dark matter abundance in this scenario is set by dark matter decay, which is…

High Energy Physics - Phenomenology · Physics 2017-08-16 Michael J. Baker , Joachim Kopp

One of the most promising strategies to identify the nature of dark matter consists in the search for new particles at accelerators and with so-called direct detection experiments. Working within the framework of simplified models, and…

High Energy Physics - Phenomenology · Physics 2018-05-04 Gianfranco Bertone , Nassim Bozorgnia , Jong Soo Kim , Sebastian Liem , Christopher McCabe , Sydney Otten , Roberto Ruiz de Austri

The singlet scalar model is a minimal extension of the Standard Model that can explain the dark matter. We point out that in this model the dark matter constraint can be satisfied not only in the already considered WIMP regime but also, for…

High Energy Physics - Phenomenology · Physics 2011-09-08 Carlos E. Yaguna

The physics of the mysterious and stealthy neutrino is at the heart of many phenomena in the cosmos. These particles interact with matter and with each other through the aptly named weak interaction. At typical astrophysical energies the…

Nuclear Theory · Physics 2022-08-23 G. M. Fuller , W. C. Haxton

Wonderful opportunities await particle physics over the next decade, with the coming of the Large Hadron Collider at CERN to explore the 1-TeV scale (extending efforts at LEP and the Tevatron to unravel the nature of electroweak symmetry…

High Energy Physics - Phenomenology · Physics 2008-11-26 Chris Quigg

A simple and well-motivated explanation for the origin of dark matter is that it consists of thermal relic particles that get their mass entirely through electroweak symmetry breaking. The simplest models implementing this possibility…

High Energy Physics - Phenomenology · Physics 2007-05-23 Philip C. Schuster , Natalia Toro