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The addition of non-renormalizable terms involving the Higgs fields to the MSSM (BMSSM) ameliorates the little hierarchy problem of the MSSM. For neutralino dark matter, new regions for which the relic abundance of the LSP is consistent…

High Energy Physics - Phenomenology · Physics 2014-11-20 Nicolas Bernal , Andreas Goudelis

Non-relativistic QCD axions or axion-like particles are among the most popular candidates for cold Dark Matter (DM) in the universe. We proposed to detect axion-like DM, using linearly polarized pulsar light as a probe. Because of…

Cosmology and Nongalactic Astrophysics · Physics 2020-03-18 Tao Liu , George Smoot , Yue Zhao

There appear to be three challenges that any theory of dark matter must face: (i) why is $\Omega_{DM}$ of the same order as $\Omega_{Baryons}$ ? (ii) what are the near solar mass objects ($\sim 0.5 M_{\odot}$) observed by the MACHO…

Astrophysics · Physics 2016-11-03 R. N. Mohapatra , V. L. Teplitz

In a scenario with heavy supersymmetric sfermions and decoupled supersymmetric Higgs sector, a well tempered neutralino is the remaining candidate for thermal single-component sub-TeV dark matter. Well tempered neutralinos are studied in…

High Energy Physics - Phenomenology · Physics 2014-03-26 Archana Anandakrishnan , Kuver Sinha

We review here the status of different dark matter candidates in the context of supersymmetric models, in particular the neutralino as a realization of the WIMP-mechanism and the gravitino. We give a summary of the recent bounds in direct…

High Energy Physics - Phenomenology · Physics 2015-06-17 Riccardo Catena , Laura Covi

Neutrino telescopes of large area offer the possibility of searching for indirect signals of relic neutralinos in the galactic halo, due to annihilations in the Sun or the Earth. Here we investigate the sensitivity, using a supergravity…

High Energy Physics - Phenomenology · Physics 2009-09-11 V. Berezinsky , A. Bottino , J. Ellis , N. Fornengo , G. Mignola , S. Scopel

Axions solve the Strong CP Problem and are a cold dark matter candidate. The combined constraints from accelerator searches, stellar evolution limits and cosmology suggest that the axion mass is in the range $3 \cdot 10^{-3} > m_a >…

High Energy Physics - Phenomenology · Physics 2007-05-23 Pierre Sikivie

What is the upper limit of the mass of the neutralino dark matter whose thermal relic is consistent with the observation? If the neutralino dark matter and colored sparticles are extremely degenerated in mass, with a mass difference less…

High Energy Physics - Phenomenology · Physics 2020-01-07 Hajime Fukuda , Feng Luo , Satoshi Shirai

The Kim-Nilles mechanism relates the $\mu$ term with the axion scale $f_a$, leading to the axino-Higgsino-Higgs Yukawa coupling of order $\mu/f_a$. This can bring a dangerous thermal production of axinos. If the axino is stable, its mass…

High Energy Physics - Phenomenology · Physics 2011-09-08 Eung Jin Chun

The nature of the dark matter of the Universe is yet unknown and most likely is connected with new physics. The search for its composition is under way through direct and indirect detection. Fundamental physical aspects such as energy…

High Energy Physics - Phenomenology · Physics 2009-11-07 Ivone F. M. Albuquerque , Jodi Lamoureux , George F. Smoot

We consider cosmological consequences of a heavy axino, decaying to the neutralino in R-parity conserving models. The importance and influence of the axino decay on the resultant abundance of neutralino dark matter depends on the lifetime…

High Energy Physics - Phenomenology · Physics 2008-06-19 Ki-Young Choi , Jihn E. Kim , Hyun Min Lee , Osamu Seto

We analyse the direct detection of neutralino dark matter in supergravity scenarios with non-universal soft scalar and gaugino masses. In particular, the neutralino-nucleon cross section is computed and compared with the sensitivity of…

High Energy Physics - Phenomenology · Physics 2008-11-26 D. G. Cerdeno , C. Munoz

Cosmological arguments proving that the universe is dominated by invisible non-baryonic matter are reviewed. Possible physical candidates for dark matter particles are discussed. A particular attention is paid to non-compensated remnants of…

High Energy Physics - Phenomenology · Physics 2009-10-31 A. D. Dolgov

The lightest neutralino in supersymmetric models with conserved R-parity is an attractive candidate for non-luminous matter in the universe. If relic neutralinos are indeed present as dark matter in our galaxy, they can be directly detected…

High Energy Physics - Phenomenology · Physics 2007-05-23 Michal Brhlik

The addition of non-renormalizable terms involving the Higgs fields to the MSSM ameliorates the little hierarchy problem of the MSSM. For neutralino dark matter, new regions for which the relic abundance of the LSP is consistent with WMAP…

High Energy Physics - Phenomenology · Physics 2010-05-13 Nicolas Bernal

In all supersymmetric theories, gravitinos, with mass suppressed by the Planck scale, are an obvious candidate for dark matter; but if gravitinos ever reached thermal equilibrium, such dark matter is apparently either too abundant or too…

High Energy Physics - Phenomenology · Physics 2017-08-03 Raymond T. Co , Francesco D'Eramo , Lawrence J. Hall , Keisuke Harigaya

We study the implications of a large baryogenesis temperature, $T_B = O(10^{10}$ GeV), on the mass spectrum of superparticles in supersymmetric extensions of the standard model. Models with a neutralino as lightest superparticle (LSP) are…

High Energy Physics - Phenomenology · Physics 2009-10-31 M. Bolz , W. Buchmüller , M. Plümacher

The nature of dark matter and properties of neutrinos are among the most pressing issues in contemporary particle physics. The dual-phase xenon time-projection chamber is the leading technology to cover the available parameter space for…

Instrumentation and Detectors · Physics 2023-02-10 J. Aalbers , K. Abe , V. Aerne , F. Agostini , S. Ahmed Maouloud , D. S. Akerib , D. Yu. Akimov , J. Akshat , A. K. Al Musalhi , F. Alder , S. K. Alsum , L. Althueser , C. S. Amarasinghe , F. D. Amaro , A. Ames , T. J. Anderson , B. Andrieu , N. Angelides , E. Angelino , J. Angevaare , V. C. Antochi , D. Antón Martin , B. Antunovic , E. Aprile , H. M. Araújo , J. E. Armstrong , F. Arneodo , M. Arthurs , P. Asadi , S. Baek , X. Bai , D. Bajpai , A. Baker , J. Balajthy , S. Balashov , M. Balzer , A. Bandyopadhyay , J. Bang , E. Barberio , J. W. Bargemann , L. Baudis , D. Bauer , D. Baur , A. Baxter , A. L. Baxter , M. Bazyk , K. Beattie , J. Behrens , N. F. Bell , L. Bellagamba , P. Beltrame , M. Benabderrahmane , E. P. Bernard , G. F. Bertone , P. Bhattacharjee , A. Bhatti , A. Biekert , T. P. Biesiadzinski , A. R. Binau , R. Biondi , Y. Biondi , H. J. Birch , F. Bishara , A. Bismark , C. Blanco , G. M. Blockinger , E. Bodnia , C. Boehm , A. I. Bolozdynya , P. D. Bolton , S. Bottaro , C. Bourgeois , B. Boxer , P. Brás , A. Breskin , P. A. Breur , C. A. J. Brew , J. Brod , E. Brookes , A. Brown , E. Brown , S. Bruenner , G. Bruno , R. Budnik , T. K. Bui , S. Burdin , S. Buse , J. K. Busenitz , D. Buttazzo , M. Buuck , A. Buzulutskov , R. Cabrita , C. Cai , D. Cai , C. Capelli , J. M. R. Cardoso , M. C. Carmona-Benitez , M. Cascella , R. Catena , S. Chakraborty , C. Chan , S. Chang , A. Chauvin , A. Chawla , H. Chen , V. Chepel , N. I. Chott , D. Cichon , A. Cimental Chavez , B. Cimmino , M. Clark , R. T. Co , A. P. Colijn , J. Conrad , M. V. Converse , M. Costa , A. Cottle , G. Cox , O. Creaner , J. J. Cuenca Garcia , J. P. Cussonneau , J. E. Cutter , C. E. Dahl , V. D'Andrea , A. David , M. P. Decowski , J. B. Dent , F. F. Deppisch , L. de Viveiros , P. Di Gangi , A. Di Giovanni , S. Di Pede , J. Dierle , S. Diglio , J. E. Y. Dobson , M. Doerenkamp , D. Douillet , G. Drexlin , E. Druszkiewicz , D. Dunsky , K. Eitel , A. Elykov , T. Emken , R. Engel , S. R. Eriksen , M. Fairbairn , A. Fan , J. J. Fan , S. J. Farrell , S. Fayer , N. M. Fearon , A. Ferella , C. Ferrari , A. Fieguth , A. Fieguth , S. Fiorucci , H. Fischer , H. Flaecher , M. Flierman , T. Florek , R. Foot , P. J. Fox , R. Franceschini , E. D. Fraser , C. S. Frenk , S. Frohlich , T. Fruth , W. Fulgione , C. Fuselli , P. Gaemers , R. Gaior , R. J. Gaitskell , M. Galloway , F. Gao , I. Garcia Garcia , J. Genovesi , C. Ghag , S. Ghosh , E. Gibson , W. Gil , D. Giovagnoli , F. Girard , R. Glade-Beucke , F. Glück , S. Gokhale , A. de Gouvêa , L. Gráf , L. Grandi , J. Grigat , B. Grinstein , M. G. D. van der Grinten , R. Grössle , H. Guan , M. Guida , R. Gumbsheimer , C. B. Gwilliam , C. R. Hall , L. J. Hall , R. Hammann , K. Han , V. Hannen , S. Hansmann-Menzemer , R. Harata , S. P. Hardin , E. Hardy , C. A. Hardy , K. Harigaya , R. Harnik , S. J. Haselschwardt , M. Hernandez , S. A. Hertel , A. Higuera , C. Hils , S. Hochrein , L. Hoetzsch , M. Hoferichter , N. Hood , D. Hooper , M. Horn , J. Howlett , D. Q. Huang , Y. Huang , D. Hunt , M. Iacovacci , G. Iaquaniello , R. Ide , C. M. Ignarra , G. Iloglu , Y. Itow , E. Jacquet , O. Jahangir , J. Jakob , R. S. James , A. Jansen , W. Ji , X. Ji , F. Joerg , J. Johnson , A. Joy , A. C. Kaboth , A. C. Kamaha , K. Kanezaki , K. Kar , M. Kara , N. Kato , P. Kavrigin , S. Kazama , A. W. Keaveney , J. Kellerer , D. Khaitan , A. Khazov , G. Khundzakishvili , I. Khurana , B. Kilminster , M. Kleifges , P. Ko , M. Kobayashi , M. Kobayashi , D. Kodroff , G. Koltmann , A. Kopec , A. Kopmann , J. Kopp , L. Korley , V. N. Kornoukhov , E. V. Korolkova , H. Kraus , L. M. Krauss , S. Kravitz , L. Kreczko , V. A. Kudryavtsev , F. Kuger , J. Kumar , B. López Paredes , L. LaCascio , Q. Laine , H. Landsman , R. F. Lang , E. A. Leason , J. Lee , D. S. Leonard , K. T. Lesko , L. Levinson , C. Levy , I. Li , S. C. Li , T. Li , S. Liang , C. S. Liebenthal , J. Lin , Q. Lin , S. Lindemann , M. Lindner , A. Lindote , R. Linehan , W. H. Lippincott , X. Liu , K. Liu , J. Liu , J. Loizeau , F. Lombardi , J. Long , M. I. Lopes , E. Lopez Asamar , W. Lorenzon , C. Lu , S. Luitz , Y. Ma , P. A. N. Machado , C. Macolino , T. Maeda , J. Mahlstedt , P. A. Majewski , A. Manalaysay , A. Mancuso , L. Manenti , A. Manfredini , R. L. Mannino , N. Marangou , J. March-Russell , F. Marignetti , T. Marrodán Undagoitia , K. Martens , R. Martin , I. Martinez-Soler , J. Masbou , D. Masson , E. Masson , S. Mastroianni , M. Mastronardi , J. A. Matias-Lopes , M. E. McCarthy , N. McFadden , E. McGinness , D. N. McKinsey , J. McLaughlin , K. McMichael , P. Meinhardt , J. Menéndez , Y. Meng , M. Messina , R. Midha , D. Milisavljevic , E. H. Miller , B. Milosevic , S. Milutinovic , S. A. Mitra , K. Miuchi , E. Mizrachi , K. Mizukoshi , A. Molinario , A. Monte , C. M. B. Monteiro , M. E. Monzani , J. S. Moore , K. Morå , J. A. Morad , J. D. Morales Mendoza , S. Moriyama , E. Morrison , E. Morteau , Y. Mosbacher , B. J. Mount , J. Mueller , A. St. J. Murphy , M. Murra , D. Naim , S. Nakamura , E. Nash , N. Navaieelavasani , A. Naylor , C. Nedlik , H. N. Nelson , F. Neves , J. L. Newstead , K. Ni , J. A. Nikoleyczik , V. Niro , U. G. Oberlack , M. Obradovic , K. Odgers , C. A. J. O'Hare , P. Oikonomou , I. Olcina , K. Oliver-Mallory , A. Oranday , J. Orpwood , I. Ostrovskiy , K. Ozaki , B. Paetsch , S. Pal , J. Palacio , K. J. Palladino , J. Palmer , P. Panci , M. Pandurovic , A. Parlati , N. Parveen , S. J. Patton , V. Pěč , Q. Pellegrini , B. Penning , G. Pereira , R. Peres , Y. Perez-Gonzalez , E. Perry , T. Pershing , R. Petrossian-Byrne , J. Pienaar , A. Piepke , G. Pieramico , M. Pierre , M. Piotter , V. Pizella , G. Plante , T. Pollmann , D. Porzio , J. Qi , Y. Qie , J. Qin , N. Raj , M. Rajado Silva , K. Ramanathan , D. Ramírez García , J. Ravanis , L. Redard-Jacot , D. Redigolo , S. Reichard , J. Reichenbacher , C. A. Rhyne , A. Richards , Q. Riffard , G. R. C. Rischbieter , A. Rocchetti , S. L. Rosenfeld , R. Rosero , N. Rupp , T. Rushton , S. Saha , L. Sanchez , P. Sanchez-Lucas , D. Santone , J. M. F. dos Santos , I. Sarnoff , G. Sartorelli , A. B. M. R. Sazzad , M. Scheibelhut , R. W. Schnee , M. Schrank , J. Schreiner , P. Schulte , D. Schulte , H. Schulze Eissing , M. Schumann , T. Schwemberger , A. Schwenk , T. Schwetz , L. Scotto Lavina , P. R. Scovell , H. Sekiya , M. Selvi , E. Semenov , F. Semeria , P. Shagin , S. Shaw , S. Shi , E. Shockley , T. A. Shutt , R. Si-Ahmed , J. J. Silk , C. Silva , M. C. Silva , H. Simgen , F. Šimkovic , G. Sinev , R. Singh , W. Skulski , J. Smirnov , R. Smith , M. Solmaz , V. N. Solovov , P. Sorensen , J. Soria , T. J. Sparmann , I. Stancu , M. Steidl , A. Stevens , K. Stifter , L. E. Strigari , D. Subotic , B. Suerfu , A. M. Suliga , T. J. Sumner , P. Szabo , M. Szydagis , A. Takeda , Y. Takeuchi , P. -L. Tan , C. Taricco , W. C. Taylor , D. J. Temples , A. Terliuk , P. A. Terman , D. Thers , K. Thieme , Th. Thümmler , D. R. Tiedt , M. Timalsina , W. H. To , F. Toennies , Z. Tong , F. Toschi , D. R. Tovey , J. Tranter , M. Trask , G. C. Trinchero , M. Tripathi , D. R. Tronstad , R. Trotta , Y. D. Tsai , C. D. Tunnell , W. G. Turner , R. Ueno , P. Urquijo , U. Utku , A. Vaitkus , K. Valerius , E. Vassilev , S. Vecchi , V. Velan , S. Vetter , A. C. Vincent , L. Vittorio , G. Volta , B. von Krosigk , M. von Piechowski , D. Vorkapic , C. E. M. Wagner , A. M. Wang , B. Wang , Y. Wang , W. Wang , J. J. Wang , L. -T. Wang , M. Wang , Y. Wang , J. R. Watson , Y. Wei , C. Weinheimer , E. Weisman , M. Weiss , D. Wenz , S. M. West , T. J. Whitis , M. Williams , M. J. Wilson , D. Winkler , C. Wittweg , J. Wolf , T. Wolf , F. L. H. Wolfs , S. Woodford , D. Woodward , C. J. Wright , V. H. S. Wu , P. Wu , S. Wüstling , M. Wurm , Q. Xia , X. Xiang , Y. Xing , J. Xu , Z. Xu , D. Xu , M. Yamashita , R. Yamazaki , H. Yan , L. Yang , Y. Yang , J. Ye , M. Yeh , I. Young , H. B. Yu , T. T. Yu , L. Yuan , G. Zavattini , S. Zerbo , Y. Zhang , M. Zhong , N. Zhou , X. Zhou , T. Zhu , Y. Zhu , Y. Zhuang , J. P. Zopounidis , K. Zuber , J. Zupan

In these brief lecture notes, we introduce sterile neutrinos as dark matter candidates. We discuss in particular their production via oscillations, their radiative decay, as well as possible observational signatures and constraints.

High Energy Physics - Phenomenology · Physics 2022-01-19 Joachim Kopp

An extraordinarily rich zoo of non-baryonic Dark Matter candidates has been proposed over the last three decades. Here we present a 10-point test that a new particle has to pass, in order to be considered a viable DM candidate: I.) Does it…

Astrophysics · Physics 2009-06-23 Marco Taoso , Gianfranco Bertone , Antonio Masiero