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5381
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5382por CERN. Geneva“…</em></p> <p><em>How does a woman, in a world dominated by men, managed to enter the institution in an official way but also to reveal the dark matter hypothesis? To imagine, to show through words and bodies, to wander through the confines of the galaxies in the light of contemporary issues for art, science and society; such is the quest that the artists wanted to address with this show.…”
Publicado 2021
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5383por The ATLAS collaboration“…This is an update of summary plots from the Exotics, SUSY, HDBS and Higgs working groups, via the CDM sub-group, for dark matter simplified models with $s$-channel Spin-1 and Spin-0 mediators, and a Two-Higgs-Doublet model with a pseudoscalar mediator (2HDM+$a$). …”
Publicado 2021
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5384“…This scenario provides a novel history for dark photon dark matter. The dark photons may be warm at a level detectable in future 21-cm line surveys. …”
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5385por O'Hare, C.A.J., Loomba, D., Altenmuller, K., Alvarez-Pol, H., Amaro, F.D., Araujo, H.M., Aristizabal Sierra, D., Asaadi, J., Attie, D., Aune, S., Awe, C., Ayyad, Y., Baracchini, E., Barbeau, P., Battat, J.B.R., Bell, N.F., Biasuzzi, B., Bignell, L.J., Boehm, C., Bolognino, I., Brunbauer, F.M., Caamano, M., Cabo, C., Caratelli, D., Carmona, J.M., Castel, J.F., Cebrián, S., Cogollos, C., Collison, D., Costa, E., Dafni, T., Dastgiri, F., Deaconu, C., De Romeri, V., Desch, K., Dho, G., Di Giambattista, F., DezIbánez, D., D'Imperio, G., Dutta, B., Eldridge, C., Elliott, S.R., Ezeribe, A.C., Fava, A., Felkl, T., Fernández-Domnguez, B., Ferrer Ribas, E., Flothner, K.J., Froehlich, M., Galán, J., Galindo, J., Garca, F., Garca Pascual, J.A., Gelli, B.P., Ghrear, M., Giomataris, Y., Gnanvo, K., Gramellini, E., Di Cortona, G. Grilli, Hall-Wilton, R., Harton, J., Hedges, S., Higashino, S., Hill, G., Holanda, P.C., Ikeda, T., Irastorza, I.G., Jackson, P., Janssens, D., Jones, B., Kaminski, J., Katsioulas, I., Kelly, K., Kemmerich, N., Kemp, E., Korandla, H.B., Kraus, H., Lackner, A., Lane, G.J., Lewis, P.M., Lisowska, M., Luzón, G., Lynch, W.A., Maccarrone, G., Mack, K.J., Majewski, P.A., Mano, R.D.P., Margalejo, C., Markoff, D., Marley, T., Marques, D.J.G., Massarczyk, R., Mazzitelli, G., McCabe, C., McKie, L.J., McLean, A.G., McNamara, P.C., Mei, Y., Messina, A., Mills, A.F., Mirallas, H., Miuchi, K., Monteiro, C.M.B., Mosbech, M.R., Muller, H., Natal da Luz, H., Nakamura, K.D., Natochii, A., Neep, T., Newstead, J.L., Nikolopoulos, K., Obis, L., Oliveri, E., Orlandini, G., Ortiz de Solórzano, A., von Oy, J., Papaevangelou, T., Pérez, O., Perez-Gonzalez, Y.F., Pfeiffer, D., Phan, N.S., Piacentini, S., Picatoste Olloqui, E., Pinci, D., Popescu, S., Prajapati, A., Queiroz, F.S., Raaf, J.L., Resnati, F., Ropelewski, L., Roque, R.C., Ruiz-Choliz, E., Rusu, A., Ruz, J., Samarati, J., Santos, E.M., dos Santos, J.M.F., Sauli, F., Scharenberg, L., Schiffer, T., Schmidt, S., Scholberg, K., Schott, M., Schueler, J., Segui, L., Sekiya, H., Sengupta, D., Slavkovska, Z., Snowden-Ifft, D., Soffitta, P., van Stenis, M., Spooner, N.J.C., Strigari, L., Stuchbery, A.E., Sun, X., Torelli, S., Tilly, E.G., Thomas, A.W., Thorpe, T.N., Urquijo, P., Utrobicic, A., Vahsen, S.E., Veenhof, R., Vogel, J.K., Williams, A.G., Wood, M.H., Zettlemoyer, J.“…The science case covered includes: the discovery of dark matter into the neutrino fog, directional detection of sub-MeV solar neutrinos, the precision study of coherent-elastic neutrino-nucleus scattering, the detection of solar axions, the measurement of the Migdal effect, X-ray polarimetry, and several other applied physics goals. …”
Publicado 2022
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5386
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5387por Kurinsky, Noah“…--HTML--><p>Over the last 20 years, searches for dark matter above the proton mass have advanced significantly across direct and indirect searches, but sub-GeV dark matter has until recently been comparatively unprobed. …”
Publicado 2022
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5388
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5389por Cembranos, Jose A R, de la Cruz-Dombriz, Alvaro, Dunsby, Peter K S, Mendez-Isla, Miguel“…In the context of brane-world extra-dimensional theories, we compute the positron production from branon dark matter annihilations and compare with the AMS-02 data. …”
Publicado 2019
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5390“…We describe different searches that have been conducted in the LHC using the vector boson fusion topol- ogy, specially in the regard of beyond standard model physics and dark matter. We finalize proposing a first glimpse into what could be a proposal for new searches of dark matter using the vector boson fusion topology with simplified dark matter models.…”
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5391por Baumgart, Matthew, Bishara, Fady, Brod, Joachim, Cohen, Timothy, Fitzpatrick, A. Liam, Gorbahn, Martin, Moldanazarova, Ulserik, Reece, Matthew, Rodd, Nicholas L., Solon, Mikhail P., Szafron, Robert, Zhang, Zhengkang, Zupan, Jure“…The quest to discover the nature of dark matter continues to drive many of the experimental and observational frontiers in particle physics, astronomy, and cosmology. …”
Publicado 2022
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5392por Ouellette, Jeff“…Ultrarelativistic collisions of large nuclei are understood to produce droplets of quark-gluon plasma (QGP), a deconfined phase of QCD matter that exists at high temperatures $\gtrsim 155$ MeV. …”
Publicado 2022
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5393por CERN. Geneva“…The answer to these questions could be dark matter. For decades, we have thought that dark matter would be a particle with a mass similar to the particles we already know about, like the proton or the recently discovered Higgs boson. …”
Publicado 2022
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5394
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5395por Nitta, T., Braine, T., Du, N., Guzzetti, M., Hanretty, C., Leum, G., Rosenberg, L.J., Rybka, G., Sinnis, J., Clarke, John, Siddiqi, I., Awida, M.H., Chou, A.S., Hollister, M., Knirck, S., Sonnenschein, A., Wester, W., Gleason, J.R., Hipp, A.T., Sikivie, P., Sullivan, N.S., Tanner, D.B., Khatiwada, R., Carosi, G., Robertson, N., Duffy, L.D., Boutan, C., Lentz, E., Oblath, N.S., Taubman, M.S., Yang, J., Daw, E.J., Perry, M.G., Bartram, C., Buckley, J.H., Gaikwad, C., Hoffman, J., Murch, K.W., Goryachev, M., Hartman, E., McAllister, B.T., Quiskamp, A., Thomson, C., Tobar, M.E., Dror, J.A., Murayama, H., Rodd, N.L.“…We report the first result of a direct search for a cosmic axion background (<math display="inline"><mrow><mi mathvariant="normal">C</mi><mi>a</mi><mi mathvariant="normal">B</mi></mrow></math>)—a relativistic background of axions that is not dark matter—performed with the axion haloscope, the Axion Dark Matter eXperiment (ADMX). …”
Publicado 2023
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5396
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5397
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5398por Dufour, G., Gerardin, A., Guerout, R., Lambrecht, A., Nesvizhevsky, V.V., Reynaud, S., Voronin, A.Yu.“…We study quantum reflection of antihydrogen atoms from matter slabs due to the van der WaalsCasimir-Polder potential. …”
Publicado 2012
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5399por Ebadi, Reza, Marshall, Mason C., Phillips, David F., Cremer, Johannes, Zhou, Tao, Titze, Michael, Kehayias, Pauli, Ziabari, Maziar Saleh, Delegan, Nazar, Rajendran, Surjeet, Sushkov, Alexander O., Heremans, F. Joseph, Bielejec, Edward S., Holt, Martin V., Walsworth, Ronald L.“…Next-generation dark matter (DM) detectors searching for weakly interacting massive particles (WIMPs) will be sensitive to coherent scattering from solar neutrinos, demanding an efficient background-signal discrimination tool. …”
Publicado 2022
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5400