Results 11 to 20 of about 153,444 (258)
Direct virtual photon production in Au+Au collisions at sNN=200 GeV [PDF]
Physics Letters B, 2017 We report the direct virtual photon invariant yields in the transverse momentum ranges ...L. Adamczyk, J.K. Adkins, G. Agakishiev, M.M. Aggarwal, Z. Ahammed, N.N. Ajitanand, I. Alekseev, D.M. Anderson, R. Aoyama, A. Aparin, D. Arkhipkin, E.C. Aschenauer, M.U. Ashraf, A. Attri, G.S. Averichev, X. Bai, V. Bairathi, A. Behera, R. Bellwied, A. Bhasin, A.K. Bhati, P. Bhattarai, J. Bielcik, J. Bielcikova, L.C. Bland, I.G. Bordyuzhin, J. Bouchet, J.D. Brandenburg, A.V. Brandin, D. Brown, I. Bunzarov, J. Butterworth, H. Caines, M. Calderón de la Barca Sánchez, J.M. Campbell, D. Cebra, I. Chakaberia, P. Chaloupka, Z. Chang, N. Chankova-Bunzarova, A. Chatterjee, S. Chattopadhyay, X. Chen, X. Chen, J.H. Chen, J. Cheng, M. Cherney, W. Christie, G. Contin, H.J. Crawford, S. Das, L.C. De Silva, R.R. Debbe, T.G. Dedovich, J. Deng, A.A. Derevschikov, L. Didenko, C. Dilks, X. Dong, J.L. Drachenberg, J.E. Draper, L.E. Dunkelberger, J.C. Dunlop, L.G. Efimov, N. Elsey, J. Engelage, G. Eppley, R. Esha, S. Esumi, O. Evdokimov, J. Ewigleben, O. Eyser, R. Fatemi, S. Fazio, P. Federic, P. Federicova, J. Fedorisin, Z. Feng, P. Filip, E. Finch, Y. Fisyak, C.E. Flores, J. Fujita, L. Fulek, C.A. Gagliardi, D. Garand, F. Geurts, A. Gibson, M. Girard, D. Grosnick, D.S. Gunarathne, Y. Guo, A. Gupta, S. Gupta, W. Guryn, A.I. Hamad, A. Hamed, A. Harlenderova, J.W. Harris, L. He, S. Heppelmann, S. Heppelmann, A. Hirsch, G.W. Hoffmann, S. Horvat, B. Huang, T. Huang, H.Z. Huang, X. Huang, T.J. Humanic, P. Huo, G. Igo, W.W. Jacobs, A. Jentsch, J. Jia, K. Jiang, S. Jowzaee, E.G. Judd, S. Kabana, D. Kalinkin, K. Kang, K. Kauder, H.W. Ke, D. Keane, A. Kechechyan, Z. Khan, D.P. Kikoła, I. Kisel, A. Kisiel, L. Kochenda, M. Kocmanek, T. Kollegger, L.K. Kosarzewski, A.F. Kraishan, P. Kravtsov, K. Krueger, N. Kulathunga, L. Kumar, J. Kvapil, J.H. Kwasizur, R. Lacey, J.M. Landgraf, K.D. Landry, J. Lauret, A. Lebedev, R. Lednicky, J.H. Lee, W. Li, X. Li, C. Li, Y. Li, J. Lidrych, T. Lin, M.A. Lisa, Y. Liu, F. Liu, H. Liu, P. Liu, T. Ljubicic, W.J. Llope, M. Lomnitz, R.S. Longacre, S. Luo, X. Luo, G.L. Ma, Y.G. Ma, L. Ma, R. Ma, N. Magdy, R. Majka, D. Mallick, S. Margetis, C. Markert, H.S. Matis, K. Meehan, J.C. Mei, Z.W. Miller, N.G. Minaev, S. Mioduszewski, D. Mishra, S. Mizuno, B. Mohanty, M.M. Mondal, D.A. Morozov, M.K. Mustafa, Md. Nasim, T.K. Nayak, J.M. Nelson, M. Nie, G. Nigmatkulov, T. Niida, L.V. Nogach, T. Nonaka, S.B. Nurushev, G. Odyniec, A. Ogawa, K. Oh, V.A. Okorokov, D. Olvitt, Jr., B.S. Page, R. Pak, Y. Pandit, Y. Panebratsev, B. Pawlik, H. Pei, C. Perkins, P. Pile, J. Pluta, K. Poniatowska, J. Porter, M. Posik, A.M. Poskanzer, N.K. Pruthi, M. Przybycien, J. Putschke, H. Qiu, A. Quintero, S. Ramachandran, R.L. Ray, R. Reed, M.J. Rehbein, H.G. Ritter, J.B. Roberts, O.V. Rogachevskiy, J.L. Romero, J.D. Roth, L. Ruan, J. Rusnak, O. Rusnakova, N.R. Sahoo, P.K. Sahu, S. Salur, J. Sandweiss, M. Saur, J. Schambach, A.M. Schmah, W.B. Schmidke, N. Schmitz, B.R. Schweid, J. Seger, M. Sergeeva, P. Seyboth, N. Shah, E. Shahaliev, P.V. Shanmuganathan, M. Shao, A. Sharma, M.K. Sharma, W.Q. Shen, Z. Shi, S.S. Shi, Q.Y. Shou, E.P. Sichtermann, R. Sikora, M. Simko, S. Singha, M.J. Skoby, N. Smirnov, D. Smirnov, W. Solyst, L. Song, P. Sorensen, H.M. Spinka, B. Srivastava, T.D.S. Stanislaus, M. Strikhanov, B. Stringfellow, T. Sugiura, M. Sumbera, B. Summa, Y. Sun, X.M. Sun, X. Sun, B. Surrow, D.N. Svirida, A.H. Tang, Z. Tang, A. Taranenko, T. Tarnowsky, A. Tawfik, J. Thäder, J.H. Thomas, A.R. Timmins, D. Tlusty, T. Todoroki, M. Tokarev, S. Trentalange, R.E. Tribble, P. Tribedy, S.K. Tripathy, B.A. Trzeciak, O.D. Tsai, T. Ullrich, D.G. Underwood, I. Upsal, G. Van Buren, G. van Nieuwenhuizen, A.N. Vasiliev, F. Videbæk, S. Vokal, S.A. Voloshin, A. Vossen, G. Wang, Y. Wang, F. Wang, Y. Wang, J.C. Webb, G. Webb, L. Wen, G.D. Westfall, H. Wieman, S.W. Wissink, R. Witt, Y. Wu, Z.G. Xiao, W. Xie, G. Xie, J. Xu, N. Xu, Q.H. Xu, Y.F. Xu, Z. Xu, Y. Yang, Q. Yang, C. Yang, S. Yang, Z. Ye, Z. Ye, L. Yi, K. Yip, I.-K. Yoo, N. Yu, H. Zbroszczyk, W. Zha, Z. Zhang, X.P. Zhang, J.B. Zhang, S. Zhang, J. Zhang, Y. Zhang, J. Zhang, S. Zhang, J. Zhao, C. Zhong, L. Zhou, C. Zhou, X. Zhu, Z. Zhu, M. Zyzak +348 moredoaj +2 more sourcesThe acceleration of a high-charge electron bunch to 10 GeV in a 10-cm nanoparticle-assisted wakefield accelerator [PDF]
Matter and Radiation at Extremes, 2022 An intense laser pulse focused onto a plasma can excite nonlinear plasma waves. Under appropriate conditions, electrons from the background plasma are trapped in the plasma wave and accelerated to ultra-relativistic velocities.C. Aniculaesei, T. Ha, S. Yoffe, L. Labun, S. Milton, E. Mccary, M. Spinks, H. Quevedo, O. Labun, Ritwik Sain, A. Hannasch, R. Zgadzaj, I. Pagano, J. A. Franco-Altamirano, M. Ringuette, Erhart Gaul, S. Luedtke, G. Tiwari, B. Ersfeld, E. Brunetti, H. Ruhl, T. Ditmire, S. Bruce, M. Donovan, M. C. Downer, D. Jaroszynski, B. Hegelich +26 moresemanticscholar +1 more sourceSENSEI: Direct-Detection Results on sub-GeV Dark Matter from a New Skipper CCD. [PDF]
Physical Review Letters, 2020 We present the first direct-detection search for sub-GeV dark matter using a new ∼2-gram high-resistivity Skipper CCD from a dedicated fabrication batch that was optimized for dark matter searches.Liron Barak, I. Bloch, M. Cababie, G. Cancelo, L. Chaplinsky, F. Chierchie, M. Crisler, A. Drlica-Wagner, R. Essig, J. Estrada, E. Etzion, G. Moroni, D. Gift, S. Munagavalasa, A. Orly, D. Rodrigues, A. Singal, M. S. Haro, L. Stefanazzi, J. Tiffenberg, S. Uemura, T. Volansky, T. Yu +22 moresemanticscholar +1 more sourceThe “96 GeV excess” at the LHC [PDF]
International Journal of Modern Physics A, 2021 The CMS collaboration reported an intriguing [Formula: see text] (local) excess at 96 GeV in the light Higgs-boson search in the diphoton decay mode. This mass coincides with a [Formula: see text] (local) excess in the [Formula: see text] final state at LEP. We briefly review the proposed combined interpretations for the two excesses.Biekötter, T., Chakraborti, M., Heinemeyer, S. +2 moreopenaire +5 more sourcesMeasurement of the cosmic ray proton spectrum from 40 GeV to 100 TeV with the DAMPE satellite [PDF]
Science Advances, 2019 DAMPE satellite has directly measured the cosmic ray proton spectrum from 40 GeV to 100 TeV and revealed a new feature at about 13.6 TeV. The precise measurement of the spectrum of protons, the most abundant component of the cosmic radiation, is ...Q. An, R. Asfandiyarov, P. Azzarello, P. Bernardini, X. Bi, M. Cai, J. Chang, D. Chen, H. Chen, J. Chen, W. Chen, M. Cui, T. Cui, H. Dai, A. D’Amone, A. De Benedittis, I. De Mitri, M. Di Santo, M. Ding, T. Dong, Y. Dong, Z. Dong, G. Donvito, D. Droz, J. Duan, K. Duan, D. D’Urso, R. Fan, Y. Fan, F. Fang, C. Feng, L. Feng, P. Fusco, V. Gallo, F. Gan, M. Gao, F. Gargano, K. Gong, Y. Gong, D. Guo, J. Guo, X. Guo, S. Han, Y. Hu, G. Huang, X. Y. Huang, Y. Y. Huang, M. Ionica, W. Jiang, X. Jin, J. Kong, S. Lei, S. Li, W. Li, X. Li, X. Li, Y. Li, Y. Liang, Y. Liang, N. H. Liao, C. M. Liu, H. Liu, J. Liu, S. Liu, W. Liu, Y. Liu, F. Loparco, C. Luo, M. Ma, P. Ma, S. Ma, T. Ma, X. Ma, G. Marsella, M. Mazziotta, D. Mo, X. Niu, X. Pan, W. Peng, X. Peng, R. Qiao, J. Rao, M. Salinas, G. Shang, W. Shen, Z. Shen, Z. Shen, J. Song, H. Su, M. Su, Z. Sun, A. Surdo, X. Teng, A. Tykhonov, S. Vitillo, C. Wang, Hong Wang, H. Wang, J. Wang, L. Wang, Q. Wang, S. Wang, X. H. Wang, X. L. Wang, Y. Wang, Y. P. Wang, Y. Wang, Z. Wang, D. Wei, J. Wei, Y. F. Wei, S. Wen, D. Wu, J. Wu, L. Wu, S. Wu, X. Wu, K. Xi, Z. Xia, H. Xu, Z. Xu, Z. L. Xu, Z. Xu, G. Xue, H. Yang, P. Yang, Y. Yang, Z. L. Yang, H. Yao, Y. Yu, Q. Yuan, C. Yue, J. Zang, F. Zhang, J. Zhang, J. Zhang, P. Zhang, S. X. Zhang, W. Zhang, Y. Zhang, Y. Zhang, Y. Zhang, Y. Zhang, Y. Zhang, Z. Zhang, Z. Zhang, H. Zhao, H. Zhao, X. Zhao, C. Zhou, Y. Zhou, X. Zhu, Y. Zhu, S. Zimmer +153 moresemanticscholar +1 more source