Zobrazeno 1 - 10
of 440
pro vyhledávání: '"electron: recoil: energy"'
In 2020 the XENON1T experiment observed an excess of events with an electron recoil energy $E_R$ in the range of $2\,$--$\,3\,$keV. Such an excess can arise from a variety of sources such as solar axions or a neutrino magnetic moment, but also from i
Externí odkaz:
http://arxiv.org/abs/2207.08621
Autor:
Sangiorgio, S., Joshi, T. H., Bernstein, A., Coleman, J., Foxe, M., Hagmann, C., Jovanovic, I., Kazkaz, K., Mavrokoridis, K., Mozin, V., Pereverzev, S., Sorensen, P.
Publikováno v:
Nucl. Instrum. Meth. A, 728, 69-72 (2013
We describe the first demonstration of a sub-keV electron recoil energy threshold in a dual-phase liquid argon time projection chamber. This is an important step in an effort to develop a detector capable of identifying the ionization signal resultin
Externí odkaz:
http://arxiv.org/abs/1301.4290
Autor:
Adam Bernstein, Samuele Sangiorgio, Igor Jovanovic, Sergey Pereverzev, C. A. Hagmann, P. Sorensen, Vladimir Mozin, K. Mavrokoridis, Tenzing H. Y. Joshi, Michael Foxe, J. P. Coleman, Kareem Kazkaz
We describe the first demonstration of a sub-keV electron recoil energy threshold in a dual-phase liquid argon time projection chamber. This is an important step in an effort to develop a detector capable of identifying the ionization signal resultin
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::667a50262a26afb86cd4210b7426d6bc
http://arxiv.org/abs/1301.4290
http://arxiv.org/abs/1301.4290
Fixed target experiments where beam electrons are focused upon a thin target have shown great potential for probing new physics, including the sub-GeV dark matter (DM) paradigm. However, a signal in future experiments such as the light dark matter ex
Externí odkaz:
http://arxiv.org/abs/2411.10216
Autor:
Armengaud, E., Arnaud, Q., Augier, C., Benoît, A., Bergé, L., Billard, J., Broniatowski, A., Camus, P., Caze, A., Chapellier, M., Charlieux, F., de Jésus, M., Dumoulin, L., Eitel, K., Filippini, J.B., Filosofov, D., Gascon, J., Giuliani, A., Gros, M., Guy, E., Jin, Y., Juillard, A., Kleifges, M., Lattaud, H., Marnieros, S., Misiak, D., Navick, X.F., Nones, C., Olivieri, E., Oriol, C., Pari, P., Paul, B., Poda, D., Rozov, S., Salagnac, T., Sanglard, V., Vagneron, L., Yakushev, E., Zolotarova, A., Kavanagh, B.J.
Publikováno v:
Physical Review D
Physical Review D, 2022, 106 (6), pp.062004. ⟨10.1103/PhysRevD.106.062004⟩
Physical Review D, 2022, 106 (6), pp.062004. ⟨10.1103/PhysRevD.106.062004⟩
The EDELWEISS collaboration reports on the search for dark matter particle interactions via Migdal effect with masses between 32MeV⋅c−2 to 2 GeV⋅c−2 using a 200 g cryogenic Ge detector sensitive to simultaneously heat and ionization signals a
Publikováno v:
INSPIRE-HEP
In 2020 the XENON1T experiment observed an excess of events with an electron recoil energy $E_R$ in the range of $2\,$--$\,3\,$keV. Such an excess can arise from a variety of sources such as solar axions or a neutrino magnetic moment, but also from i
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::3d21a0ac681dc869829c11a491c9a9ad
http://inspirehep.net/record/2116149
http://inspirehep.net/record/2116149
Autor:
J. J. Cuenca-García, G. Volta, C. Hils, M. L. Benabderrahmane, M. P. Decowski, Ethan Brown, V. C. Antochi, Manfred Lindner, G. Iaquaniello, J. Mahlstedt, Yuehuan Wei, Michelle Galloway, A. Manfredini, Joachim Wolf, H. Schulze Eißing, S. Stern, D. Giovagnoli, M. Kleifges, K. Thieme, P. Di Gangi, S. Brünner, D. Douillet, T. Zhu, F. D. Amaro, Guillaume Plante, G. Khundzakishvili, Ch. Bourgeois, L. Scotto Lavina, Ferenc Glück, Kaixuan Ni, J. Pienaar, F. Toennies, Hardy Simgen, A. D. Ferella, C. Therreau, W. Shen, K. Eitel, Jelle Aalbers, D. Wenz, Bojan Milosevic, G. Koltmann, M. Clark, J. Howlett, A. Terliuk, Roberto Trotta, S. Milutinovic, P. Sanchez-Lucas, Sara Diglio, M. Balzer, Ch. Weinheimer, P. A. Breur, K. Odgers, R. Meyer, A. Depoian, F. Girard, M. Murra, Amos Breskin, H. Fischer, G. Sartorelli, Julien Masbou, I. Ostrovskiy, M. Selvi, T. Marrodán Undagoitia, P. Meinhardt, Biljana Antunović, J. Kellerer, Laura Baudis, Michael Wurm, L. Grandi, D. Baur, T. K. Kleiner, H. Landsman, A. Bismark, D. Ramírez García, L. Althueser, P. Gaemers, A. Kopec, A. Molinario, Y. Zhu, A. Loya Villalpando, M. Keller, Y. Mosbacher, Y. Ma, Mila Pandurovic, Andreas Kopmann, Ralph Engel, Jean-Pierre Cussonneau, Guido Drexlin, Kai Zuber, P. Szabo, Bart Pelssers, J. Qin, Y. Biondi, J.M.F. dos Santos, D. Masson, N. Rupp, F. Kuger, Giacomo Bruno, P. Shagin, J. A. M. Lopes, F. Agostini, Uwe Oberlack, L. LaCascio, C. Tunnell, S. Hansmann-Menzemer, Bernhard Holzapfel, Y. Xing, R. Größle, Sebastian Lindemann, J. Palacio, C. Wittweg, S. Wuestling, D. Vorkapic, M. Obradovic, Benjamin Kilminster, J. R. Angevaare, D. Schulte, Manuel Gameiro da Silva, Steffen Grohmann, Marc Weber, J. Qi, W. Fulgione, Eef Masson, J. P. Zopounidis, C.M.B. Monteiro, Jan Conrad, A. Di Giovanni, S. Reichard, R. Glade-Beucke, Lawrence M. Krauss, M. Weiss, M. Steidl, D. Cichon, D. Thers, J. Dierle, S. Sharma, Elena Aprile, João Cardoso, M. Pierre, R. F. Lang, R. Gumbsheimer, F. Gao, April S. Brown, N. McFadden, H-C. Schultz-Coulon, E. Erdal, F. Arneodo, C. Macolino, F. Lombardi, V. Pizzella, Volker Hannen, Peter Fischer, F. Jörg, C. Capelli, K. Morå, R. Budnik, M. Alfonsi, Kathrin Valerius, S. E. M. Ahmed Maouloud, E. Morteau, Lior Arazi, Marc Schumann, R. Peres, D. Subotic, A. P. Colijn, Jayden L. Newstead
Publikováno v:
European Physical Journal C: Particles and Fields
European Physical Journal C: Particles and Fields, Springer Verlag (Germany), 2020, 80 (12), ⟨10.1140/epjc/s10052-020-08602-7⟩
European Physical Journal C: Particles and Fields, Springer Verlag (Germany), 2020, 80 (12), pp.1133. ⟨10.1140/epjc/s10052-020-08602-7⟩
European Physical Journal
European Physical Journal C: Particles and Fields, Vol 80, Iss 12, Pp 1-10 (2020)
The European physical journal / C, 80 (12), Art.-Nr. 1133
European Physical Journal C, 80(12):1133. Springer New York
European Physical Journal C. Particles and Fields
European Physical Journal C: Particles and Fields, Springer Verlag (Germany), 2020, 80 (12), ⟨10.1140/epjc/s10052-020-08602-7⟩
European Physical Journal C: Particles and Fields, Springer Verlag (Germany), 2020, 80 (12), pp.1133. ⟨10.1140/epjc/s10052-020-08602-7⟩
European Physical Journal
European Physical Journal C: Particles and Fields, Vol 80, Iss 12, Pp 1-10 (2020)
The European physical journal / C, 80 (12), Art.-Nr. 1133
European Physical Journal C, 80(12):1133. Springer New York
European Physical Journal C. Particles and Fields
We detail the sensitivity of the liquid xenon (LXe) DARWIN observatory to solar neutrinos via elastic electron scattering. We find that DARWIN will have the potential to measure the fluxes of five solar neutrino components: $pp$, $^7$Be, $^{13}$N, $^
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::6ecfd333056b7ca7e5f36c2d97736cb3
http://hdl.handle.net/11585/809468
http://hdl.handle.net/11585/809468
Autor:
Zhao, J., Abusleme, A., Adam, T., Ahmad, S., Ahmed, R., Aiello, S., Akram, M., An, F., An, Q., Andronico, G., Anfimov, N., Antonelli, V., Antoshkina, T., Asavapibhop, B., André, J. P. A. M., Auguste, D., Babic, A., Balashov, N., Baldini, W., Barresi, A., Basilico, D., Baussan, E., Bellato, M., Bergnoli, A., Birkenfeld, T., Blin, S., Blum, D., Blyth, S., Bolshakova, A., Bongrand, M., Bordereau, C., Breton, D., Brigatti, A., Brugnera, R., Bruno, R., Budano, A., Buscemi, M., Busto, J., Butorov, I., Cabrera, A., Cai, H., Cai, X., Cai, Y., Cai, Z., Callegari, R., Cammi, A., Campeny, A., Cao, C., Cao, G., Cao, J., Caruso, R., Cerna, C., Chang, J., Chang, Y., Chen, P., Chen, P. -A, Chen, S., Chen, X., Chen, Y. -W, Chen, Y., Chen, Z., Cheng, J., Cheng, Y., Chetverikov, A., Chiesa, D., Chimenti, P., Chukanov, A., Claverie, G., Clementi, C., Clerbaux, B., Di Lorenzo, S. C., Corti, D., Dal Corso, F., Dalager, O., La Taille, C., Deng, J., Deng, Z., Depnering, W., Diaz, M., Ding, X., Ding, Y., Dirgantara, B., Dmitrievsky, S., Dohnal, T., Dolzhikov, D., Donchenko, G., Dong, J., Doroshkevich, E., Dracos, M., Druillole, F., Du, R., Du, S., Dusini, S., Dvorak, M., Enqvist, T., Enzmann, H., Fabbri, A., Fajt, L., Fan, D., Fan, L., Fang, J., Fang, W., Fargetta, M., Fedoseev, D., Fekete, V., Feng, L. -C, Feng, Q., Ford, R., Fournier, A., Gan, H., Gao, F., Garfagnini, A., Gavrikov, A., Giammarchi, M., Giaz, A., Giudice, N., Gonchar, M., Gong, G., Gong, H., Gornushkin, Y., Göttel, A., Grassi, M., Grewing, C., Gromov, V., Gu, M., Gu, X., Gu, Y., Guan, M., Guardone, N., Gul, M., Guo, C., Guo, J., Guo, W., Guo, X., Guo, Y., Hackspacher, P., Hagner, C., Han, R., Han, Y., Hassan, M. S., He, M., He, W., Heinz, T., Hellmuth, P., Heng, Y., Herrera, R., Hor, Y., Hou, S., Hsiung, Y., Hu, B. -Z, Hu, H., Hu, J., Hu, S., Hu, T., Hu, Z., Huang, C., Huang, G., Huang, H., Huang, W., Huang, X., Huang, Y., Hui, J., Huo, L., Huo, W., Huss, C., Hussain, S., Ioannisian, A., Isocrate, R., Jelmini, B., Jen, K. -L, Jeria, I., Ji, X., Jia, H., Jia, J., Jian, S., Jiang, D., Jiang, W., Jiang, X., Jin, R., Jing, X., Jollet, C., Joutsenvaara, J., Jungthawan, S., Kalousis, L., Kampmann, P., Kang, L., Karaparambil, R., Kazarian, N., Khosonthongkee, K., Korablev, D., Kouzakov, K., Krasnoperov, A., Kruth, A., Kutovskiy, N., Kuusiniemi, P., Lachenmaier, T., Landini, C., Leblanc, S., Lebrin, V., Lefevre, F., Lei, R., Leitner, R., Leung, J., Li, D., Li, F., Li, H., Li, J., Li, M., Li, N., Zhu, Z., Li, Q., Li, R., Li, S., Li, T., Li, W., Li, X., Li, Y., Li, Z., Liang, H., Zhuang, B., Liao, J., Liebau, D., Limphirat, A., Limpijumnong, S., Lin, G. -L, Lin, S., Lin, T., Ling, J., Lippi, I., Liu, F., Liu, H., Liu, J., Liu, M., Liu, Q., Liu, R., Liu, S., Liu, X., Liu, Y., Lokhov, A., Lombardi, P., Lombardo, C., Loo, K., Lu, C., Lu, H., Lu, J., Lu, S., Lu, X., Lubsandorzhiev, B., Lubsandorzhiev, S., Ludhova, L., Lukanov, A., Luo, F., Luo, G., Luo, P., Luo, S., Luo, W., Lyashuk, V., Ma, B., Ma, Q., Ma, S., Ma, X., Maalmi, J., Malyshkin, Y., Mandujano, R. C., Mantovani, F., Manzali, F., Mao, X., Mao, Y., Mari, S. M., Marini, F., Marium, S., Martellini, C., Martin-Chassard, G., Martini, A., Mayer, M., Mayilyan, D., Mednieks, I., Meng, Y., Meregaglia, A., Meroni, E., Meyhöfer, D., Mezzetto, M., Miller, J., Miramonti, L., Montini, P., Montuschi, M., Müller, A., Nastasi, M., Naumov, D. V., Naumova, E., Navas-Nicolas, D., Nemchenok, I., Thi, M. T. N., Ning, F., Ning, Z., Nunokawa, H., Oberauer, L., Ochoa-Ricoux, J. P., Olshevskiy, A., Orestano, D., Ortica, F., Othegraven, R., Pan, H. -R, Paoloni, A., Parmeggiano, S., Pei, Y., Pelliccia, N., Peng, A., Peng, H., Perrot, F., Petitjean, P. -A, Petrucci, F., Pilarczyk, O., Rico, L. F. P., Popov, A., Poussot, P., Pratumwan, W., Previtali, E., Qi, F., Qi, M., Qian, S., Qian, X., Qian, Z., Qiao, H., Qin, Z., Qiu, S., Rajput, M. U., Ranucci, G., Raper, N., Re, A., Rebber, H., Rebii, A., Ren, B., Ren, J., Ricci, B., Robens, M., Roche, M., Rodphai, N., Romani, A., Roskovec, B., Roth, C., Ruan, X., Rujirawat, S., Rybnikov, A., Andrei Sadovskiy, Saggese, P., Sanfilippo, S., Sangka, A., Sanguansak, N., Sawangwit, U., Sawatzki, J., Sawy, F., Schever, M., Schwab, C., Schweizer, K., Selyunin, A., Serafini, A., Settanta, G., Settimo, M., Shao, Z., Sharov, V., Shaydurova, A., Shi, J., Shi, Y., Shutov, V., Sidorenkov, A., Šimkovic, F., Sirignano, C., Siripak, J., Sisti, M., Slupecki, M., Smirnov, M., Smirnov, O., Sogo-Bezerra, T., Sokolov, S., Songwadhana, J., Soonthornthum, B., Sotnikov, A., Šrámek, O., Sreethawong, W., Stahl, A., Stanco, L., Stankevich, K., Štefánik, D., Steiger, H., Steinmann, J., Sterr, T., Stock, M. R., Strati, V., Studenikin, A., Sun, S., Sun, X., Sun, Y., Suwonjandee, N., Szelezniak, M., Tang, J., Tang, Q., Tang, X., Tietzsch, A., Tkachev, I., Tmej, T., Torri, M. D. C., Treskov, K., Triossi, A., Troni, G., Trzaska, W., Tuve, C., Ushakov, N., Den Boom, J., Waasen, S., Vanroyen, G., Vedin, V., Verde, G., Vialkov, M., Viaud, B., Vollbrecht, M., Volpe, C., Vorobel, V., Voronin, D., Votano, L., Walker, P., Wang, C., Wang, C. -H, Wang, E., Wang, G., Wang, J., Wang, K., Wang, L., Wang, M., Zong, L., Wang, R., Wang, S., Wang, W., Zou, J., Wang, X., Wang, Y., Zhuang, H., Wang, Z., Waqas, M., Watcharangkool, A., Wei, L., Wei, W., Wei, Y., Wen, K., Wen, L., Wiebusch, C., Wong, S. C. -F, Wonsak, B., Wu, D., Wu, Q., Wu, Z., Wurm, M., Wurtz, J., Wysotzki, C., Xi, Y., Xia, D., Xie, X., Xie, Y., Xie, Z., Xing, Z., Xu, B., Xu, C., Xu, D., Xu, F., Xu, H., Xu, J., Xu, M., Xu, Y., Yan, B., Yan, T., Yan, W., Yan, X., Yan, Y., Yang, A., Yang, C., Yang, H., Yang, J., Yang, L., Yang, X., Yang, Y., Zhu, K., Yao, H., Yasin, Z., Ye, J., Ye, M., Ye, Z., Yegin, U., Yermia, F., Yi, P., Yin, N., Yin, X., You, Z., Yu, B., Yu, C., Yu, H., Yu, M., Yu, X., Yu, Z., Yuan, C., Yuan, Y., Yuan, Z., Yue, B., Zafar, N., Zambanini, A., Zavadskyi, V., Zeng, S., Zeng, T., Zeng, Y., Zhan, L., Zhang, A., Zhang, F., Zhang, G., Zhang, H., Zhang, J., Zhang, P., Zhang, Q., Zhang, S., Zhang, T., Zhang, X., Zhang, Y., Zhang, Z., Zhao, F., Zhao, R., Zhao, S., Zhao, T., Zheng, D., Zheng, H., Zheng, M., Zheng, Y., Zhong, W., Zhou, J., Zhou, L., Zhou, N., Zhou, S., Zhou, T., Zhou, X., Zhu, J.
Publikováno v:
Chin.Phys.C
Chin.Phys.C, 2021, 45 (2), pp.023004. ⟨10.1088/1674-1137/abd92a⟩
Chinese physics / C 45(2), 023004-(2021). doi:10.1088/1674-1137/abd92a
Chinese Physics C, 45 (2
Anatomical science international (2020).
Chinese physics / C 45(2), 023004 (2021). doi:10.1088/1674-1137/abd92a
Scopus-Elsevier
Chin.Phys.C, 2021, 45 (2), pp.023004. ⟨10.1088/1674-1137/abd92a⟩
Chinese physics / C 45(2), 023004-(2021). doi:10.1088/1674-1137/abd92a
Chinese Physics C, 45 (2
Anatomical science international (2020).
Chinese physics / C 45(2), 023004 (2021). doi:10.1088/1674-1137/abd92a
Scopus-Elsevier
The Jiangmen Underground Neutrino Observatory (JUNO) features a 20 kt multi-purpose underground liquid scintillator sphere as its main detector. Some of JUNO's features make it an excellent location for 8B solar neutrino measurements, such as its low
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::4083c2cf9842154128e146fafc4fc710
https://hal.science/hal-02905915
https://hal.science/hal-02905915
Autor:
Xu, Shuai1 (AUTHOR), Zheng, Sibo1 (AUTHOR) sibozheng.zju@gmail.com
Publikováno v:
European Physical Journal C -- Particles & Fields. May2021, Vol. 81 Issue 5, p1-5. 5p.