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pro vyhledávání: '"PAGE, T. A."'
Autor:
Baldini, M., Ambrosio, G., Apollinari, G., Blowers, J., Bossert, R., Carcagno, R., Chlachidze, G., DiMarco, J., Feher, S., Krave, S., Lombardo, V., Martin, L., Narug, C., Nicol, T. H., Nikolic, V., Nobrega, A., Marinozzi, V., Orozco, C., Page, T., Stoynev, S., Strauss, T., Turenne, M., Turrioni, D., Vouris, A., Yu, M., Baskys, A., Cheng, D., Croteau, J. F., Ferracin, P., Fajardo, L. Garcia, Lee, E., Lin, A., Marchev-sky, M., Naus, M., Pan, H., Pong, I., Prestemon, S., Ray, K., Sabbi, G., Sanabria, C., Vallone, G., Wang, X., Amm, K., Anerella, M., Yahia, A. Ben, Hocker, H., Joshi, P., Muratore, J., Schmalzle, J., Song, H., Wanderer, P.
Publikováno v:
JACoW IPAC2024 (2024) THYN1
The Large Hadron Collider will soon undergo an upgrade to increase its luminosity by a factor of ~10 [1]. A crucial part of this upgrade will be replacement of the NbTi focusing magnets with Nb3Sn magnets that achieve a ~50% increase in the field str
Externí odkaz:
http://arxiv.org/abs/2405.18530
Autor:
Ambrosio, G., Amm, K., Anerella, M., Apollinari, G., Izquierdo, G. Arnau, Baldini, M., Ballarino, A., Barth, C., Yahia, A. Ben, Blowers, J., De Sousa, P. Borges, Bossert, R., Bulat, B., Carcagno, R., Cheng, D. W., Chlachidze, G., Cooley, L., Crouvizier, M., Devred, A., DiMarco, J., Feher, S., Ferracin, P., Troitino, J. Ferradas, Fajardo, L. Garcia, Gourlay, S., Hocker, H. M., Bermudez, S. Izquierdo, Joshi, P., Krave, S., Lee, E. M., Levitan, J., Lombardo, V., Lu, J., Marchevsky, M., Marinozzi, V., Moros, A., Muratore, J., Naus, M., Nobrega, F., Page, T., Pong, I., Perez, J. C., Prestemon, S., Ravaioli, E., Ray, K. L., Sabbi, G., Schmalzle, J., Seyl, J., Sgobba, S., Stoynev, S., Strauss, T., Todesco, E., Turrioni, D., Vallone, G., Van Weelderen, R., Wanderer, P., Wang, X., Yu, M.
By the end of October 2022, the US HL-LHC Accelerator Upgrade Project (AUP) had completed fabrication of ten MQXFA magnets and tested eight of them. The MQXFA magnets are the low beta quadrupole magnets to be used in the Q1 and Q3 Inner Triplet eleme
Externí odkaz:
http://arxiv.org/abs/2301.09523
Akademický článek
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Autor:
Exley, G., Hernandez, R.R., Page, T., Chipps, M., Gambro, S., Hersey, M., Lake, R., Zoannou, K.-S., Armstrong, A.
Publikováno v:
In Renewable and Sustainable Energy Reviews December 2021 152
Autor:
Bartoszek, L., Barnes, E., Miller, J. P., Mott, J., Palladino, A., Quirk, J., Roberts, B. L., Crnkovic, J., Polychronakos, V., Tishchenko, V., Yamin, P., Cheng, C. -h., Echenard, B., Flood, K., Hitlin, D. G., Kim, J. H., Miyashita, T. S., Porter, F. C., Röhrken, M., Trevor, J., Zhu, R. -Y., Heckmaier, E., Kang, T. I., Lim, G., Molzon, W., You, Z., Artikov, A. M., Budagov, J. A., Davydov, Yu. I., Glagolev, V. V., Simonenko, A. V., Usubov, Z. U., Oh, S. H., Wang, C., Ambrosio, G., Andreev, N., Arnold, D., Ball, M., Bernstein, R. H., Bianchi, A., Biery, K., Bossert, R., Bowden, M., Brandt, J., Brown, G., Brown, H., Buehler, M., Campbell, M., Cheban, S., Chen, M., Coghill, J., Coleman, R., Crowley, C., Deshpande, A., Deuerling, G., Dey, J., Dhanaraj, N., Dinnon, M., Dixon, S., Drendel, B., Eddy, N., Evans, R., Evbota, D., Fagan, J., Feher, S., Fellenz, B., Friedsam, H., Gallo, G., Gaponenko, A., Gardner, M., Gaugel, S., Genser, K., Ginther, G., Glass, H., Glenzinski, D., Hahn, D., Hansen, S., Hartsell, B., Hays, S., Hocker, J. A., Huedem, E., Huffman, D., Ibrahim, A., Johnstone, C., Kashikhin, V., Kashikhin, V. V., Kasper, P., Kiper, T., Knapp, D., Knoepfel, K., Kokoska, L., Kozlovsky, M., Krafczyk, G., Kramp, M., Krave, S., Krempetz, K., Kutschke, R. K., Kwarciany, R., Lackowski, T., Lamm, M. J., Larwill, M., Leavell, F., Leeb, D., Leveling, A., Lincoln, D., Logashenko, V., Lombardo, V., Lopes, M. L., Makulski, A., Martinez, A., McArthur, D., McConologue, F., Michelotti, L., Mokhov, N., Morgan, J., Mukherjee, A., Murat, P., Nagaslaev, V., Neuffer, D. V., Nicol, T., Niehoff, J., Nogiec, J., Olson, M., Orris, D., Ostojic, R., Page, T., Park, C., Peterson, T., Pilipenko, R., Pla-Dalmau, A., Poloubotko, V., Popovic, M., Prebys, E., Prieto, P., Pronskikh, V., Pushka, D., Rabehl, R., Ray, R. E., Rechenmacher, R., Rivera, R., Robotham, W., Rubinov, P., Rusu, V. L., Scarpine, V., Schappert, W., Schoo, D., Stefanik, A., Still, D., Tang, Z., Tanovic, N., Tartaglia, M., Tassotto, G., Tinsley, D., Tschirhart, R. S., Vogel, G., Wagner, R., Wands, R., Wang, M., Werkema, S., White Jr., H. B., Whitmore, J., Wielgos, R., Woods, R., Worel, C., Zifko, R., Ciambrone, P., Colao, F., Cordelli, M., Corradi, G., Dane, E., Giovannella, S., Happacher, F., Luca, A., Miscetti, S., Ponzio, B., Pileggi, G., Saputi, A., Sarra, I., Soleti, R. S., Stomaci, V., Martini, M., Fabbricatore, P., Farinon, S., Musenich, R., Alexander, D., Daniel, A., Empl, A., Hungerford, E. V., Lau, K., Gollin, G. D., Huang, C., Roderick, D., Trundy, B., Brown, D. Na., Ding, D., Kolomensky, Yu. G., Lee, M. J., Cascella, M., Grancagnolo, F., Ignatov, F., Innocente, A., L'Erario, A., Miccoli, A., Maffezzoli, A., Mazzotta, P., Onorato, G., Piacentino, G. M., Rella, S., Rossetti, F., Spedicato, M., Tassielli, G., Taurino, A., Zavarise, G., Hooper, R., Brown, D. No., Djilkibaev, R., Matushko, V., Ankenbrandt, C., Boi, S., Dychkant, A., Hedin, D., Hodge, Z., Khalatian, V., Majewski, R., Martin, L., Okafor, U., Pohlman, N., Riddel, R. S., Shellito, A., de Gouvea, A. L., Cervelli, F., Carosi, R., Di Falco, S., Donati, S., Lomtadze, T., Pezzullo, G., Ristori, L., Spinella, F., Jones, M., Corcoran, M. D., Orduna, J., Rivera, D., Bennett, R., Caretta, O., Davenne, T., Densham, C., Loveridge, P., Odell, J., Bomgardner, R., Dukes, E. C., Ehrlich, R., Frank, M., Goadhouse, S., Group, R., Ho, E., Ma, H., Oksuzian, Y., Purvis, J., Wu, Y., Hertzog, D. W., Kammel, P., Lynch, K. R., Popp, J. L.
The Mu2e experiment at Fermilab will search for charged lepton flavor violation via the coherent conversion process mu- N --> e- N with a sensitivity approximately four orders of magnitude better than the current world's best limits for this process.
Externí odkaz:
http://arxiv.org/abs/1501.05241
Autor:
López-Sampson, A, Page, T
Publikováno v:
Journal of Tropical Forest Science, 2019 Jan 01. 31(2), 211-221.
Externí odkaz:
https://www.jstor.org/stable/26626992
Publikováno v:
Journal of Financial & Quantitative Analysis; Feb2023, Vol. 58 Issue 1, p71-103, 33p
Autor:
Knoepfel, K., Pronskikh, V., Bernstein, R., Brown, D. N., Coleman, R., Dukes, C. E., Ehrlich, R., Frank, M. J., Glenzinski, D., Group, R. C., Hedin, D., Hitlin, D., Lamm, M., Miller, J., Miscetti, S., Mokhov, N., Mukherjee, A., Nagaslaev, V., Oksuzian, Y., Page, T., Ray, R. E., Rusu, V. L., Wagner, R., Werkema, S.
We explore the feasibility of a next-generation Mu2e experiment that uses Project-X beams to achieve a sensitivity approximately a factor ten better than the currently planned Mu2e facility.
Comment: 37 pages, 9 figures; submitted as a White Pap
Comment: 37 pages, 9 figures; submitted as a White Pap
Externí odkaz:
http://arxiv.org/abs/1307.1168
Autor:
Project, The Mu2e, Collaboration, Abrams, R. J., Alezander, D., Ambrosio, G., Andreev, N., Ankenbrandt, C. M., Asner, D. M., Arnold, D., Artikov, A., Barnes, E., Bartoszek, L., Bernstein, R. H., Biery, K., Biliyar, V., Bonicalzi, R., Bossert, R., Bowden, M., Brandt, J., Brown, D. N., Budagov, J., Buehler, M., Burov, A., Carcagno, R., Carey, R. M., Carosi, R., Cascella, M., Cauz, D., Cervelli, F., Chandra, A., Chang, J. K., Cheng, C., Ciambrone, P., Coleman, R. N., Cooper, M., Corcoran, M. C., Cordelli, M., Davydov, Y., de Gouvea, A. L., De Lorenzis, L., Debevec, P. T., DeJongh, F., Densham, C., Deuerling, G., Dey, J., Di Falco, S., Dixon, S., Djilkibaev, R., Drendel, B., Dukes, E. C., Dychkant, A., Echenard, B., Ehrlich, R., Evans, N., Evbota, D., Fang, I., Fast, J. E., Feher, S., Fischler, M., Frank, M., Frlez, E., Fung, S. S., Gallo, G., Galucci, G., Gaponenko, A., Genser, K., Giovannella, S., Glagolev, V., Glenzinski, D., Gnani, D., Goadhouse, S., Gollin, G. D., Grace, C., Grancagnolo, F., Group, C., Hanson, J., Hanson, S., Happacher, F., Heckmaier, E., Hedin, D., Hertzog, D. W., Hirosky, R., Hitlin, D. G., Ho, E., Huang, X., Huedem, E., Hung, P. Q., Hungerford, E. V., Ito, T., Jaskierny, W., Jedziniak, R., Johnson, R. P., Johnstone, C., Johnstone, J. A., Kahn, S. A., Kammel, P., Kang, T. I., Kashikhin, V. S., Kashikhin, V. V., Kasper, P., Kawall, D. M., Khalatian, V., Kim, M., Klebaner, A., Kocen, D., Kolomensky, Y., Kourbanis, I., Kowalkowski, J., Kozminski, J., Krempetz, K., Kumar, K. S., Kutschke, R. K., Kwarciany, R., Lackowski, T., Lamm, M., Larwill, M., Lau, K., Lee, M. J., L'Erario, A., Leveling, T., Lim, G., Lindenmeyer, C., Logashenko, V., Lontadze, T., Lopes, M., Luca, A., Lynch, K. R., Ma, T., Maffezzoli, A., Marciano, W. J., Martini, M., Masayoshi, W., Matushko, V., McAteer, M., McCrady, R., Moccoli, A., Michelotti, L., Miller, J. P., Miscetti, S., Molzon, W., Morgan, J., Mukherjee, A., Nagaitsev, S., Nagaslaev, V., Niehoff, J., Neuffer, D. V., Nicol, T., Norman, A. J., Norris, B., Odell, J., Oh, S., Oksuzian, Y., Onorato, G., Orduna, J., Orris, D., Ostojic, R., Page, T., Paschke, K. D., Pauletta, G., Peterson, T., Piacentino, G. M., Pileggi, G., Pla-Dalmau, A., Pocanic, D., Polly, C. C., Polychronakos, V., Ponzio, B., Popovic, M., Popp, J. L., Porter, F., Presbys, E., Prieto, P., Pronskikh, V., Puccinelli, F., Rabehl, R., Ramsey, J., Ray, R. E., Rechenmacher, R., Rella, S., Ristori, L., Rivera, R., Roberts, B. L., Roberts, T. J., Rubinov, P., Rusu, V. L., Saputi, A., Sarra, I., Smertzidis, Y., Shanahan, P., Simonenko, A., Steward, J., Suslov, I., Sylvester, C., Tang, Z., Tartaglia, M., Tassielli, G., Tereshchenko, V., Theilacker, J., Tompkins, J., Tschirhart, R., Van Zandbergen, G., Vannini, C., Venanzoni, G., von der Lippe, H., Wagner, R., Walder, J. P., Walton, R., Wands, S., Wang, S., Warren, G., Werkema, S., White Jr, H. B., Wielgos, R., Wood, L. S., Woodward, M., Wu, J., Xiao, M., Yamada, R., Yamin, P., Yarritu, K., Yonehara, K., Yoshikawa, C., You, Z., Yu, G., Yurkewicz, A., Zavarise, G., Zhu, R. Y.
Mu2e at Fermilab will search for charged lepton flavor violation via the coherent conversion process mu- N --> e- N with a sensitivity approximately four orders of magnitude better than the current world's best limits for this process. The experiment
Externí odkaz:
http://arxiv.org/abs/1211.7019
Publikováno v:
In Journal of Quantitative Spectroscopy and Radiative Transfer November 2018 220:1-4