학술논문

Design and Construction of the MicroBooNE Detector
Document Type
Working Paper
Author
MicroBooNE CollaborationAcciarri, R.Adams, C.An, R.Aparicio, A.Aponte, S.Asaadi, J.Auger, M.Ayoub, N.Bagby, L.Baller, B.Barger, R.Barr, G.Bass, M.Bay, F.Biery, K.Bishai, M.Blake, A.Bocean, V.Boehnlein, D.Bogert, V. D.Bolton, T.Bugel, L.Callahan, C.Camilleri, L.Caratelli, D.Carls, B.Fernandez, R. CastilloCavanna, F.Chappa, S.Chen, H.Chen, K.Chi, C. Y.Chiu, C. S.Church, E.Cianci, D.Collin, G. H.Conrad, J. M.Convery, M.Cornele, J.Cowan, P.Crespo-Anadon, J. I.Crutcher, G.Darve, C.Davis, R.Del Tutto, M.Devitt, D.Duffin, S.Dytman, S.Eberly, B.Ereditato, A.Erickson, D.Sanchez, L. EscuderoEsquivel, J.Farooq, S.Farrell, J.Featherston, D.Fleming, B. T.Foreman, W.Furmanski, A. P.Genty, V.Geynisman, M.Goeldi, D.Goff, B.Gollapinni, S.Graf, N.Gramellini, E.Green, J.Greene, A.Greenlee, H.Griffin, T.Grosso, R.Guenette, R.Hackenburg, A.Haenni, R.Hamilton, P.Healey, P.Hen, O.Henderson, E.Hewes, VHill, C.Hill, K.Himes, L.Ho, J.Horton-Smith, G.Huffman, D.Ignarra, C. M.James, C.James, E.de Vries, J. JanJaskierny, W.Jen, C. M.Jiang, L.Johnson, B.Johnson, M.Johnson, R. A.Jones, B. J. P.Joshi, J.Jostlein, H.Kaleko, D.Kalousis, L. N.Karagiorgi, G.Katori, T.Kellogg, P.Ketchum, W.Kilmer, J.King, B.Kirby, B.Kirby, M.Klein, E.Kobilarcik, T.Kreslo, I.Krull, R.Kubinski, R.Lange, G.Lanni, F.Lathrop, A.Laube, A.Lee, W. M.Li, Y.Lissauer, D.Lister, A.Littlejohn, B. R.Lockwitz, S.Lorca, D.Louis, W. C.Lukhanin, G.Luethi, M.Lundberg, B.Luo, X.Mahler, G.Majoros, I.Makowiecki, D.Marchionni, A.Mariani, C.Markley, D.Marshall, J.Caicedo, D. A. MartinezMcDonald, K. T.McKee, D.McLean, A.Mead, J.Meddage, V.Miceli, T.Mills, G. B.Miner, W.Moon, J.Mooney, M.Moore, C. D.Moss, Z.Mousseau, J.Murrells, R.Naples, D.Nienaber, P.Norris, B.Norton, N.Nowak, J.OBoyle, M.Olszanowski, T.Palamara, O.Paolone, V.Papavassiliou, V.Pate, S. F.Pavlovic, Z.Pelkey, R.Phipps, M.Pordes, S.Porzio, D.Pulliam, G.Qian, X.Raaf, J. L.Radeka, V.Rafique, A.Rameika, R. ARebel, B.Rechenmacher, R.Rescia, S.Rochester, L.von Rohr, C. RudolfRuga, A.Russell, B.Sanders, R.Sands III, W. R.Sarychev, M.Schmitz, D. W.Schukraft, A.Scott, R.Seligman, W.Shaevitz, M. H.Shoun, M.Sinclair, J.Sippach, W.Smidt, T.Smith, A.Snider, E. L.Soderberg, M.Solano-Gonzalez, M.Soldner-Rembold, S.Soleti, S. R.Sondericker, J.Spentzouris, P.Spitz, J.John, J. St.Strauss, T.Sutton, K.Szelc, A. M.Taheri, K.Tagg, N.Tatum, K.Teng, J.Terao, K.Thomson, M.Thorn, C.Tillman, J.Toups, M.Tsai, Y. T.Tufanli, S.Usher, T.Utes, M.Van de Water, R. G.Vendetta, C.Vergani, S.Voirin, E.Voirin, J.Viren, B.Watkins, P.Weber, M.Wester, T.Weston, J.Wickremasinghe, D. A.Wolbers, S.Wongjirad, T.Woodruff, K.Wu, K. C.Yang, T.Yu, B.Zeller, G. P.Zennamo, J.Zhang, C.Zuckerbrot, M.
Source
Subject
Physics - Instrumentation and Detectors
High Energy Physics - Experiment
Language
Abstract
This paper describes the design and construction of the MicroBooNE liquid argon time projection chamber and associated systems. MicroBooNE is the first phase of the Short Baseline Neutrino program, located at Fermilab, and will utilize the capabilities of liquid argon detectors to examine a rich assortment of physics topics. In this document details of design specifications, assembly procedures, and acceptance tests are reported.