Ochoa-Ricoux, J. P.Raufer, T. M.Cavanaugh, S.Yang, T.Naples, D.Watabe, M.Plunkett, R. K.Miller, J. L.Newman, H. B.Mann, W. A.Escobar, C. O.Nichol, R. J.Thron, J. L.Peck, C. W.Meier, J. R.Tzanakos, G.Harris, D.Pawloski, G.Bock, G. J.Lucas, P.Tagg, N.Gran, R.Rahaman, A.Ling, J.Bower, C.Mufson, S.Para, A.Dytman, S. A.Koskinen, D. J.Kumaratunga, S.Oliver, W. P.Thomas, J.Bhattacharya, D.Coleman, S. J.Litchfield, R. P.Feldman, GaryTalaga, R. L.Smart, W.Kafka, T.Kreymer, A.Koizumi, G.Bernstein, R. H.Dorman, M.Hartnell, J.Pearce, G. F.Wehmann, A.Grossman, N.Sousa, A.Reichenbacher, J.Paolone, V.Armstrong, R.Chapman, J. D.Becker, B. R.Andreopoulos, C.Patzak, T.Auty, D. J.Barr, G.Barrett, W. L.Mishra, S. R.Himmel, A.Rosenfeld, C.Murgia, S.Bogert, D.Boehnlein, D. J.Webb, R. C.Zois, M.Viren, B.Thomson, M. A.Grashorn, E. W.Buckley-Geer, E.de Jong, J. K.Saoulidou, N.Hatcher, R.Choudhary, B. C.Marshall, J. S.Urheim, J.Pittam, R.Nicholls, T. C.Ma, J.James, C.Boehm, J.Mayer, N.Marshak, M. L.Holin, A.Pavlovic, Z.Petyt, D. A.Ospanov, R.Arms, K. E.Michael, D. G.Shanahan, P.Moore, C. D.Frohne, M. V.Grzelak, K.Schreiner, P.Gallagher, H. R.Harris, P. G.Lang, K.Kordosky, M.Paley, J.Strait, M.Habig, A.Rodrigues, P. A.Wojcicki, S. G.Jaffe, D. E.Diwan, M. V.Thompson, J.Ayres, D. S.Goodman, M. C.Zhang, K.Musser, J.Irwin, G. M.Vahle, P.Childress, S.Jensen, D.Morfin, J.Baller, B.Hylen, J.Tinti, G.Adamson, P.Blake, A.Culling, A. J.Nelson, J. K.Bishai, M.Gouffon, P.Speakman, B.Belias, A.Kim, J. J.West, N.Tavera, M. A.Mualem, L.Messier, M. D.Miller, W. H.Heller, K.Ishitsuka, M.Rubin, H. A.Kasahara, S. M. S.Evans, J. J.Metelko, C. J.Rebel, B.Loiacono, L.McGowan, A. M.White, C.Schneps, J.Kopp, S.Litchfield, P. J.Falk Harris, E.Zwaska, R.Rameika, R. A.Weber, A.Cherdack, D.Stamoulis, P.Sanchez, M. C.2008-12-012008Adamson, P., C. Andreopoulos, K. E. Arms, R. Armstrong, D. J. Auty, D. S. Ayres, B. Baller. 2008. Testing Lorentz invariance and CPT conservation with NuMI neutrinos in the MINOS near detector. Physical Review Letters 101: 151601.0031-9007http://nrs.harvard.edu/urn-3:HUL.InstRepos:2350219A search for a sidereal modulation in the MINOS near detector neutrino data was performed. If present, this signature could be a consequence of Lorentz and CPT violation as predicted by a class of extensions to the Standard Model. No evidence for a sidereal signal in the data set was found, implying that there is no significant change in neutrino propagation that depends on the direction of the neutrino beam in a sun-centered inertial frame. Upper limits on the magnitudes of the Lorentz and CPT violating terms in these extensions to the Standard Model lie between 0.01-1% of the maximum expected, assuming a suppression of these signatures by factor of 10^-17.en-USTesting Lorentz Invariance and CPT Conservation with NuMI Neutrinos in the MINOS Near DetectorJournal Article10.1103/PhysRevLett.101.151601