Search for bottom squarks in $p\bar{p}$ collisions at $\sqrt{s} = 1.8$ TeV

We report on a search for bottom squarks produced in pbarp collisions at sqrt(s) = 1.8 TeV using the D0 detector at Fermilab. Bottom squarks are assumed to be produced in pairs and to decay to the lightest supersymmetric particle (LSP) and a b quark with branching fraction of 100%. The LSP is assume...

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Veröffentlicht in:Physical review. D 1999, Vol.60
Hauptverfasser: Abbott, B., Abolins, M., Abramov, V., Acharya, B.S., Adam, I., Adams, D.L., Adams, M., Ahn, S., Akimov, V., Alves, G.A., Amos, N., Anderson, E.W., Baarmand, M.M., Babintsev, V.V., Babukhadia, L., Baden, A., Baldin, B., Banerjee, S., Bantly, J., Barberis, E., Baringer, P., Bartlett, J.F., Belyaev, A., Beri, S.B., Bertram, I., Bezzubov, V.A., Bhat, P.C., Bhatnagar, V., Bhattacharjee, M., Biswas, N., Blazey, G., Blessing, S., Bloom, P., Boehnlein, A., Bozhko, N.I., Borcherding, F., Boswell, C., Brandt, A., Breedon, R., Briskin, G., Brock, R., Bross, A., Buchholz, D., Burtovoi, V.S., Butler, J.M., Carvalho, W., Casey, D., Casilum, Z., Castilla-Valdez, H., Chakraborty, D., Chekulaev, S.V., Chen, W. M., Choi, S. K., Chopra, S., Choudhary, B.C., Christenson, J.H., Chung, M., Claes, D., Clark, A.R., Cobau, W.G., Cochran, J., Coney, L., Cooper, W.E., Coppage, D., Cretsinger, C., Cullen-Vidal, D., Cummings, M.A.C., Cutts, D., Dahl, O.I., Davis, K., De, K., del Signore, K., Demarteau, M., Denisov, D., Denisov, S.P., Diehl, H.T., Diesburg, M., Diloreto, G., Draper, P., Ducros, Y., Dudko, L.V., Dugad, S.R., Dyshkant, A., Edmunds, D., Ellison, J., Elvira, V.D., Engelmann, R., Eno, S., Eppley, G., Ermolov, P., Eroshin, O.V., Evdokimov, V.N., Fahland, T., Fatyga, M.K., Feher, S., Fein, D., Ferbel, T., Fisk, H.E., Fisyak, Yu, Flattum, E.
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Sprache:eng
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Zusammenfassung:We report on a search for bottom squarks produced in pbarp collisions at sqrt(s) = 1.8 TeV using the D0 detector at Fermilab. Bottom squarks are assumed to be produced in pairs and to decay to the lightest supersymmetric particle (LSP) and a b quark with branching fraction of 100%. The LSP is assumed to be the lightest neutralino and stable. We set limits on the production cross section as a function of bottom squark mass and LSP mass.
ISSN:2470-0010
2470-0029
DOI:10.1103/PhysRevD.60.031101