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Report of the SUGRA Working Group for Run II of the Tevatron

We present an analysis of the discovery reach for supersymmetric particles at the upgraded Tevatron collider, assuming that SUSY breaking results in universal soft breaking parameters at the grand unification scale, and that the lightest supersymmetric particle is stable and neutral. We first presen...

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Autores principales: Barger, V., Kamon, T., Flattum, E., Falk, T., Abel, S., Accomando, E., Anderson, G., Arnowitt, R., Azzi, P., Baer, H., Bagger, J., Beenakker, W., Belyaev, A., Berger, E., Berger, M., Brhlik, M., Blazek, T., Blessing, S., Bokhari, W., Bruner, N., Carena, M., Chakraborty, D., Chang, D., Chankowski, P., Chen, C.H., Cheng, H.C., Chertok, M., Cho, G.C., Claes, D., Demina, R., Done, J., Duflot, L., Dutta, Bhaskar, Eboli, O.J.P., Eno, S., Feng, J., Ganis, G., Gold, M., Gregores, E.M., Hagiwara, K., Han, T., Harris, B., Hikasa, K., Holck, C., Kao, C., Kato, Y., Klasen, M., Keung, W.Y., Kramer, M., Lammel, S., Li, T.J., Lykken, J.D., Magro, M., Mani, S., Matchev, K.T., Mangano, M., Mercadante, P., Mrenna, S., Nachtman, J., Nath, P., Nojiri, M.M., Nomerotski, A., Norman, D., Oishi, R., Ono, K., Paige, F., Paterno, M., Parke, S., Pierce, D., Pilaftsis, A., Plehn, T., Pompos, A., Polonksy, N., Pokorski, S., Quintana, P., Roco, M., Saltzberg, D., Savoy-Navarro, A., Seiya, Y., Smith, C., Spira, M., Spiropulu, M., Sullivan, Z., Szalapski, R., Tannenbaum, B., Tait, T., Wackeroth, D., Wang, Y., White, J., Williams, H.H., Worcester, M., Worm, S., Zhang, R.J., Zielinski, M.
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:http://cds.cern.ch/record/431188
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author Barger, V.
Kamon, T.
Flattum, E.
Falk, T.
Abel, S.
Accomando, E.
Anderson, G.
Arnowitt, R.
Azzi, P.
Baer, H.
Bagger, J.
Beenakker, W.
Belyaev, A.
Berger, E.
Berger, M.
Brhlik, M.
Blazek, T.
Blessing, S.
Bokhari, W.
Bruner, N.
Carena, M.
Chakraborty, D.
Chang, D.
Chankowski, P.
Chen, C.H.
Cheng, H.C.
Chertok, M.
Cho, G.C.
Claes, D.
Demina, R.
Done, J.
Duflot, L.
Dutta, Bhaskar
Eboli, O.J.P.
Eno, S.
Feng, J.
Ganis, G.
Gold, M.
Gregores, E.M.
Hagiwara, K.
Han, T.
Harris, B.
Hikasa, K.
Holck, C.
Kao, C.
Kato, Y.
Klasen, M.
Keung, W.Y.
Kramer, M.
Lammel, S.
Li, T.J.
Lykken, J.D.
Magro, M.
Mani, S.
Matchev, K.T.
Mangano, M.
Mercadante, P.
Mrenna, S.
Nachtman, J.
Nath, P.
Nojiri, M.M.
Nomerotski, A.
Norman, D.
Oishi, R.
Ono, K.
Paige, F.
Paterno, M.
Parke, S.
Pierce, D.
Pilaftsis, A.
Plehn, T.
Pompos, A.
Polonksy, N.
Pokorski, S.
Quintana, P.
Roco, M.
Saltzberg, D.
Savoy-Navarro, A.
Seiya, Y.
Smith, C.
Spira, M.
Spiropulu, M.
Sullivan, Z.
Szalapski, R.
Tannenbaum, B.
Tait, T.
Wackeroth, D.
Wang, Y.
White, J.
Williams, H.H.
Worcester, M.
Worm, S.
Zhang, R.J.
Zielinski, M.
author_facet Barger, V.
Kamon, T.
Flattum, E.
Falk, T.
Abel, S.
Accomando, E.
Anderson, G.
Arnowitt, R.
Azzi, P.
Baer, H.
Bagger, J.
Beenakker, W.
Belyaev, A.
Berger, E.
Berger, M.
Brhlik, M.
Blazek, T.
Blessing, S.
Bokhari, W.
Bruner, N.
Carena, M.
Chakraborty, D.
Chang, D.
Chankowski, P.
Chen, C.H.
Cheng, H.C.
Chertok, M.
Cho, G.C.
Claes, D.
Demina, R.
Done, J.
Duflot, L.
Dutta, Bhaskar
Eboli, O.J.P.
Eno, S.
Feng, J.
Ganis, G.
Gold, M.
Gregores, E.M.
Hagiwara, K.
Han, T.
Harris, B.
Hikasa, K.
Holck, C.
Kao, C.
Kato, Y.
Klasen, M.
Keung, W.Y.
Kramer, M.
Lammel, S.
Li, T.J.
Lykken, J.D.
Magro, M.
Mani, S.
Matchev, K.T.
Mangano, M.
Mercadante, P.
Mrenna, S.
Nachtman, J.
Nath, P.
Nojiri, M.M.
Nomerotski, A.
Norman, D.
Oishi, R.
Ono, K.
Paige, F.
Paterno, M.
Parke, S.
Pierce, D.
Pilaftsis, A.
Plehn, T.
Pompos, A.
Polonksy, N.
Pokorski, S.
Quintana, P.
Roco, M.
Saltzberg, D.
Savoy-Navarro, A.
Seiya, Y.
Smith, C.
Spira, M.
Spiropulu, M.
Sullivan, Z.
Szalapski, R.
Tannenbaum, B.
Tait, T.
Wackeroth, D.
Wang, Y.
White, J.
Williams, H.H.
Worcester, M.
Worm, S.
Zhang, R.J.
Zielinski, M.
author_sort Barger, V.
collection CERN
description We present an analysis of the discovery reach for supersymmetric particles at the upgraded Tevatron collider, assuming that SUSY breaking results in universal soft breaking parameters at the grand unification scale, and that the lightest supersymmetric particle is stable and neutral. We first present a review of the literature, including the issues of unification, renormalization group evolution of the supersymmetry breaking parameters and the effect of radiative corrections on the effective low energy couplings and masses of the theory. We consider the experimental bounds coming from direct searches and those arising indirectly from precision data, cosmology and the requirement of vacuum stability. The issues of flavor and CP-violation are also addressed. The main subject of this study is to update sparticle production cross sections, make improved estimates of backgrounds, delineate the discovery reach in the supergravity framework, and examine how this might vary when assumptions about universality of soft breaking parameters are relaxed. With 30 fb$^{-1}$ luminosity and one detector, charginos and neutralinos, as well as third generation squarks, can be seen if their masses are not larger than 200-250 GeV, while first and second generation squarks and gluinos can be discovered if their masses do not significantly exceed 400 GeV. We conclude that there are important and exciting physics opportunities at the Tevatron collider, which will be significantly enhanced by continued Tevatron operation beyond the first phase of Run II.
id cern-431188
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2000
record_format invenio
spelling cern-4311882023-06-13T03:15:02Zhttp://cds.cern.ch/record/431188engBarger, V.Kamon, T.Flattum, E.Falk, T.Abel, S.Accomando, E.Anderson, G.Arnowitt, R.Azzi, P.Baer, H.Bagger, J.Beenakker, W.Belyaev, A.Berger, E.Berger, M.Brhlik, M.Blazek, T.Blessing, S.Bokhari, W.Bruner, N.Carena, M.Chakraborty, D.Chang, D.Chankowski, P.Chen, C.H.Cheng, H.C.Chertok, M.Cho, G.C.Claes, D.Demina, R.Done, J.Duflot, L.Dutta, BhaskarEboli, O.J.P.Eno, S.Feng, J.Ganis, G.Gold, M.Gregores, E.M.Hagiwara, K.Han, T.Harris, B.Hikasa, K.Holck, C.Kao, C.Kato, Y.Klasen, M.Keung, W.Y.Kramer, M.Lammel, S.Li, T.J.Lykken, J.D.Magro, M.Mani, S.Matchev, K.T.Mangano, M.Mercadante, P.Mrenna, S.Nachtman, J.Nath, P.Nojiri, M.M.Nomerotski, A.Norman, D.Oishi, R.Ono, K.Paige, F.Paterno, M.Parke, S.Pierce, D.Pilaftsis, A.Plehn, T.Pompos, A.Polonksy, N.Pokorski, S.Quintana, P.Roco, M.Saltzberg, D.Savoy-Navarro, A.Seiya, Y.Smith, C.Spira, M.Spiropulu, M.Sullivan, Z.Szalapski, R.Tannenbaum, B.Tait, T.Wackeroth, D.Wang, Y.White, J.Williams, H.H.Worcester, M.Worm, S.Zhang, R.J.Zielinski, M.Report of the SUGRA Working Group for Run II of the TevatronParticle Physics - PhenomenologyWe present an analysis of the discovery reach for supersymmetric particles at the upgraded Tevatron collider, assuming that SUSY breaking results in universal soft breaking parameters at the grand unification scale, and that the lightest supersymmetric particle is stable and neutral. We first present a review of the literature, including the issues of unification, renormalization group evolution of the supersymmetry breaking parameters and the effect of radiative corrections on the effective low energy couplings and masses of the theory. We consider the experimental bounds coming from direct searches and those arising indirectly from precision data, cosmology and the requirement of vacuum stability. The issues of flavor and CP-violation are also addressed. The main subject of this study is to update sparticle production cross sections, make improved estimates of backgrounds, delineate the discovery reach in the supergravity framework, and examine how this might vary when assumptions about universality of soft breaking parameters are relaxed. With 30 fb$^{-1}$ luminosity and one detector, charginos and neutralinos, as well as third generation squarks, can be seen if their masses are not larger than 200-250 GeV, while first and second generation squarks and gluinos can be discovered if their masses do not significantly exceed 400 GeV. We conclude that there are important and exciting physics opportunities at the Tevatron collider, which will be significantly enhanced by continued Tevatron operation beyond the first phase of Run II.We present an analysis of the discovery reach for supersymmetric particles at the upgraded Tevatron collider, assuming that SUSY breaking results in universal soft breaking parameters at the grand unification scale, and that the lightest supersymmetric particle is stable and neutral. We first present a review of the literature, including the issues of unification, renormalization group evolution of the supersymmetry breaking parameters and the effect of radiative corrections on the effective low energy couplings and masses of the theory. We consider the experimental bounds coming from direct searches and those arising indirectly from precision data, cosmology and the requirement of vacuum stability. The issues of flavor and CP-violation are also addressed. The main subject of this study is to update sparticle production cross sections, make improved estimates of backgrounds, delineate the discovery reach in the supergravity framework, and examine how this might vary when assumptions about universality of soft breaking parameters are relaxed. With 30 fb$^{-1}$ luminosity and one detector, charginos and neutralinos, as well as third generation squarks, can be seen if their masses are not larger than 200-250 GeV, while first and second generation squarks and gluinos can be discovered if their masses do not significantly exceed 400 GeV. We conclude that there are important and exciting physics opportunities at the Tevatron collider, which will be significantly enhanced by continued Tevatron operation beyond the first phase of Run II.hep-ph/0003154FERMILAB-PUB-00-386-Toai:cds.cern.ch:4311882000-03-16
spellingShingle Particle Physics - Phenomenology
Barger, V.
Kamon, T.
Flattum, E.
Falk, T.
Abel, S.
Accomando, E.
Anderson, G.
Arnowitt, R.
Azzi, P.
Baer, H.
Bagger, J.
Beenakker, W.
Belyaev, A.
Berger, E.
Berger, M.
Brhlik, M.
Blazek, T.
Blessing, S.
Bokhari, W.
Bruner, N.
Carena, M.
Chakraborty, D.
Chang, D.
Chankowski, P.
Chen, C.H.
Cheng, H.C.
Chertok, M.
Cho, G.C.
Claes, D.
Demina, R.
Done, J.
Duflot, L.
Dutta, Bhaskar
Eboli, O.J.P.
Eno, S.
Feng, J.
Ganis, G.
Gold, M.
Gregores, E.M.
Hagiwara, K.
Han, T.
Harris, B.
Hikasa, K.
Holck, C.
Kao, C.
Kato, Y.
Klasen, M.
Keung, W.Y.
Kramer, M.
Lammel, S.
Li, T.J.
Lykken, J.D.
Magro, M.
Mani, S.
Matchev, K.T.
Mangano, M.
Mercadante, P.
Mrenna, S.
Nachtman, J.
Nath, P.
Nojiri, M.M.
Nomerotski, A.
Norman, D.
Oishi, R.
Ono, K.
Paige, F.
Paterno, M.
Parke, S.
Pierce, D.
Pilaftsis, A.
Plehn, T.
Pompos, A.
Polonksy, N.
Pokorski, S.
Quintana, P.
Roco, M.
Saltzberg, D.
Savoy-Navarro, A.
Seiya, Y.
Smith, C.
Spira, M.
Spiropulu, M.
Sullivan, Z.
Szalapski, R.
Tannenbaum, B.
Tait, T.
Wackeroth, D.
Wang, Y.
White, J.
Williams, H.H.
Worcester, M.
Worm, S.
Zhang, R.J.
Zielinski, M.
Report of the SUGRA Working Group for Run II of the Tevatron
title Report of the SUGRA Working Group for Run II of the Tevatron
title_full Report of the SUGRA Working Group for Run II of the Tevatron
title_fullStr Report of the SUGRA Working Group for Run II of the Tevatron
title_full_unstemmed Report of the SUGRA Working Group for Run II of the Tevatron
title_short Report of the SUGRA Working Group for Run II of the Tevatron
title_sort report of the sugra working group for run ii of the tevatron
topic Particle Physics - Phenomenology
url http://cds.cern.ch/record/431188
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