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Report of the Higgs Working Group of the Tevatron Run 2 SUSY/Higgs Workshop

This report presents the theoretical analysis relevant for Higgs physics at the upgraded Tevatron collider and documents the Higgs Working Group simulations to estimate the discovery reach in Run 2 for the Standard Model and MSSM Higgs bosons. Based on a simple detector simulation, we have determine...

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Autores principales: Carena, Marcela, Conway, John S., Haber, Howard E., Hobbs, John D., Albrow, Michael G., Baer, Howard, Barberis, Emanuela, Barrientos Bendezu, A.A., Bhat, Pushpalatha, Belyaev, Alexander, Balazs, Csaba, Bokhari, Wasiq, Borzumati, Francesca, Chakraborty, Dhiman, Coarasa Perez, Jose Antonio, Culbertson, Ray, Demina, Regina, Diaz-Cruz, J.Lorenzo, Dicus, Duane, Dobrescu, Bogdan A., Dorigo, Tommaso, Dreiner, Herbert K., Ellis, R.Keith, Frisch, Henry J., Garcia, David, Gilmartin, Russell, Gonzalez-Garcia, Maria Concepion, Guasch, Jaume, Goussiou, Anna, Han, Tao, Harris, Brian W., He, Hong-Jian, Hedin, David, Heinemeyer, Sven, Heintz, Ulrich, Hollik, Wolfgang, Jesik, Richard, Kilminster, Ben, Kniehl, Bernd A., Kneur, Jean-Loic, Kuhlmann, Stephen, Kruse, Mark, Lami, Stefano, Landsberg, Greg L., Lietti, Sergio M., Litvintsev, Dmitri, Loomis, Charles, Lucotte, Arnaud, Matchev, Konstantin T., Mrenna, Stephen, Murat, Pasha, Novaes, Sergio F., Polonsky, Nir, Prosper, Harrison, Pukhov, Alexander, Ribon, Alberto, Roco, Maria, Rostovtsev, Andrey, Schmitt, Michael, Sirotenko, Vladimir, Snihur, Robert, Sola, Joan, Spira, Michael, Stelzer, Tim, Sullivan, Zack, Tait, Timothy M.P., Tata, Xerxes, Turcot, Andre S., Valls, Juan, Veseli, Sinisa, Vilar, Rocio, Watts, Gordon, Wagner, Carlos E.M., Weiglein, Georg, Willenbrock, Scott, Womersley, John, Yao, Weiming, Yuan, Chien-Peng, Zeppenfeld, Dieter, Zhang, Ren-Jie
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:http://cds.cern.ch/record/474080
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author Carena, Marcela
Conway, John S.
Haber, Howard E.
Hobbs, John D.
Albrow, Michael G.
Baer, Howard
Barberis, Emanuela
Barrientos Bendezu, A.A.
Bhat, Pushpalatha
Belyaev, Alexander
Balazs, Csaba
Bokhari, Wasiq
Borzumati, Francesca
Chakraborty, Dhiman
Coarasa Perez, Jose Antonio
Culbertson, Ray
Demina, Regina
Diaz-Cruz, J.Lorenzo
Dicus, Duane
Dobrescu, Bogdan A.
Dorigo, Tommaso
Dreiner, Herbert K.
Ellis, R.Keith
Frisch, Henry J.
Garcia, David
Gilmartin, Russell
Gonzalez-Garcia, Maria Concepion
Guasch, Jaume
Goussiou, Anna
Han, Tao
Harris, Brian W.
He, Hong-Jian
Hedin, David
Heinemeyer, Sven
Heintz, Ulrich
Hollik, Wolfgang
Jesik, Richard
Kilminster, Ben
Kniehl, Bernd A.
Kneur, Jean-Loic
Kuhlmann, Stephen
Kruse, Mark
Lami, Stefano
Landsberg, Greg L.
Lietti, Sergio M.
Litvintsev, Dmitri
Loomis, Charles
Lucotte, Arnaud
Matchev, Konstantin T.
Mrenna, Stephen
Murat, Pasha
Novaes, Sergio F.
Polonsky, Nir
Prosper, Harrison
Pukhov, Alexander
Ribon, Alberto
Roco, Maria
Rostovtsev, Andrey
Schmitt, Michael
Sirotenko, Vladimir
Snihur, Robert
Sola, Joan
Spira, Michael
Stelzer, Tim
Sullivan, Zack
Tait, Timothy M.P.
Tata, Xerxes
Turcot, Andre S.
Valls, Juan
Veseli, Sinisa
Vilar, Rocio
Watts, Gordon
Wagner, Carlos E.M.
Weiglein, Georg
Willenbrock, Scott
Womersley, John
Yao, Weiming
Yuan, Chien-Peng
Zeppenfeld, Dieter
Zhang, Ren-Jie
author_facet Carena, Marcela
Conway, John S.
Haber, Howard E.
Hobbs, John D.
Albrow, Michael G.
Baer, Howard
Barberis, Emanuela
Barrientos Bendezu, A.A.
Bhat, Pushpalatha
Belyaev, Alexander
Balazs, Csaba
Bokhari, Wasiq
Borzumati, Francesca
Chakraborty, Dhiman
Coarasa Perez, Jose Antonio
Culbertson, Ray
Demina, Regina
Diaz-Cruz, J.Lorenzo
Dicus, Duane
Dobrescu, Bogdan A.
Dorigo, Tommaso
Dreiner, Herbert K.
Ellis, R.Keith
Frisch, Henry J.
Garcia, David
Gilmartin, Russell
Gonzalez-Garcia, Maria Concepion
Guasch, Jaume
Goussiou, Anna
Han, Tao
Harris, Brian W.
He, Hong-Jian
Hedin, David
Heinemeyer, Sven
Heintz, Ulrich
Hollik, Wolfgang
Jesik, Richard
Kilminster, Ben
Kniehl, Bernd A.
Kneur, Jean-Loic
Kuhlmann, Stephen
Kruse, Mark
Lami, Stefano
Landsberg, Greg L.
Lietti, Sergio M.
Litvintsev, Dmitri
Loomis, Charles
Lucotte, Arnaud
Matchev, Konstantin T.
Mrenna, Stephen
Murat, Pasha
Novaes, Sergio F.
Polonsky, Nir
Prosper, Harrison
Pukhov, Alexander
Ribon, Alberto
Roco, Maria
Rostovtsev, Andrey
Schmitt, Michael
Sirotenko, Vladimir
Snihur, Robert
Sola, Joan
Spira, Michael
Stelzer, Tim
Sullivan, Zack
Tait, Timothy M.P.
Tata, Xerxes
Turcot, Andre S.
Valls, Juan
Veseli, Sinisa
Vilar, Rocio
Watts, Gordon
Wagner, Carlos E.M.
Weiglein, Georg
Willenbrock, Scott
Womersley, John
Yao, Weiming
Yuan, Chien-Peng
Zeppenfeld, Dieter
Zhang, Ren-Jie
author_sort Carena, Marcela
collection CERN
description This report presents the theoretical analysis relevant for Higgs physics at the upgraded Tevatron collider and documents the Higgs Working Group simulations to estimate the discovery reach in Run 2 for the Standard Model and MSSM Higgs bosons. Based on a simple detector simulation, we have determined the integrated luminosity necessary to discover the SM Higgs in the mass range 100-190 GeV. The first phase of the Run 2 Higgs search, with a total integrated luminosity of 2 fb-1 per detector, will provide a 95% CL exclusion sensitivity comparable to that expected at the end of the LEP2 run. With 10 fb-1 per detector, this exclusion will extend up to Higgs masses of 180 GeV, and a tantalizing 3 sigma effect will be visible if the Higgs mass lies below 125 GeV. With 25 fb-1 of integrated luminosity per detector, evidence for SM Higgs production at the 3 sigma level is possible for Higgs masses up to 180 GeV. However, the discovery reach is much less impressive for achieving a 5 sigma Higgs boson signal. Even with 30 fb-1 per detector, only Higgs bosons with masses up to about 130 GeV can be detected with 5 sigma significance. These results can also be re-interpreted in the MSSM framework and yield the required luminosities to discover at least one Higgs boson of the MSSM Higgs sector. With 5-10 fb-1 of data per detector, it will be possible to exclude at 95% CL nearly the entire MSSM Higgs parameter space, whereas 20-30 fb-1 is required to obtain a 5 sigma Higgs discovery over a significant portion of the parameter space. Moreover, in one interesting region of the MSSM parameter space (at large tan(beta)), the associated production of a Higgs boson and a b b-bar pair is significantly enhanced and provides potential for discovering a non-SM-like Higgs boson in Run 2.
id cern-474080
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2000
record_format invenio
spelling cern-4740802020-07-14T02:06:13Zhttp://cds.cern.ch/record/474080engCarena, MarcelaConway, John S.Haber, Howard E.Hobbs, John D.Albrow, Michael G.Baer, HowardBarberis, EmanuelaBarrientos Bendezu, A.A.Bhat, PushpalathaBelyaev, AlexanderBalazs, CsabaBokhari, WasiqBorzumati, FrancescaChakraborty, DhimanCoarasa Perez, Jose AntonioCulbertson, RayDemina, ReginaDiaz-Cruz, J.LorenzoDicus, DuaneDobrescu, Bogdan A.Dorigo, TommasoDreiner, Herbert K.Ellis, R.KeithFrisch, Henry J.Garcia, DavidGilmartin, RussellGonzalez-Garcia, Maria ConcepionGuasch, JaumeGoussiou, AnnaHan, TaoHarris, Brian W.He, Hong-JianHedin, DavidHeinemeyer, SvenHeintz, UlrichHollik, WolfgangJesik, RichardKilminster, BenKniehl, Bernd A.Kneur, Jean-LoicKuhlmann, StephenKruse, MarkLami, StefanoLandsberg, Greg L.Lietti, Sergio M.Litvintsev, DmitriLoomis, CharlesLucotte, ArnaudMatchev, Konstantin T.Mrenna, StephenMurat, PashaNovaes, Sergio F.Polonsky, NirProsper, HarrisonPukhov, AlexanderRibon, AlbertoRoco, MariaRostovtsev, AndreySchmitt, MichaelSirotenko, VladimirSnihur, RobertSola, JoanSpira, MichaelStelzer, TimSullivan, ZackTait, Timothy M.P.Tata, XerxesTurcot, Andre S.Valls, JuanVeseli, SinisaVilar, RocioWatts, GordonWagner, Carlos E.M.Weiglein, GeorgWillenbrock, ScottWomersley, JohnYao, WeimingYuan, Chien-PengZeppenfeld, DieterZhang, Ren-JieReport of the Higgs Working Group of the Tevatron Run 2 SUSY/Higgs WorkshopParticle Physics - PhenomenologyThis report presents the theoretical analysis relevant for Higgs physics at the upgraded Tevatron collider and documents the Higgs Working Group simulations to estimate the discovery reach in Run 2 for the Standard Model and MSSM Higgs bosons. Based on a simple detector simulation, we have determined the integrated luminosity necessary to discover the SM Higgs in the mass range 100-190 GeV. The first phase of the Run 2 Higgs search, with a total integrated luminosity of 2 fb-1 per detector, will provide a 95% CL exclusion sensitivity comparable to that expected at the end of the LEP2 run. With 10 fb-1 per detector, this exclusion will extend up to Higgs masses of 180 GeV, and a tantalizing 3 sigma effect will be visible if the Higgs mass lies below 125 GeV. With 25 fb-1 of integrated luminosity per detector, evidence for SM Higgs production at the 3 sigma level is possible for Higgs masses up to 180 GeV. However, the discovery reach is much less impressive for achieving a 5 sigma Higgs boson signal. Even with 30 fb-1 per detector, only Higgs bosons with masses up to about 130 GeV can be detected with 5 sigma significance. These results can also be re-interpreted in the MSSM framework and yield the required luminosities to discover at least one Higgs boson of the MSSM Higgs sector. With 5-10 fb-1 of data per detector, it will be possible to exclude at 95% CL nearly the entire MSSM Higgs parameter space, whereas 20-30 fb-1 is required to obtain a 5 sigma Higgs discovery over a significant portion of the parameter space. Moreover, in one interesting region of the MSSM parameter space (at large tan(beta)), the associated production of a Higgs boson and a b b-bar pair is significantly enhanced and provides potential for discovering a non-SM-like Higgs boson in Run 2.This report presents the theoretical analysis relevant for Higgs physics at the upgraded Tevatron collider and documents the Higgs Working Group simulations to estimate the discovery reach in Run 2 for the Standard Model and MSSM Higgs bosons. Based on a simple detector simulation, we have determined the integrated luminosity necessary to discover the SM Higgs in the mass range 100-190 GeV. The first phase of the Run 2 Higgs search, with a total integrated luminosity of 2 fb-1 per detector, will provide a 95% CL exclusion sensitivity comparable to that expected at the end of the LEP2 run. With 10 fb-1 per detector, this exclusion will extend up to Higgs masses of 180 GeV, and a tantalizing 3 sigma effect will be visible if the Higgs mass lies below 125 GeV. With 25 fb-1 of integrated luminosity per detector, evidence for SM Higgs production at the 3 sigma level is possible for Higgs masses up to 180 GeV. However, the discovery reach is much less impressive for achieving a 5 sigma Higgs boson signal. Even with 30 fb-1 per detector, only Higgs bosons with masses up to about 130 GeV can be detected with 5 sigma significance. These results can also be re-interpreted in the MSSM framework and yield the required luminosities to discover at least one Higgs boson of the MSSM Higgs sector. With 5-10 fb-1 of data per detector, it will be possible to exclude at 95% CL nearly the entire MSSM Higgs parameter space, whereas 20-30 fb-1 is required to obtain a 5 sigma Higgs discovery over a significant portion of the parameter space. Moreover, in one interesting region of the MSSM parameter space (at large tan(beta)), the associated production of a Higgs boson and a b b-bar pair is significantly enhanced and provides potential for discovering a non-SM-like Higgs boson in Run 2.hep-ph/0010338FERMILAB-CONF-00-279-TSCIPP-00-37FERMILAB-CONF-2000-279-TSCIPP-2000-37oai:cds.cern.ch:4740802000-10-31
spellingShingle Particle Physics - Phenomenology
Carena, Marcela
Conway, John S.
Haber, Howard E.
Hobbs, John D.
Albrow, Michael G.
Baer, Howard
Barberis, Emanuela
Barrientos Bendezu, A.A.
Bhat, Pushpalatha
Belyaev, Alexander
Balazs, Csaba
Bokhari, Wasiq
Borzumati, Francesca
Chakraborty, Dhiman
Coarasa Perez, Jose Antonio
Culbertson, Ray
Demina, Regina
Diaz-Cruz, J.Lorenzo
Dicus, Duane
Dobrescu, Bogdan A.
Dorigo, Tommaso
Dreiner, Herbert K.
Ellis, R.Keith
Frisch, Henry J.
Garcia, David
Gilmartin, Russell
Gonzalez-Garcia, Maria Concepion
Guasch, Jaume
Goussiou, Anna
Han, Tao
Harris, Brian W.
He, Hong-Jian
Hedin, David
Heinemeyer, Sven
Heintz, Ulrich
Hollik, Wolfgang
Jesik, Richard
Kilminster, Ben
Kniehl, Bernd A.
Kneur, Jean-Loic
Kuhlmann, Stephen
Kruse, Mark
Lami, Stefano
Landsberg, Greg L.
Lietti, Sergio M.
Litvintsev, Dmitri
Loomis, Charles
Lucotte, Arnaud
Matchev, Konstantin T.
Mrenna, Stephen
Murat, Pasha
Novaes, Sergio F.
Polonsky, Nir
Prosper, Harrison
Pukhov, Alexander
Ribon, Alberto
Roco, Maria
Rostovtsev, Andrey
Schmitt, Michael
Sirotenko, Vladimir
Snihur, Robert
Sola, Joan
Spira, Michael
Stelzer, Tim
Sullivan, Zack
Tait, Timothy M.P.
Tata, Xerxes
Turcot, Andre S.
Valls, Juan
Veseli, Sinisa
Vilar, Rocio
Watts, Gordon
Wagner, Carlos E.M.
Weiglein, Georg
Willenbrock, Scott
Womersley, John
Yao, Weiming
Yuan, Chien-Peng
Zeppenfeld, Dieter
Zhang, Ren-Jie
Report of the Higgs Working Group of the Tevatron Run 2 SUSY/Higgs Workshop
title Report of the Higgs Working Group of the Tevatron Run 2 SUSY/Higgs Workshop
title_full Report of the Higgs Working Group of the Tevatron Run 2 SUSY/Higgs Workshop
title_fullStr Report of the Higgs Working Group of the Tevatron Run 2 SUSY/Higgs Workshop
title_full_unstemmed Report of the Higgs Working Group of the Tevatron Run 2 SUSY/Higgs Workshop
title_short Report of the Higgs Working Group of the Tevatron Run 2 SUSY/Higgs Workshop
title_sort report of the higgs working group of the tevatron run 2 susy/higgs workshop
topic Particle Physics - Phenomenology
url http://cds.cern.ch/record/474080
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