Search For Second Generation Scalar Leptoquarks In P Anti P Collisions At S**1 2


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Search for Second-generation Scalar Leptoquarks in P Anti-p Collisions at S**1/2


Search for Second-generation Scalar Leptoquarks in P Anti-p Collisions at S**1/2

Author:

language: en

Publisher:

Release Date: 2005


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Results on a search for pair production of second generation scalar leptoquark in p{bar p} collisions at √s=1.96 TeV are reported. The data analyzed were collected by the CDF detector during the 2002-2003 Tevatron Run II and correspond to an integrated luminosity of 198 pb−1. Leptoquarks (LQ) are sought through their decay into (charged) leptons and quarks, with final state signatures represented by two muons and jets and one muon, large transverse missing energy and jets. We observe no evidence for LQ production and derive 95% C.L. upper limits on the LQ production cross sections as well as lower limits on their mass as a function of [beta], where [beta] is the branching fraction for LQ → [mu]q.

Search for Pair Production of Second Generation Scalar Leptoquarks in P Anti-p Collisions at S**1/2


Search for Pair Production of Second Generation Scalar Leptoquarks in P Anti-p Collisions at S**1/2

Author:

language: en

Publisher:

Release Date: 2006


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The authors report on a search for the pair production of second generation scalar leptoquarks (LQ2) in p{bar p} collisions at the center-of-mass energy √s = 1.96 TeV, using data corresponding to an integrated luminosity of 294 ± 19 pb−1 recorded with the D0 detector. No evidence for a leptoquark signal in the LQ2 {ovr LQ}2 → [mu]q[mu]q channel has been observed, and upper bounds on the product of cross section times branching fraction were set. This yields lower mass limits of m{sub LQ2} > 247 GeV for [beta] = [Beta](LQ{sub 2} → [mu]q) = 1 and m{sub LQ{sub 2}} > 182 GeV for [beta] = 1/2. Combining these limits with previous D0 results, the lower limits on the mass of a second generation scalar leptoquark are m{sub LQ{sub 2}} > 251 GeV and m{sub LQ{sub 2}} > 204 GeV for [beta] = 1 and [beta] = 1/2, respectively.

Trends in Experimental High Energy Physics


Trends in Experimental High Energy Physics

Author: Jacob R. Stevens

language: en

Publisher:

Release Date: 2005


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Trends In Experimental High Energy Physics