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Volumn 75, Issue 11, 2007, Pages
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Search for new physics in lepton+photon+X events with 929pb-1 of pp̄ collisions at s=1.96TeV
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q
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v
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x
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ba
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more..
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Author keywords
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Indexed keywords
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EID: 34347399593
PISSN: 15507998
EISSN: 15502368
Source Type: Journal
DOI: 10.1103/PhysRevD.75.112001
Document Type: Article
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Transverse momentum and energy are defined as pT=psin θ and ET=Esin θ, respectively. Missing ET (E →T) is defined by E →T=-∑iETin^i, where i is the calorimeter tower number for |η|<3.6 (see Ref. ), and n^i is a unit vector perpendicular to the beam axis and pointing at the ith tower. We correct E →T for jets and muons. We define the magnitude E T=|E →T|. We use the convention that "momentum" refers to pc and "mass" to mc2.
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Transverse momentum and energy are defined as pT=psin θ and ET=Esin θ, respectively. Missing ET (E →T) is defined by E →T=-∑iETin^i, where i is the calorimeter tower number for |η|<3.6 (see Ref. ), and n^i is a unit vector perpendicular to the beam axis and pointing at the ith tower. We correct E →T for jets and muons. We define the magnitude E T=|E →T|. We use the convention that "momentum" refers to pc and "mass" to mc2.
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The gravitino is very light, typically a few MeV.
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The gravitino is very light, typically a few MeV.
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The K factor KW applied to Wγ MadGraph MC samples is KW=1.36 for MW≤76GeV and KW=1.62+10-5×PTγ-0.386×e-0.1×PTγ for MW>76GeV. The K factor KZ applied to Zγ MadGraph MC samples is KZ=1.36 for MZ≤86GeV and KZ=1.46-0.000728×PTγ-0.125×e-0. 0615×PTγ for MZ>86GeV.
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The K factor KW applied to Wγ MadGraph MC samples is KW=1.36 for MW≤76GeV and KW=1.62+10-5×PTγ-0.386×e-0.1×PTγ for MW>76GeV. The K factor KZ applied to Zγ MadGraph MC samples is KZ=1.36 for MZ≤86GeV and KZ=1.46-0.000728×PTγ-0.125×e-0. 0615×PTγ for MZ>86GeV.
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We thank
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We thank A. Paramonov for the method and the code.
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Paramonov, A.1
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