The difference in angular distributions between top quarks and antiquarks, commonly referred to as the charge asymmetry, is measured in pp collisions at the LHC with the CMS experiment. The data sample corresponds to an integrated luminosity of 1.09 inverse femtobarns at a centre-of-mass energy of 7 TeV. Top-quark pairs are selected in the final state with an electron or muon and four or more jets. At least one jet is identified as originating from b-quark hadronization. The charge asymmetry is measured in two variables, one based on the pseudorapidities (eta) of the top quarks and the other on their rapidities (y). The results A[C,eta] = -0.017 +/- 0.032 (stat.) + [+0.025/-0.036] (syst.) and A[C,y] = -0.013 +/- 0.028 (stat.) + [+0.029/-0.0...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
AbstractThe difference in angular distributions between top quarks and antiquarks, commonly referred...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
AbstractThe difference in angular distributions between top quarks and antiquarks, commonly referred...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...
AbstractThe difference in angular distributions between top quarks and antiquarks, commonly referred...
The difference in angular distributions between top quarks and antiquarks, commonly referred to as t...