We have measured the W-boson mass M(W) using data corresponding to 2.2 fb(-1) of integrated luminosity collected in p (p) over bar collisions at root s = 1.96 TeV with the CDF II detector at the Fermilab Tevatron collider. Samples consisting of 470126 W -> e nu candidates and 624708 W -> mu nu candidates yield the measurement M(W) = 80387 +/- 12(stat.) +/- 15(syst.) = 80387 +/- 19 MeV/c(2). This is the most precise measurement of the W-boson mass to date and significantly exceeds the precision of all previous measurements combined
We present a measurement of the W-boson mass, M-W, using data corresponding to 2.2 fb(-1) of integra...
We present a measurement of the $W$-boson mass, $M_W$, using data corresponding to 2.2/fb of integra...
We present a measurement of the $W$-boson mass, $M_W$, using data corresponding to 2.2/fb of integra...
We have measured the W-boson mass M(W) using data corresponding to 2.2 fb(-1) of integrated luminosi...
We have measured the W-boson mass M W using data corresponding to 2.2fb -1 of integrated luminosity ...
We present a measurement of the W-boson mass, M-W, using data corresponding to 2.2 fb(-1) of integra...
We present a measurement of the $W$-boson mass, $M_W$, using data corresponding to 2.2/fb of integra...
We present a measurement of the $W$-boson mass, $M_W$, using data corresponding to 2.2/fb of integra...
We have measured the W-boson mass M(W) using data corresponding to 2.2 fb(-1) of integrated luminosi...
We have measured the W-boson mass M W using data corresponding to 2.2fb -1 of integrated luminosity ...
We present a measurement of the W-boson mass, M-W, using data corresponding to 2.2 fb(-1) of integra...
We present a measurement of the $W$-boson mass, $M_W$, using data corresponding to 2.2/fb of integra...
We present a measurement of the $W$-boson mass, $M_W$, using data corresponding to 2.2/fb of integra...