Determination of the Form Factors for the Decay B0 -> D*- l+ nul and of the CKM Matrix Element |Vcb|
Abstract
We present a combined measurement of the Cabibbo-Kobayashi-Maskawa matrix element |Vcb| and of the parameters rho2, R1(1), and R2(1), which fully characterize the form factors for the B0 -> D*- l+ nul decay in the framework of heavy-quark effective theory. The results, based on a selected sample of about 52,800 B0 -> D*- l+ nul decays, recorded by the BaBar detector, are rho2=1.157+-0.094+-0.027, R1(1)=1.327+-0.131+-0.043, R2(1)=0.859+-0.077+-0.021, and F(1)|Vcb|=(34.7+-0.4+-1.0)x10-3. The first error is the statistical and the second is the systematic uncertainty. Combining these measurements with the previous BaBar measurement of the form factors, which employs a different fit technique on a partial sample of the data, we improve the statistical precision of the result, rho2=1.191+-0.048+-0.028, R1(1)=1.429+-0.061+-0.044, R2(1)=0.827+-0.038+-0.022, and F(1)|Vcb| = (34.4+-0.3+-1.1)x10-3. Using lattice calculations for the axial form factor F(1), we extract |Vcb| =(37.4+-0.3+-1.2+1.2-1.4)x10-3, where the third error is due to the uncertainty in F(1). We also present a measurement of the exclusive branching fraction, B = (4.69+-0.04+-0.34)%.
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