Charm Effects in the Bottom Quark Mass from Mesons
arXiv:hep-ph/9911461 · doi:10.1016/S0370-2693(00)00595-5
Abstract
We study the shift in the mass due to a non-zero charm quark mass. This shift affects the value of the -quark mass extracted from the system by about -20 MeV, due to an incomplete cancellation of terms that are non-analytic in the charm quark mass. The precise size of the shift depends on unknown higher order corrections, and might have a considerable uncertainty if they are large.
7 pages, revtex, 2 postscript figures
References in corpus (2)
Cited by in corpus (17)
- Electroweak Corrections in High Energy Processes using Effective Field Theory
- The bottom quark mass from the system at NNNLO
- The mass up to order
- On the Light Massive Flavor Dependence of the Large Order Asymptotic Behavior and the Ambiguity of the Pole Mass
- The static QCD potential in coordinate space with quark masses through two loops
- Charm Quark Mass from Inclusive Semileptonic B Decays
- Renormalization Group Improved Bottom Mass from Upsilon Sum Rules at NNLL Order
- The Mass of the b Quark
- Uncertainties in the MSbar bottom quark mass from relativistic sum rules
- Heavy quark potential in the static limit of QCD
- REvolver: Automated running and matching of couplings and masses in QCD
- B Meson Decays
- Measurement of Lepton Momentum Moments in the Decay bar{B} \to X \ell \barν and Determination of Heavy Quark Expansion Parameters and |V_cb|
- NLO QCD corrections to inclusive semitauonic weak decays of heavy hadrons up to
- Two loop soft function for secondary massive quarks
- Two loop mass effects in the static position space QCD-potential
- Momentum Representation of Coulomb Wave Functions and Level Shifts in Bottomonium due to Charm Effects