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Showing papers by "Elizabeth Jenkins published in 1992"


Journal ArticleDOI
TL;DR: Chiral corrections to baryon mass relations are computed using a chiral lagrangian which includes the spin-3 2 baryons decuplet as mentioned in this paper, which is consistent with chira; perturbation theory up to order m s 2.

129 citations


Journal ArticleDOI
TL;DR: In this article, the decay constants for D and Ds mesons, denoted fD and fDS respectively, are equal in the SU(3)V limit, as are the hadronic amplitudes for B S − B S and B 0 − B 0 mixing.

85 citations


Journal ArticleDOI
TL;DR: In this article, the decay constants for the meson and anti-meson fields in the heavy quark effective theory were derived in the $SU(3)_V$ limit.
Abstract: The decay constants for the $D$ and $D_S$ mesons, denoted $f_D$ and $f_{D_S}$ respectively, are equal in the $SU(3)_V$ limit, as are the hadronic amplitudes for $B_S-\bar B_S$ and $B^0-\bar B^0$ mixing The leading $SU(3)_V$ violating contribution to $\left( f_{D_S} / f_D \right)$ and to the ratio of hadronic matrix elements relevant for $B_S-\bar B_S$ and $B^0-\bar B^0$ mixing amplitudes are calculated in chiral perturbation theory We discuss the formalism needed to include both meson and anti-meson fields in the heavy quark effective theory

80 citations


Journal ArticleDOI
TL;DR: In this article, the implications of chiral symmetry and heavy quark symmetry for the radiative decays are discussed, with particular attention paid to SU(3) violating contributions of order $m_q 1/2}.
Abstract: The implications of chiral $SU(3)_L \times SU(3)_R$ symmetry and heavy quark symmetry for the radiative decays $D^{*0}\to D^0\gamma$, $D^{*+}\to D^+\gamma$, and $D_s^*\to D_s\gamma$ are discussed. Particular attention is paid to $SU(3)$ violating contributions of order $m_q^{1/2}$. Experimental data on these radiative decays provide constraints on the $D^* D\pi$ coupling.

67 citations


Journal ArticleDOI
TL;DR: In this paper, the success of the Lee-Sugawara relation for S-wave amplitudes is understood in the context of chiral perturbation theory since the chiral logarithmic correction to this relation is small.

59 citations


Journal ArticleDOI
TL;DR: In this paper, it was shown that the soliton and heavy meson are bound in an attractive harmonic oscillator potential in the large $N_c$ limit, and that the symmetry breaking correction at zero recoil is only $1\%.
Abstract: In the large $N_c$ limit, the $\Lambda_b$ and $\Lambda_c$ can be treated as bound states of chiral solitons and mesons containing a heavy quark. We show that the soliton and heavy meson are bound in an attractive harmonic oscillator potential. The Isgur-Wise function for $\Lambda_b\rightarrow\Lambda_c\, e^-\,\bar u_e$ decay is computed in the large $N_c$ limit. Corrections to the form factor which depend on $m_N/ m_Q$ can be summed exactly ($m_N$ and $m_Q$ are the nucleon and heavy quark masses). We find that this symmetry breaking correction at zero recoil is only $1\%$.

59 citations


Journal ArticleDOI
TL;DR: Semileptonic decay of the $B_c$ meson is studied in the heavy quark limit as discussed by the authors, where six possible form factors for semileptic decay are determined by two invariant functions, and only one of these functions contributes at zero recoil, where it is calculable to lowest order in an operator product expansion.
Abstract: Semileptonic decay of the $B_c$ meson is studied in the heavy quark limit. The six possible form factors for $B_c \rightarrow B_s (B^0),B_s^* (B^{*0})$ semileptonic decay are determined by two invariant functions. Only one of these functions contributes at zero recoil, where it is calculable to lowest order in an operator product expansion in terms of the meson decay constant $f_B$ and the $B_c$ wavefunction. A similar result is found for $B_c \rightarrow D^0,D^{*0}$ and for $B_c\rightarrow\eta_c,J/\psi$ semileptonic decay for a restricted kinematic region. Semileptonic $B_c$ decay provides a means for determining the KM mixing angle $|V_{ub}|$.

56 citations


Journal ArticleDOI
TL;DR: In the SU(3)v limit, the Isgur-Wise function is independent of light quark flavor as mentioned in this paper, and the correction is velocity dependent, but vanishes at zero recoil as required by heavy quark symmetry.

34 citations


Journal ArticleDOI
TL;DR: In this paper, the m 3 2 s contribution is computed in chiral perturbation theory using a baryon chiral lagrangian that includes both octet and decuplet baryons.

34 citations