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V. V. Rubish

Publications and source records attributed to V. V. Rubish.

4 recordsLinked to original sources

The quasiclassical theory of the Dirac equation with a scalar-vector interaction and its applications in the theory of heavy-light mesons

We construct a relativistic potential quark model of $D$, $D_s$, $B$, and $B_s$ mesons in which the light quark motion is described by the Dirac equation with a scalar-vector interaction and the heavy quark is considered a local source of the gluon field. The effective interquark interaction is described by a combination of the perturbative one-gluon exchange potential $V_{\mathrm{Coul}}(r)=-ξ/r$ and the long-range Lorentz-scalar and Lorentz-vector linear potentials $S_{\mathrm{l.r.}}(r)=(1-λ)(σr+V_0)$ and $V_{\mathrm{l.r.}}(r)=λ(σr+V_0)$, where $0\leqslantλ<1/2$. Within the quasiclassical approximation, we obtain simple asymptotic formulas for the energy and mass spectra and for the mean radii of $D$, $D_s$, $B$, and $B_s$ mesons, which ensure a high accuracy of calculations even for states with the radial quantum number $n_r\sim 1$. We show that the fine structure of P-wave states in heavy-light mesons is primarily sensitive to the choice of two parameters: the strong-coupling constant $α_s$ and the coefficient $λ$ of mixing of the long-range scalar and vector potentials $S_{\mathrm{l.r.}}(r)$ and $V_{\mathrm{l.r.}}(r)$. The quasiclassical formulas for asymptotic coefficients of wave function at zero and infinity are obtained.

hep-ph

Spherical model of the Stark effect in external scalar and vector fields

The Bohr-Sommerfeld quantization rule and the Gamow formula for the width of quasistationary level are generalized by taking into account the relativistic effects, spin and Lorentz structure of interaction potentials. The relativistic quasi-classical theory of ionization of the Coulomb system (V_{Coul}=-ξ/r) by radial-constant long-range scalar (S_{l.r.}=(1-λ)(σr+V_0)) and vector (V_{l.r.}=λ(σr+V_0)) fields is constructed. In the limiting cases the approximated analytical expressions for the position E_r and width Γof below-barrier resonances are obtained. The strong dependence of the width Γof below-barrier resonances on both the bound level energy and the mixing constant λis detected. The simple analytical formulae for asymptotic coefficients of the Dirac radial wave functions at zero and infinity are also obtained.

hep-ph

WKB Method and Relativistic Potential Models

Based on the Dirac approach we have developed the relativistic vision of the WKB method for centrally symmetrical potential with mixed Lorenz structure. We have obtained relativistic wavefunctions of light quark and the new rule of quantization containing the spin-orbit interaction. These gives us the possibility of finding the energy levels and decay width of hydrogen-like quark-systems.

hep-ph

Hidden symmetry and separation of variables in the problem of two centres with a confinement-type potential

An additional spheroidal integral of motion and a group of dynamic symmetry in a model quantum-mechanical problem of two centres eZ_{1}Z_{2}omega with Coulomb and oscillator interactions is obtained, the group properties of its solutions being studied. P(3) \otimes P(2,1), P(5,1) and P(4,2) groups are considered as the dynamic symmetry groups of the problem, among them P(3) \otimes P(2,1) group possessing the smallest number of parameters. The obtained results may appear useful at the calcuations of QQq-baryons and QQg-mesons energy spectra.

hep-ph