998 research outputs found

    Analysis of a model with a common source of CP violation

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    We work in a model where all CP violating phenomena have a common source. CP is spontaneously broken at a large scale VV through the phase of a complex singlet scalar. An additional SU(2)LSU(2)_L singlet vector-like down-type quark relates this high scale CP violation to low energy. We quantitatively analyze this model in the quark sector. We obtain the numerical values of the parameters of the Lagrangian in the quark sector for a specific ansatz of the 4Γ—44\times4 down-type quark mass matrix where the weak phase is generated minimally. ZbΛ‰bZ \bar b b vertex will modify in presence of the extra vector-like down-type quark. From the experimental lower bound of the partial decay width Zβ†’bΛ‰bZ\to \bar b b we find out the lower bound of the additional down-type quark mass. Tree level flavor changing neutral current appears in this model due to the presence of the extra vector-like down-type quark. We give the range of values of the mass splitting Ξ”mBq\Delta m_{B_q} in Bq0βˆ’BΛ‰q0B^0_q-{\bar B}^0_q system using SM box, ZZ mediating tree level and ZZ mediating one loop diagrams together for both q=d,sq=d, s. We find out the analytical expression for Ξ“12q\Gamma_{12}^q in this model from standard box, ZZ and Higgs mediated penguin diagrams for Bq0βˆ’BΛ‰q0B^0_q-{\bar B}^0_q system, q=d,sq=d,s. From this we numerically evaluate the decay width difference βˆ£Ξ”Ξ“Bq/Ξ“Bq∣|\Delta\Gamma_{B_q}/\Gamma_{B_q}|. We also find out the numerical values of the CP asymmetry parameters aJa_J and aΟ€a_\pi for the decays Bd0β†’J/ψKsB^0_d\to J/\psi K_s and Bd0β†’Ο€+Ο€βˆ’B^0_d\to \pi^+ \pi^- respectively. We get the lower bound of the scale VV through the upper bound of the strong CP phase.Comment: 20 pages, no figures New materials and references have been added. Text has been modified. To be appear in J.Phys.

    Large amplitude solitary waves in ion-beam plasmas with charged dust impurities

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    The nonlinear propagation of large amplitude dust ion-acoustic (DIA) solitary waves (SWs) in an ion-beam plasma with stationary charged dusts is investigated. For typical plasma parameters relevant for experiments [J. Plasma Phys. \textbf{60}, 69 (1998)], when the beam speed is larger than the DIA speed (vb0≳1.7csv_{b0}\gtrsim1.7c_s), three stable waves, namely the "fast" and "slow" ion-beam modes and the plasma DIA wave are shown to exist. These modes can propagate as SWs in the beam plasmas. However, in the other regime (cs<vb0<1.7csc_s<v_{b0}<1.7c_s), one of the beam modes when coupled to the DIA mode may become unstable. The SWs with positive (negative) potential may exist when the difference of the nonlinear wave speed (MM) and the beam speed is such that 1.2≲Mβˆ’vb0≲1.61.2\lesssim M-v_{b0}\lesssim1.6 (Mβˆ’vb0≳1.6M-v_{b0}\gtrsim1.6). Furthermore, for real density perturbations, the wave potential (>0)(>0) is found to be limited by a critical value which typically depends on MM, vb0v_{b0} as well as the ion/beam temperature. The conditions for the existence of DIA solitons are obtained and their properties are analyzed numerically in terms of the system parameters. While the system supports both the compressive and rarefactive large amplitude SWs, the small amplitude solitons exist only of the compressive type. The theoretical results may be useful for observation of soliton excitations in laboratory ion-beam driven plasmas as well as in space plasmas where the charged dusts play as impurities.Comment: 8 pages, 6 figures; Article to appear in Phys. Plasmas (2011
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