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1.
Theoretically motivated smallness of the penguin amplitude in Bππ decays allows one to calculate the value of the unitarity-triangle angle α(ø 2) with good accuracy. The relatively large branching ratio of the decay into π 0 π 0 is explained by the large value of FSI phase difference between decay amplitudes with I = 0 and I = 2.  相似文献   

2.
The influence of isospin-violating (ρ0, ω) mixing is discussed for any pair of decays of ρ0, ω into the same final state. It is demonstrated, in analogy to the CP violation in neutral kaon decays, that isospin violation can manifest itself in various forms: direct violation in amplitudes and/or violation due to mixing. In addition to the known decays (ρ0, ω) → π+π? and (ρ0, ω) → π0γ, the pair of decays to e+e? and the whole set of radiative decays with participation of ρ0, ω (in initial or final states) are also shown to be useful and promising for studies. Existing data on these decays agree with the universal character of the mixing parameter and indirectly support enhancement of ρ0π0γ in respect to ρ±π±γ. Future precise measurements will allow one to separate different forms of isospin violation and elucidate their mechanisms.  相似文献   

3.
In a hydrodynamic model, we have studied J/ψ production in Au+Au/Cu+Cu collisions at RHIC energy, GeV. At the initial time, J/ψ’s are randomly distributed in the fluid. As the fluid evolves in time, the free streaming J/ψ’s are dissolved if the local fluid temperature exceeds a threshold temperature T J/ψ . Sequential melting of charmonium states (χ c , ψ and J/ψ), with melting temperatures , T J/ψ ≈2T c and feed-down fraction F≈0.3, explains the PHENIX data on the centrality dependence of J/ψ suppression in Au+Au collisions. J/ψ p T spectra and the nuclear modification factor in Au+Au collisions are also well explained in the model. The model however overpredicts the centrality dependence of J/ψ suppression in Cu+Cu collisions by 20–30%. The J/ψ p T spectra are underpredicted by 20–30%. The model predicts that in central Pb+Pb collisions at LHC energy,  GeV, J/ψ’s are suppressed by a factor of ∼10. The model predicted a J/ψ p T distribution in Pb+Pb collisions at LHC is similar to that in Au+Au collisions at RHIC.  相似文献   

4.
Strong final-state interactions create a pronounced cusp in η′→η π 0 π 0 decays. We adapt and generalize the non-relativistic effective field theory framework developed for the extraction of π π scattering lengths from K→3π decays to this case. The cusp effect is predicted to have an effect of more than 8% on the decay spectrum below the π + π threshold.  相似文献   

5.
In this paper, we calculate the branching ratio and direct CP asymmetry parameter of B c ±D 0 K ± in the framework of a perturbative QCD approach based on k T factorization. Besides the usual factorizable diagrams, both nonfactorizable and annihilation type contributions are taken into account. We find that (a) the branching ratio is at the order of 10−5; (b) the tree annihilation diagrams and the penguin diagrams dominate the total contribution; and (c) the direct CP asymmetry is about 7%, which can be tested in the Large Hadron Collider beauty experiments (LHC-b) at CERN.  相似文献   

6.
To test the validity of perturbative QCD (pQCD) and investigate its range of application, one should look for a suitable process. BJ/ψ D is a promising candidate. The linear momentum of the products is relatively small, so that there may exist a region where exchanged gluons are soft and the perturbative treatment may fail, so that the non-perturbative effect would be significant. We attribute such non-perturbative QCD effects to the long-distance final-state interaction (FSI) which is estimated in this work. We find that the contribution from the FSI to the branching ratio is indeed sizable and may span the rather wide range of 10−6∼10−5 and cover a region where the pQCD prediction is of the same order. A more accurate measurement of its branching ratio may provide important information about the application region of pQCD and help to clarify the picture of inelastic rescattering (i.e. FSI), which is generally believed to play an important role in B decays.  相似文献   

7.
We investigate the interplay between crossed channel final state interactions and the constraints from two-particle unitarity for the reactions J/ψV π π and VK[`(K)]VK\bar{K} , where V is either ω or φ. Using a model where the parameters are largely constrained by other sources, we find that, although small, crossed channel final state interaction can influence the amplitudes considerably, in special areas of phase space. These results cast doubt on the inapplicability of unitarity constraints on production amplitudes as recently claimed in the literature.  相似文献   

8.
9.
We re-evaluate the electromagnetic corrections to η→3π decays at next-to-leading order in the chiral expansion, arguing that effects of order e 2(m u m d ) disregarded so far are not negligible compared to other contributions of order e 2 times a light-quark mass. Despite the appearance of the Coulomb pole in ηπ + π π 0 and cusps in η→3π 0, the overall corrections remain small.  相似文献   

10.
Two-and three-body decays of γ(5S) into BB, BB*, B*B*, B s B s , B s B s *, and BB*π, B*B*π are evaluated using the theory developed earlier for dipion-bottomonium transitions. The theory contains only two parameters—vertex masses M br and M ω—known from the dipion spectra and width. Predicted values of Γtot(5S) and six partial widths Γ k (5S), k = BB, BB*, ... are in agreement with the experiment. The decay widths Γ5S BB*) and Γ5S B*B*) are also calculated and found to be on the order of 10 keV. The text was submitted by the authors in English.  相似文献   

11.
12.
The process γ*γσ is investigated in the framework of the SU(2)×SU(2) chiral NJL model. The form factor of the process is derived for arbitrary virtuality of γ* in the Euclidean kinematic domain. The asymptotic behavior of this form factor resembles the asymptotic behavior of the γ*γπ form factor.  相似文献   

13.
The main purpose of this paper is to study the exact solution of Bianchi type III spacetime in the context of metric f(R) gravity. The field equations are solved by taking expansion scalar θ proportional to shear scalar σ which gives C=A n , where A and C are the metric coefficients. The physical behavior of the solution has been discussed using some physical quantities. Also, the function of the Ricci scalar is evaluated.  相似文献   

14.
15.
We investigate the inclusive photoproduction of J/ψ mesons at HERA within the framework of the k T -factorization QCD approach. Our study is based on the color singlet model supplemented with the relevant off-shell matrix elements and the CCFM and KMR unintegrated gluon densities in a proton and in a photon. Both the direct and resolved photon contributions are taken into account. Our predictions are compared with the recent experimental data taken by the H1 and ZEUS collaborations. Special attention is put on the J/ψ polarization parameters λ and ν, which are sensitive to the production dynamics.  相似文献   

16.
We present an analysis of non-leptonic B decays in the minimally flavour-violating MSSM with large tan β. We relate the Wilson coefficients of the relevant hadronic scalar operators to leptonic observables, showing that the present limits on the B s μ + μ and B +τ + ν τ branching fractions exclude any visible effect in hadronic decays. We study the transverse helicity amplitudes of BVV decays, which exhibit an enhanced sensitivity to the scalar operators, showing that even though an order one modification relative to the SM is not excluded in some of these amplitudes, they are too small to be detected at B factories. X.-Q. Li is a Alexander-von-Humboldt fellow.  相似文献   

17.
18.
In this article, we assume that there exists a scalar hidden charm tetraquark state in the π + χ c1 invariant mass distribution, and we study its mass using the QCD sum rules. The numerical result M Z =(4.36±0.18) GeV is consistent with the mass of the Z(4250). The Z(4250) may be a tetraquark state, but other possibilities, such as a hadro-charmonium resonance and a molecular state, are not excluded.  相似文献   

19.
20.
In the context of the so-called Gauss–Bonnet gravity, where the gravitational action includes function of the Gauss–Bonnet invariant, we study cosmological solutions, especially the well-known ΛCDM model. It is shown that the dark energy contribution and even the inflationary epoch can be explained in the frame of this kind of theories with no need of any other kind of component. Other cosmological solutions are constructed and the rich properties that this kind of theories provide are explored.  相似文献   

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