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1.
A multiple production study of neutral strange particles in νμ charged current interactions has been performed using the full data sample from the NOMAD experiment. This analysis allows one to investigate the mechanisms of strange particle production in neutrino interactions. In this study we have tried to build a model for the production of strange particles, which would allow us to describe our measured rates of neutral strange particles, as well as the rates of the single-, double-and triple-V 0 production: Λ, K 0, , K 0 K 0, ΛK 0, Λ , K 0 , ΛΛ, and K 0 K 0 K 0. The text was submitted by the authors in English.  相似文献   

2.
A number of peculiarities were found in the effective mass spectrum of the ΛK S 0 system in the ranges of 1650–1680, 1740–1750, 1785–1805, 1835–1860, and 1925–1950 MeV/c 2 during the collision of a 10-GeV/c 2 momentum proton with propane. Detailed research of a mass spectrum structure has shown that significant enhancements have been obtained in two effective mass ranges of 1750 and 1795 MeV/c 2. These peaks could be interpreted as possible candidates of two pentaquark states: the N 0 with quark content udsds decaying into ΛK 0 and the Ξ0 resonance with quark content udsds decaying into . The text was submitted by the authors in English.  相似文献   

3.
CP violation has been observed as a time-dependent rate asymmetry between the decays ${?erline K}^0 ?ghtarrow ?^{0} ?^{0}$ and K0 → π0π{0}, where the neutral kaons are produced with definite and individually known strangeness in ${?r p}p ?ghtarrow{?erline K}^0 K^+?^- $ or p?p → K0 K? π+. A special technique for the data analysis has been developed. The values obtained for ?00 and ¦ η00¦ are in agreement with those of previous measurements of CP violation.  相似文献   

4.
A search for narrow Θ+(1540), a candidate for a pentaquark baryon with positive strangeness, has been performed in an exclusive proton-induced reaction $p + C(N) \to \Theta ^ + \bar \kappa ^0 + C(N)$ on carbon nuclei or quasifree nucleons at $E_{beam} = 70GeV(\sqrt s = 11.5GeV)$ studying nK +, pK S 0 , and pK L 0 decay channels of Θ+(1540) in four different final states of the $\Theta ^ + \bar K^0 $ system. In order to assess the quality of the identification of the final states with neutron or K L 0 , we reconstructed Λ(1520) → nK S 0 and ?K L 0 K S 0 decays in the calibration reactions p + C(N) → Λ (1520)K ++C(N) and p+C(N) → p?+C(N). We found no evidence for a narrow pentaquark peak in any of the studied final states and decay channels. Assuming that the production characteristics of the $\Theta ^ + \bar K^0 $ system are not drastically different from those of the Λ(1520)K + and p? systems, we established upper limits on the cross-section ratios $\sigma (\Theta ^ + \bar K^0 )/\sigma (\Lambda (1520)K^ + ) < 0.02$ and $\sigma (\Theta ^ + \bar K^0 )/\sigma (p\phi ) < 0.15$ at 90% C.L. and a preliminary upper limit for the forward-hemisphere cross section $\sigma (\Theta ^ + \bar K^0 )$ nb/nucleon.  相似文献   

5.
Total and differential cross sections ofK *?(890),K *?(890), \(\bar K^{ * 0} \) (890),K *0(890), \(\bar K^{ * 0} \) (1430) and? 0(770) produced inK ? p interactions at 110 GeV/c are presented. The cross sections of the neutral resonances show a smooth increase with energy from 10 to 110 GeV/c incident momentum. For theK *+(890) and theK *0(890), i.e. the resonances with strangenessS=+1, this rise is quite significant: their cross sections practically double between 32 GeV/c and 110 GeV/c incidentK ? momentum. About 50% of the neutral kaons and 30% of charged pions produced inK ? p interactions at our energy are found to be decay products of the resonances considered.  相似文献   

6.
Recent data on the scattering of neutralK mesons on various nuclei (regeneration amplitudes and totalK L 0 cross-sections) are used to get a precise knowledge of inelastic rescattering of Kaons inside a nucleus, which allows a reliable phenomenological evaluation of the inelastic contributions to the cross-section defects in deuteron. New more accurate values for the Kaon-neutron total cross-section can then be deduced from Kaon-deuteron and Kaon-proton measurements. The total cross-sections \(\sigma _{K^ + p} ,\sigma _{K^ + n} ,\sigma _{K^ - p} ,\sigma _{K^ - n} \) are found to follow a classical Regge pattern, and the corresponding residues are determined.  相似文献   

7.
We consider near-threshold a 0(980)-meson production in πN and NN collisions. An effective Lagrangian approach with one-pion exchange is applied to analyze different contributions to the cross section for different isospin channels. The Reggeon exchange mechanism is also evaluated for comparison. The results from πN reactions are used to calculate the contribution of the a 0 meson to the cross sections and invariant mass distributions of the reactions and ppppK + K . It is found that the experimental observation of a 0 + mesons in the reaction is much more promising than the observation of a 0 0 mesons in the reaction ppppK + K . Effects of isospin violation in the reactions pNda 0, pd3He(3H)a 0, and dd4Hea 0, which are induced by a 0(980)-f 0(980) mixing, are also analyzed. From Yadernaya Fizika, Vol. 66, No. 1, 2003, pp. 155–174. Original English Text Copyright ? 2003 by Kondratyuk, Bratkovskaya, Grishina, Büscher, Cassing, Str?her. This article was submitted by the authors in English.  相似文献   

8.
a     
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9.
Making the assumption of explicit isospin violation arising from f 0(980)-a 0(980) mixing, we take the point of view that the scalar mesons f 0(980) and a 0(980) have both strange and non-strange quark-antiquark components and evaluate the strong coupling constants within the framework of the light-cone QCD sum rules approach. The large strong scalar-KK couplings through both the and components , , and will support the hadronic dressing mechanism; furthermore, in spite of the constituent structure differences between the f 0(980) and a 0(980) mesons, the strange components have larger strong coupling constants with the K + K - state than the corresponding non-strange ones, and . From the existing controversial values, we cannot reach a general consensus on the strong coupling constants and the mixing angles.Received: 9 January 2004, Revised: 23 July 2004, Published online: 2 September 2004  相似文献   

10.
There are claims in the literature that in neutrino oscillations and oscillations of neutral kaons and B-mesons the oscillation phase differs from the standard one by a factor of two. We reconsider the arguments leading to this extra factor and investigate, in particular, the non-relativistic regime. We actually find that the very same arguments lead to an ambiguous phase and that the extra factor of two is a special case. We demonstrate that the unitarity triangle (UT) fit in the standard model with three families is a suitable means to discriminate between the standard oscillation phase and the phase with an extra factor of two. If K L - K S and B dH - B dL mass differences are extracted from the and data, respectively, with the extra factor of two in the oscillation phases, then the UT fit becomes significantly worse in comparison with the standard fit and the extra factor of two is disfavored by the existing data at the level of more than .Received: 4 March 2005, Published online: 21 April 2005PACS: 12.15.Ff, 14.60.Pq  相似文献   

11.
Oscillations of neutral meson (K 0-$ \overline {K^0 } $ \overline {K^0 } , D 0-$ \overline {D^0 } $ \overline {D^0 } , and B 0-$ \overline {B^0 } $ \overline {B^0 } are extremely sensitive to the meson and antimeson energies at rest. This energy is determined as mc 2—with the corresponding inertial mass—and as the energy of gravitational interaction. Assuming that the CPT theorem is correct for inertial masses and estimating the gravitational potential for which the largest contribution originates from the field of the galaxy center, we obtain the estimate from experimental data on K 0-$ \overline {K^0 } $ \overline {K^0 } oscillations:
$ \left| {\left( {\frac{{m_g }} {{m_i }}} \right)_{K^0 } - \left( {\frac{{m_g }} {{m_i }}} \right)_{\overline {K^0 } } } \right| \leqslant 8 \times 10^{ - 13} , at C.L. = 90\% $ \left| {\left( {\frac{{m_g }} {{m_i }}} \right)_{K^0 } - \left( {\frac{{m_g }} {{m_i }}} \right)_{\overline {K^0 } } } \right| \leqslant 8 \times 10^{ - 13} , at C.L. = 90\%   相似文献   

12.
We study the time dependence of the integrated asymmetries in strangeness of kaons in the decays in two and three pions and in two photons with the purpose of disentangling theCP violating effects in the decay amplitudes from the ones related to the mass matrix. We find two cases where they are not reduced by the I=1/2 rule or hidden byCP violation in the mass matrix, namely the strangeness-energy correlation of the charged pions in the prompt decay ( S ) in +-0, and the decays in two photons. The semileptonic decays are also briefly studied.  相似文献   

13.
Preliminary results from the correlation femtoscopy of identical kaons in the SELEX experiment (Fermilab E781) are presented. Kaons are selected in inclusive reactions of Σ?C(Cu) interactions at an initial energy of 610 GeV. Kaon pairs are studied in all possible charged states: K s 0 K s 0 , K s 0 K+, K s 0 K?, K+K+, K+K? and K?K?. The source sizes of the hadronization region of neutral and charged kaon pairs are measured.  相似文献   

14.
Recent proposals to test Bell’s inequalities with entangled pairs of pseudoscalar mesons are reviewed. This includes pairs of neutral kaons or B-mesons and offers some hope to close both the locality and the detection loopholes. Specific difficulties, however, appear thus invalidating most of those proposals. The best option requires the use of kaon regeneration effects and could lead to a successful test if moderate K0 and k̄0 detection efficiencies are achieved.  相似文献   

15.
16.
Mixing in the systems of neutral K 0 and B 0 mesons is considered within the minimal supersymmetric standard model (MSSM) containing a type-II Yukawa sector and featuring an explicitCP violation in the Higgs potential. In the case of a strong mixing of CP-even and CP-odd states, the model admits the presence of a light charged Higgs boson. Basic mixing parameters are calculated. These include the mass difference Δm LS between neutral kaons and the parameter ε, which characterizes the amount of an indirect CP violation (that is, that which arises owing to an ultraweak mixing of CP-invariant and CP-noninvariant components). In the limit of the low-energy one-loop approximation, it is shown that, for the K 0 mesons, the contribution of nonstandard-physics effects to the mass splitting of the neutral kaons and an indirect CP violation are very small and are weakly dependent on the mass of the charged Higgs boson. Under certain conditions, the nonstandard contributions for the B 0- $ \bar B_d^0 $ and B 0- $ \bar B_s^0 $ systems may become somewhat more substantial, which constrains the MSSM parameter space.  相似文献   

17.
K L?K S mass difference and the CP violation parameter, ?, of theK 0 ? \(\overline {K^0 } \) system are used to set bounds on the right-handed Cabibbo-like angle and the CP violating phase angle in the left-right symmetric electroweak model of four quarks. The corresponding mixing and phase angles in typical left-right asymmetric models (g Lg R) are also determined.  相似文献   

18.
Phenomenological issues of CP violation in the quark sector of the Standard Model are discussed. We consider quark mixing in the SM, standard, and Wolfenstein parametrization of the CKM mixing matrix and unitarity triangle. We discuss the phenomenology of CP violation in K L 0 and B d 0()-decays. The standard unitarity triangle fit of the existing data is discussed. In appendix A we compare the K 0 ⇆ , B d,s 0 ⇆ , etc. oscillations with neutrino oscillations. In Appendix B we derive the evolution equation for the M − system in the Weisskopf-Wigner approximation. The text was submitted by the author in English.  相似文献   

19.
A complete analysis of the long range part of theK L –K S mass difference in next-to-leading-order of chiral perturbation theory is presented. We find a large positive contribution from transitions via S=2 vertices and irreducible loop diagrams involving two separate weak interactions. Single-particle pole contributions are small if an approximate nonet symmetry for the couplings of the singlet 1 holds. They tend to cancel the short distance contribution from box diagrams. In total, good agreement with experiment is obtained. In a second part we study theK L K S mass difference in a phenomenological model of nonleptonic weak transitions which explains the I=1/2 rule in terms of non-perturbative quark-quark correlations. The numerical results agree well with those presented before.  相似文献   

20.
We propose a new method for measuring the difference $\Delta f = f(0) - \bar f(0)$ of the forward scattering amplitudes for K0 and $\bar K^0 $ by use of decay rates of initially pure strangeness states after passage through a regenerator. The phenomenology of coherent kaon regeneration is presented for arbitrary mixtures of K0 and $\bar K^0 $ .  相似文献   

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