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We discuss a form for the quark mass matrices which produces maximal weak but no string CP violation. The quark mass matrices are of the Fritzsch type, with all phases equal to multiples of 12π. We show that these matrices can be produced in an SO(10) model with CP violated spontaneously at the GUT scale. The model successfully predicts the entire K-M matrix. Radiative corrections to θ, however, are several orders of magnitude too large in the model, and θ is naturally of O(10?5).  相似文献   

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In the standard eletroweak model, with three families, a one-to-one correspondence between certain determinants involving quark mass matrices (m andm′ for charge 2/3 and ?1/3 quarks respectively) and the presence/absence of CP violation is given. In an arbitrary basis for mass matrices, the quantity Im det [mm +,m′m′ +] appropriately normalized is introduced as a measure of CP violation. By this measure, CP is not maximally violated in any transition in Nature. Finally, constraints on quark mass matrices are derived from experiment. Any model of mass matrices, with the ambition to explain Nature, must satisfy these conditions.  相似文献   

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We investigate how to testCP invariance in the weak decay of top quarks. A prediction ofCP violation from the Standard Model is made by an explicit calculation. The effect is very small as expected. We then use a form factor approach to parametrize possible new interactions ofCP violation. The differences between the form factor approach and an effective Lagrangian approach are discussed. The sensitivity of ourCP-odd observables to the form factors is estimated.  相似文献   

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By adding suitable discrete flavor symmetries to SU(2)L ? SU(2)R ? U(1) left-right symmetric gauge models of weak and electromagnetic interactions, we are able to express all the mixing angles between the quark flavors (u, d, s,c) in terms of the quark masses. This enables us to compute the Cabibbo angle and the CP violating phases using plausible values for the quark masses. The CP violating K ar 2π decay amplitude η+? (and η00 in the model is then given purely in terms of the parity violating parameter of the model (mWL+/mWR+)2.  相似文献   

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吴岳良 《物理》2004,33(12):882-889
简要地介绍了与电荷-宇称(CP)对称性破坏和夸克-轻子味物理有关的一些重要进展.从1964年发现CP破坏和提出夸克理论至今,这个领域就一直成为粒子物理研究的前沿领域,已研究和发展了整整40年,取得了许多辉煌的成就.在这篇文章中,着重评述了目前仍然热门的几个主要的研究方向:直接CP 破坏的理论研究和实验验证,CP破坏机制和新的CP破坏源,中微子物理和新的味物理,夸克味物理和有效量子场理论,标准模型中味物理参数的预言和超对称大统一理论.同时对我国有关研究组在这些前沿方向做出的重要贡献作了重点简述.可以看出,在CP破坏和味物理这个重要前沿领域,仍然存在着许多未解之谜,使得粒子物理在21世纪既面临着巨大的挑战,又有着不断发展的机遇.  相似文献   

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We calculate the CP violating effects in the top quark semi-leptonic three body decays induced by the supersymmetric CP-odd phase of the top squark trilinear soft breaking term . The light top squark mass is assumed to be close to the top quark mass, . The CP conserving phase is provided by the and cut. We find that the partial rate asymmetry is on the 0.1% level. In the most favorable parameter region the decay rate asymmetry can reach up to 0.55%. Received: 19 April 1999 / Published online: 16 November 1999  相似文献   

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The extended Cabibbo current with CP-violation in a six quark gauge model is obtained in terms of quark mass ratios and phases in the quark mass matrices. The model predicts a long-lived heavy quark and its selection rule.  相似文献   

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CP violation can be studied in modes of charmed or bottom baryons when a decay process is compared with its charge-conjugated partner. It can show up as a rate asymmetry and in a study of other decay parameters. Neither tagging nor time-dependences are required to observeCP violation with modes of baryons, in contrast to the conventionalB 0 modes. Numerous modes of bottom baryons have the potential to show largeCP-violating effects within the Standard Model. Those effects can be substantial for modes with aD 0, which is seen in a final state that can also be fed from a \(\bar D^0 \) . For instance, a comparison of theΛ bΛ CP 0 with the \(\bar \Lambda _b \to \bar \Lambda D_{CP}^0 \) process can show sizeableCP violation. HereD CP o denotesCP eigenstates ofD 0, which occur at a few percent. Six related processes, such asΛ bΛD 0, \(\Lambda _b \to \Lambda \bar D^0 \) ,Λ bΛ CP 0 , and their charge-conjugated counterparts, can extract ?, which is the most problematic angle of the unitarity triangle and which is conventionally probed with theB s→ρ0 K S asymmetry. HereD 0 andD ?0 are identified by their charged kaon or lepton. We predictB(Λ bΛD 0)~10?5, thusB(Λ bΛ CP 0 )~10?7. Under favourable circumstances,CP violation can occur at the few tens of percent level. Thus 102–103 Λ bΛ CP 0 decays start probing ?. Tables list many additional modes with typical branching ratios at the 10?5–10?6 level, with large detection efficiencies (in contrast to theD CP 0 ), and with potentially largeCP-violating effects, such as Ξ b 0 →ΛΨ, Λ?, ΛK*0; Ξ b ? →ΛK(*)?, Ξ?Ks, Ξ?K*0, Ω b ? →Ξ?φ, Ξ?ρ0, ΛK(*)?, ΩKs, Ω?K*0.  相似文献   

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