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Based on the fully dressed quark propagator and chiral perturbation theory, we study the ratio of the strange quark mass ms to up or down quark mass mu,d . The ratio is related to the determination of quark masses which are fundamental input parameters of QCD Lagrangian in the Standard Model of particle physics and can not be directly measured since the quark is confined within a hadron. An accurate determination of these QCD free parameters is extremely important for both phenomenological and theoretical applications. We begin with a brief introduction to the non-perturbation QCD theory, and then study the mass ratio in the framework of the chiral perturbation theory (χPT) with a parameterized fully dressed quark propagator which describes confining fully dressed quark propagation and is analytic everywhere in the finite complex p2-plane and has no Lehmann representation so there are no quark production thresholds in any theoretical calculations of observable data. Our prediction for the ratio ms/mu,d is consistent with other model predictions such as Lattice QCD, instanton model, QCD sum rules and the empirical values used widely in the literature. As a by-product of this study, our theoretical results, together with other predictions of physical quantities that used this quark propagator in our previous publications, clearly show that the parameterized form of the fully dressed quark propagator is an applicable and reliable approximation to the solution of the Dyson-Schwinger Equation of quark propagator in the QCD. 相似文献
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利用传输矩阵法理论,研究含吸收材料对称结构一维三元光子晶体的光传输特性。结果表明:当各层介质无吸收时,在较宽的禁带范围内出现一条透射率为100%的透射峰;当介质的折射率为带有正虚部的复数,即介质存在吸收时,禁带中的透射峰出现明显的透射衰减,且随着复折射率虚实比β的增大透射率出现单调衰减规律;当单个介质存在吸收时,随着各介质折射率虚实比的增大,透射率的衰减速度存在各异,其中以C介质的折射率虚实比βc对透射峰透射率的影响较大,其次为B,A的影响相对较小;当所有介质同时存在吸收时,透射衰减最为明显。这些特性为光学衰减器的设计提供理论指导意义。 相似文献
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用传输矩阵法研究镜像对称结构一维光子晶体(ABCB)m(BCBA)m的透射谱,发现:在很宽的禁带范围内出现单条透射峰,透射峰随m的增加而越来越锋锐;随着A层介质厚度dA和折射率nA的增大,透射峰向高频方向移动;随着B层介质厚度dB和折射率nB的增大,透射峰则向低频方向移动;随着C层介质折射率nC的增大,透射峰则快速向低频方向移动;随着入射角θ的增大,透射峰向高频方向移动的同时禁带宽度也跟随着变化。此镜像对称结构光子晶体的光传输特性对光子晶体设计新型光学器件有一定的参考意义。 相似文献
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利用传输矩阵法,研究周期不对称度对光子晶体透射谱的影响,结果表明:当周期不对称度为零时,光子晶体透射峰随着周期数的增大而变得越精细,但其透射率均为100%不变;当周期不对称度为不等于零的恒定值时,光子晶体透射峰的透射率低于100%,但随着周期数的增大,透射峰仅变得精细而透射率不变;光子晶体透射峰的透射率随着周期不对称度增大而下降,而且不对称度越大,透射率下降越快,同时透射峰变窄的速度也越快。周期不对称度对光子晶体透射谱的影响规律,为光子晶体模型的构造和设计制备等提供方法依据。 相似文献
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