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SPECIAL RELATIVITY IN DECAYS OF HYBRIDS

机译:杂种衰变的特殊相对论

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摘要

A decay of a heavy hybrid is expected to produce light mesons flying out with speeds comparable to the speed of light and phenomenological models of the decay must respect symmetries of special relativity. We study consequences of this requirement in a class of simple constituent models with spin. Our models respect boost symmetry because they conform to the rules of a boost-invariant renormalization group procedure for effective particles in light-front QCD. But rotational symmetry of the decay amplitude is not guaranteed and the parameters in the model wave functions must take special values in order to obtain the symmetry. When the effective interaction Hamiltonian responsible for a hybrid decay has the same structure as the gluon-quark-antiquark interaction term obtained by solving the renormalization group equations for Hamiltonians in first order perturbation theory, the non-relativistic image of a hybrid as built from a quark and an antiquark and a heavy gluon that typically resides between the quarks, cannot produce rotationally symmetric amplitude. However, there exists an alternative generic picture in the model that does satisfy the requirements of special relativity. Namely, the distance between the quark and antiquark must be much smaller than the distance between the gluon and the pair of quarks, as if a hybrid were similar to a gluonium in which one gluon is replaced by a quark-antiquark pair.
机译:重型混合动力的衰变有望产生轻介子,其飞行速度与光速相当,衰变的现象学模型必须考虑狭义相对论的对称性。我们在带有自旋的简单组成模型中研究了这一要求的后果。我们的模型尊重增强对称性,因为它们符合针对光前QCD中有效粒子的增强不变重整化组过程的规则。但是不能保证衰减幅度的旋转对称性,并且模型波函数中的参数必须取特殊值才能获得对称性。当负责混合衰变的有效相互作用哈密顿量具有与通过一阶扰动理论求解哈密顿量的归一化群方程所获得的胶子-夸克-反夸克相互作用项相同的结构时,混合动力的非相对论性图像由夸克,反夸克和通常位于夸克之间的重胶子不能产生旋转对称的振幅。但是,模型中确实存在一个替代的通用图片,它确实满足了狭义相对论的要求。即,夸克和反夸克之间的距离必须比胶子和一对夸克之间的距离小得多,就好象杂种类似于a子一样,其中一个胶子被夸克-反夸克对代替。

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