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首页> 外文期刊>The European Physical Journal, A. Hadrons and Nuclei >Form factors in RQM approaches: Constraints from space-time translations
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Form factors in RQM approaches: Constraints from space-time translations

机译:RQM方法中的形式因素:时空翻译的约束

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摘要

Different relativistic quantum-mechanic approaches have recently been used to calculate properties of various systems, form factors in particular. It is known that predictions, which most often rely on a single-particle current approximation, can lead to predictions with a very large range. It was shown that accounting for constraints related to space-time translations could considerably reduce this range. It is shown here that predictions can be made identical for a large range of cases. These ones include the following approaches: instant form, front form, and "point form" in arbitrary momentum configurations and a dispersion-relation approach which can be considered as the approach which the other ones should converge to. This important result supposes both an implementation of the above constraints and an appropriate single-particle-like current. The change of variables that allows one to establish the equivalence of the approaches is given. Some points are illustrated with numerical results for the ground state of a system consisting of scalar particles.
机译:最近已使用不同的相对论量子力学方法来计算各种系统的特性,尤其是形状因数。众所周知,最常依赖于单粒子电流近似的预测可以导致很大范围的预测。结果表明,考虑到与时空翻译有关的约束条件可以大大缩小这一范围。此处显示,在很大范围的情况下可以做出相同的预测。这些方法包括以下方法:任意动量配置中的瞬时形式,前形式和“点形式”,以及色散-关联方法,可以将其视为其他方法应该收敛的方法。这个重要的结果既要实现上述约束,又要有合适的单粒子状电流。给出了允许建立方法等效性的变量的变化。对于由标量粒子组成的系统的基态,用数值结果说明了一些点。

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