核物理和(部分)原子物理的有效场论

U. V. Kolck
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引用次数: 5

摘要

这些讲座是对有效场论(EFT)在核物理和原子物理中的应用的教学介绍,而不是全面的介绍。这些应用的一个共同特征是非微扰物理(需要在领先阶产生非相对论束缚态和共振)和受控微扰修正(对预测能力至关重要)之间的相互作用。基本思想用最简单的核EFT,无点阵EFT来说明,它只包含接触相互作用,并且经过微小的改变,可以适应某些原子系统。该EFT利用了两体统一极限,其中重整化导致了三个或更多物体系统中的离散尺度不变性。非常复杂的结构产生于非常简单的前序相互作用。它简要地描述了在核系统的手性EFT中包括远程力-介子交换或原子之间的范德华力的一些挑战和回报。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effective Field Theories for Nuclear and (Some) Atomic Physics
These lectures are a pedagogical—not comprehensive—introduction to the applications of effective field theory (EFT) in the context of nuclear and atomic physics. A common feature of these applications is the interplay between non-perturbative physics (needed at leading order to produce non-relativistic bound states and resonances) and controlled perturbative corrections (crucial for predictive power). The essential ideas are illustrated with the simplest nuclear EFT, pionless EFT, which contains only contact interactions and, with minor changes, can be adapted to certain atomic systems. This EFT exploits the two-body unitarity limit, where renormalization leads to discrete scale invariance in systems of three and more bodies. Remarkably complex structures then arise from very simple leading-order interactions. It briefly describes some of the challenges and rewards of including long-range forces—pion exchange in chiral EFT for nuclear systems or Van der Waals forces between atoms.
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