首页> 外文OA文献 >Symmetries in fundamental physics
【2h】

Symmetries in fundamental physics

机译:基础物理学中的对称性

摘要

Over the course of the last century it has become clear that both elementary particle physics and relativity theories are based on the notion of symmetries. These symmetries become manifest in that the "laws of nature" are invariant under spacetime transformations and/or gauge transformations. The consequences of these symmetries were analyzed as early as in 1918 by Emmy Noether on the level of action functionals. Her work did not receive due recognition for nearly half a century, but can today be understood as a recurring theme in classical mechanics, electrodynamics and special relativity, Yang-Mills type quantum field theories, and in general relativity. As a matter of fact, as shown in this monograph, many aspects of physics can be derived solely from symmetry considerations. This substantiates the statement of E.P.Wigner "... if we knew all the laws of nature, or the ultimate Law of nature, the invariance properties of these laws would not furnish us new information." Thanks to Wigner we now also understand the implications of quantum physics and symmetry considerations: Poincare invariance dictates both the characteristic properties of particles (mass, spin, ...) and the wave equations of spin 0, 1/2, 1, ... objects. Further, the work of C.N.Yang and R.Mills reveals the consequences of internal symmetries as exemplified in the symmetry group of elementary particle physics. Given this pivotal role of symmetries it is thus not surprising that current research in fundamental physics is to a great degree motivated and inspired by considerations of symmetry.The treatment of symmetries in this monograph ranges from classical physics to now well-established theories of fundamental interactions, to the latest research on unified theories and quantum gravity.
机译:在上个世纪的过程中,很明显,基本粒子物理学和相对论都是基于对称性概念。这些对称性在“自然法则”在时空变换和/或量规变换下不变时变得明显。早在1918年,艾米·诺瑟(Emmy Noether)就动作功能的水平对这些对称性的后果进行了分析。她的工作近半个世纪没有得到应有的认可,但今天可以理解为古典力学,电动力学和狭义相对论,Yang-Mills型量子场论以及广义相对论中反复出现的主题。事实上,如本专着所述,物理学的许多方面都可以仅从对称性考虑中得出。这证实了维格纳·韦格纳(E.P. Wigner)的说法:“ ...如果我们知道所有自然法则或最终的自然法则,那么这些法则的不变性将不会为我们提供新的信息。”多亏了维格纳,我们现在也了解了量子物理学和对称性考虑的含义:庞加莱不变性决定了粒子的特征性质(质量,自旋,...)以及自旋0、1 / 2、1 ..的波动方程。对象。此外,C.N。Yang和R.Mills的工作揭示了内部对称性的后果,这在基本粒子物理学的对称性组中得到了证明。考虑到对称性的关键作用,因此,当前基础物理学的研究在很大程度上受到对称性因素的启发和启发也就不足为奇了。这本专论中的对称性的处理范围从古典物理学到如今已确立的基本相互作用理论,以了解有关统一理论和量子引力的最新研究。

著录项

  • 作者

    Sundermeyer Kurt;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号