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Lorentz Harmonics, Squeeze Harmonics and Their Physical Applications

机译:洛伦兹谐波,挤压谐波及其物理应用

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Among the symmetries in physics, the rotation symmetry is most familiar to us. It is known that the spherical harmonics serve useful purposes when the world is rotated. Squeeze transformations are also becoming more prominent in physics, particularly in optical sciences and in high-energy physics. As can be seen from Dirac’s light-cone coordinate system, Lorentz boosts are squeeze transformations. Thus the squeeze transformation is one of the fundamental transformations in Einstein’s Lorentz-covariant world. It is possible to define a complete set of orthonormal functions defined for one Lorentz frame. It is shown that the same set can be used for other Lorentz frames. Transformation properties are discussed. Physical applications are discussed in both optics and high-energy physics. It is shown that the Lorentz harmonics provide the mathematical basis for squeezed states of light. It is shown also that the same set of harmonics can be used for understanding Lorentz-boosted hadrons in high-energy physics. It is thus possible to transmit physics from one branch of physics to the other branch using the mathematical basis common to them.
机译:在物理学中的对称性中,旋转对称性是我们最熟悉的。众所周知,当世界旋转时,球谐函数起着有用的作用。挤压转换在物理学中,尤其是在光学科学和高能物理中,也变得越来越重要。从狄拉克(Dirac)的光锥坐标系可以看出,洛伦兹的提升是挤压变换。因此,挤压变换是爱因斯坦洛伦兹协变世界的基本变换之一。可以定义为一个Lorentz框架定义的一组完整的正交函数。结果表明,相同的集合可以用于其他洛伦兹帧。讨论了转换特性。光学和高能物理都讨论了物理应用。结果表明,洛伦兹谐波为光的压缩状态提供了数学基础。还表明,同一组谐波可用于理解高能物理学中的洛伦兹增强型强子。因此,有可能使用它们共同的数学基础将物理学从一个物理学分支传递到另一分支。

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    《Symmetry》 |2011年第1期|共页
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