论文标题
大力学和两体问题
Macromechanics and two-body problems
论文作者
论文摘要
波函数可以以ψ= reis/h的形式写入。我们将这种形式的波函数放入量子力学方程中,并采用流体动力学极限。 e。,让普朗克常数为零。然后检索描述宏观体运动的运动方程(EOM)。从Schrodinger方程式中,我们获得了牛顿力学,包括纽顿三个运动定律;从具有正动能(PKE)的Decouple klein-gordon方程中,我们在经典力学中获得了特殊相对论的EOM。这些是用于PKE系统。从负动能(NKE)schrodinger方程和脱钩的klein-gordon方程中,得出了描述宏观暗体的低动量和相对论运动的EOM。这些是nke系统,i。例如,黑暗系统。在所有情况下,标量和矢量电位也被考虑。获得的形式主义统称为大力学。对于包含PKE和NKE体的孤立系统,总动量和总动能均可保留。深色理想气体会产生负压,并披露其微观机制。研究宏观体和显微镜颗粒的两体问题,至少一个是NKE。 NKE质子和PKE电子可以组成稳定的PKE原子,并且与氢原子相比,其光谱线具有蓝移。作者建议在天谱中寻找这些光谱线。这提供了一种寻找空间中黑暗颗粒的方法。研究了身体和黑体之间的弹性碰撞。
A wave function can be written in the form of ψ = ReiS/h. We put this form of wave function into quantum mechanics equations and take hydrodynamic limit, i. e., let Planck constant be zero. Then equations of motion (EOM) describing the movement of macroscopic bodies are retrieved. From Schrodinger equation, we obtain Newtonian mechanics, including Newtons three laws of motion; from decouple Klein-Gordon equation with positive kinetic energy (PKE), we obtain EOM of special relativity in classical mechanics. These are for PKE systems. From negative kinetic energy (NKE) Schrodinger equation and decoupled Klein-Gordon equation, the EOM describing low momentum and relativistic motions of macroscopic dark bodies are derived. These are NKE systems, i. e., dark systems. In all cases scalar and vector potentials are also taken into account. The formalism obtained is collectively called macromechanics. For an isolated system containing PKE and NKE bodies, both total momentum and total kinetic energy are conserved. A dark ideal gas produces a negative pressure, and its microscopic mechanism is disclosed. Two-body problems, where at least one is of NKE, are investigated for both macroscopic bodies and microscopic particles. A NKE proton and a PKE electron can compose a stable PKE atom, and its spectral lines have blue shifts compared to a hydrogen atom. The author suggests to seek for these spectral lines in celestial spectra. This provides a way to seek for dark particles in space. Elastic collisions between a body and a dark body are researched.