论文标题

物质和宇宙扩展的进化量化

Evolutionary quantization of matter and Universe expansion

论文作者

Sandler, Uziel

论文摘要

在本文中,我们考虑了直接遵循系统状态空间的因果原理和拓扑的经典和量子力学的概括。在广义力学中,哈密顿量/施罗辛格方程保持不变,但是哈密顿量可能取决于动作及其规范共轭变量作为其他动力学变量。量子力学的这种扩展表明,物质的量化可能是一个进化过程,在遥远的将来,即使是庞大的物体也可能完全成为没有定义明确的轨迹和形状的量子对象。在经典限制中,哈密顿量相对于动作的第一个近似解释了宇宙的加速膨胀,哈勃定律的加速扩张,具有非旋转速度旋转曲线的螺旋星系的形成,以及物质和反物质的分布之间的不对称。该理论预测,我们的开放宇宙可能已经扩展了史前的史无前例,并在一系列封闭的前体宇宙之前。

In this paper we consider generalization of classical and quantum mechanics that directly follows from the causality principle and topology of a system state space. In generalized mechanics, the Hamiltonian/Schrodinger equations remain the same, but the Hamiltonian may depend on the action and its canonically conjugated variables as additional dynamical variables. This extension of quantum mechanics indicates that the quantization of matter could be an evolutionary process, and in the distant future, even massive bodies may become entirely quantum objects without well-defined trajectories and shapes. In the classical limit, the first approximation of the Hamiltonian with respect to the action explains the accelerated expansion of the Universe, Hubble law, formation of spiral galaxies with a non-Kepler curve of rotation velocity, and asymmetry between distributions of matter and antimatter. This theory predicts that our open universe could have extended pre-history and be preceded by a long set of closed precursor universes.

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