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Toward a new mechanics based on discontinuous quantum motion: Why objects travel in straight lines and time moves in one direction

机译:寻求一种基于不连续量子运动的新机制:为什么物体沿直线运动而时间沿一个方向运动

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A new mechanics is developed, extending analytical mechanics by drawing parallels with statistical mechanics. The approach developed replaces the concept of a many-particle system in favor of a "many-observer system" with respect to a single particle in an isotropic and homogeneous universe. Motion is described using the discontinuous quantum motion hypothesis: Space and time changes occur in an alternate and independent fashion. A configuration space is constructed consisting of relative displacements between the particle in question and each "observer." The results include a description of mass and momentum (analogous to state functions), and the derivation of Einstein's relativistic energy equation (analogous to an equation of state for an individual particle based on its displacement relationships with respect to all other observers). Assumptions of three spatial dimensions and rectilinear motion will not be a priori but shown as emergent. If rectilinear motion is emergent, then I suggest that the arrow of time could be based at a microscopic level. Parallels with Bohmian mechanics are discussed.
机译:开发了一种新的力学,通过与统计力学相提并论来扩展分析力学。对于各向同性和均匀宇宙中的单个粒子,开发的方法取代了多粒子系统的概念,转而支持“多观察者系统”。运动是使用不连续量子运动假设来描述的:时空变化以交替和独立的方式发生。构造空间由相关粒子与每个“观察者”之间的相对位移组成。结果包括质量和动量的描述(类似于状态函数),以及爱因斯坦的相对论能量方程式的推导(类似于单个粒子相对于所有其他观察者的位移关系,类似于状态方程)。三个空间维度和直线运动的假设不是先验的,而是显示为紧急情况。如果出现直线运动,那么我建议时间的箭头可以基于微观水平。讨论了与波姆力学的平行关系。

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