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Tachyons in Robertson-Walker cosmology

机译:罗伯逊-沃克宇宙学中的快球

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摘要

Superluminal signal transfer is studied in the context of a preferred cosmic frame of reference provided by the galactic background. The receding galaxies constitute a frame of absolute rest, in which the energy of tachyons (faster-than-light particles) is unambiguously defined as a positive quantity. The causality violation which arises in relativistic tachyonic theories is avoided. We define interactions of particles and tachyons in terms of elastic head-on collisions and energy-momentum conservation. To compare the theory developed with existing relativistic theories, tachyons are studied at first in a Minkowski universe, and the causality of a superluminal communication process is analyzed. Then we discuss the dynamics of tachyons in a Robertson-Walker universe with linear expansion factor and negatively curved three-space. We point out the consequences that the space expansion has on tachyons, like a finite life-time in the frame of absolute rest, and multiple images in the rest frames of moving observers. [References: 14]
机译:在银河背景提供的首选宇宙参考系的背景下研究了超光速信号传输。后退的星系构成一个绝对静止的框架,其中速子(快于光的粒子)的能量被明确定义为正量。避免了相对论性速动理论中出现的因果冲突。我们根据弹性的正面碰撞和能量动量守恒来定义粒子和速子的相互作用。为了将发展起来的理论与现有的相对论相比较,首先在Minkowski宇宙中研究速子,并分析了超光速传播过程的因果关系。然后,我们讨论了具有线性膨胀因子和负弯曲三空间的Robertson-Walker宇宙中速球的动力学。我们指出了空间扩展对快球的影响,例如绝对静止帧中的有限生命周期,以及静止观察者静止帧中的多个图像。 [参考:14]

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