论文标题
打破扭曲障碍:爱因斯坦 - 马克斯韦 - 血浆理论中的超快速孤子
Breaking the Warp Barrier: Hyper-Fast Solitons in Einstein-Maxwell-Plasma Theory
论文作者
论文摘要
足够的时空中的孤子能够以超亮速度运输类似时间的观察者,长期以来一直与违反一般相对性的弱,强和优势的能量条件有关。这些孤子所需的负能源必须通过能源密集型不确定性原理过程创建,因为在粒子物理学中没有这种经典来源。本文通过构建一类能够静脉运动并通过纯粹的正能密度来源的孤子溶液来克服这一障碍。孤子还显示能够从导电等离子体和经典电磁场的应力能源中源。这是由已知且熟悉的来源产生的超快速孤子的第一个例子,重新开放了植根于常规物理学的超亮型机制的讨论。
Solitons in space--time capable of transporting time-like observers at superluminal speeds have long been tied to violations of the weak, strong, and dominant energy conditions of general relativity. The negative-energy sources required for these solitons must be created through energy-intensive uncertainty principle processes as no such classical source is known in particle physics. This paper overcomes this barrier by constructing a class of soliton solutions that are capable of superluminal motion and sourced by purely positive energy densities. The solitons are also shown to be capable of being sourced from the stress-energy of a conducting plasma and classical electromagnetic fields. This is the first example of hyper-fast solitons resulting from known and familiar sources, reopening the discussion of superluminal mechanisms rooted in conventional physics.