论文标题
量子波动的电动力起源
On an electrodynamic origin of quantum fluctuations
论文作者
论文摘要
在目前的工作中,我们使用liénard-Wiechert潜力表明,当电磁电荷的扩展粒子与其静止状态扰动时,电磁电荷的扩展粒子经历了非常剧烈的波动。粒子不同电荷部分之间库仑和辐射场的反馈相互作用使运动均匀。结果,我们表明辐射场和辐射反应既会产生耗散和抗体作用,从而导致自振荡。最后,我们得出了自潜能的一系列扩展,除了休息和动能外,还产生了新的贡献,该贡献与量子电位共享特征。这种潜力的新颖性是它产生了洛伦兹组的对称破裂,从而触发了电动力体的振荡运动。我们建议这种对自我能量的贡献可能是经典电磁和量子力学之间的桥梁。
In the present work we use the Liénard-Wiechert potential to show that very violent fluctuations are experienced by an electromagnetic charged extended particle when it is perturbed from its rest state. The feedback interaction of Coulombian and radiative fields among the different charged parts of the particle makes uniform motion unstable. As a consequence, we show that radiative fields and radiation reaction produce both dissipative and antidamping effects, leading to self-oscillations. Finally, we derive a series expansion of the self-potential, which in addition to rest and kinetic energy, gives rise to a new contribution that shares features with the quantum potential. The novelty of this potential is that it produces a symmetry breaking of the Lorentz group, triggering the oscillatory motion of the electrodynamic body. We propose that this contribution to self-energy might serve as a bridge between classical electromagnetism and quantum mechanics.