National Institute of Physics, University of the Philippines Diliman, Quezon City, Diliman 1101, Philippines.
Sci Rep. 2016 May 27;6:26842. doi: 10.1038/srep26842.
That the speed of light in free space c is constant has been a pillar of modern physics since the derivation of Maxwell and in Einstein's postulate in special relativity. This has been a basic assumption in light's various applications. However, a physical beam of light has a finite extent such that even in free space it is by nature dispersive. The field confinement changes its wavevector, hence, altering the light's group velocity vg. Here, we report the subluminal vg and consequently the dispersion in free space of Laguerre-Gauss (LG) beam, a beam known to carry orbital angular momentum. The vg of LG beam, calculated in the paraxial regime, is observed to be inversely proportional to the beam's divergence θ0, the orbital order ℓ and the radial order p. LG beams of higher orders travel relatively slower than that of lower orders. As a consequence, LG beams of different orders separate in the temporal domain along propagation. This is an added effect to the dispersion due to field confinement. Our results are useful for treating information embedded in LG beams from astronomical sources and/or data transmission in free space.
自麦克斯韦方程组的推导出和爱因斯坦在狭义相对论中的假设以来,真空中的光速 c 不变一直是现代物理学的基石。这是光的各种应用的基本假设。然而,光具有有限的传播速度,因此即使在真空中,光也具有固有色散性。场限制改变了其波矢,从而改变了光的群速度 vg。在这里,我们报告了亚光速 vg,以及由此产生的自由空间中的拉盖尔-高斯(LG)光束的色散,LG 光束是一种已知携带轨道角动量的光束。在傍轴条件下计算的 LG 光束的 vg 反比于光束的发散角θ0、轨道阶数 ℓ 和径向阶数 p。高阶 LG 光束的传播速度相对较低阶的要慢。因此,不同阶数的 LG 光束在传播过程中会在时间域上分离。这是由于场限制引起的色散的附加效应。我们的结果对于处理来自天文源的 LG 光束中嵌入的信息和/或自由空间中的数据传输非常有用。