Martelli Paolo, Tacca Matteo, Gatto Alberto, Moneta Giorgio, Martinelli Mario
Politecnico di Milano, Dip. di Elettronica e Informazione, PoliCom, Via G. Colombo 81, 20133 Milano, Italy.
Opt Express. 2010 Mar 29;18(7):7108-20. doi: 10.1364/OE.18.007108.
The results of a theoretical and experimental investigation of the Gouy effect in Bessel beams are presented. We point out that the peculiar feature of the Bessel beams of being nondiffracting is related to the accumulation of an extra axial phase shift (i.e., the Gouy phase shift) linearly dependent on the propagation distance. The constant spatial rate of variation of the Gouy phase shift is independent of the order of the Bessel beam, while it is a growing function of the transverse component of the angular spectrum wave-vectors, originated by the transverse confinement of the beam. A free-space Mach-Zehnder interferometer has been set-up for measuring the transverse intensity distribution of the interference between holographically-produced finite-aperture Bessel beams of order from zero up to three and a reference Gaussian beam, at a wavelength of 633 nm. The interference patterns have been registered for different propagation distances and show a spatial periodicity, in agreement with the expected period due to the linear increase of the Gouy phase shift of the realized Bessel beams.
本文给出了贝塞尔光束中 Gouy 效应的理论和实验研究结果。我们指出,贝塞尔光束非衍射的独特特性与一个额外的轴向相移(即 Gouy 相移)的积累有关,该相移与传播距离呈线性相关。Gouy 相移的恒定空间变化率与贝塞尔光束的阶数无关,而它是角谱波矢横向分量的增函数,这是由光束的横向限制所引起的。已搭建了一个自由空间马赫 - 曾德尔干涉仪,用于测量波长为 633 nm 时,全息产生的零阶到三阶有限孔径贝塞尔光束与参考高斯光束之间干涉的横向强度分布。已记录了不同传播距离下的干涉图样,这些图样显示出空间周期性,与所实现的贝塞尔光束 Gouy 相移线性增加所预期的周期一致。