Wu Zhen, Wang Xinke, Sun Wenfeng, Feng Shengfei, Han Peng, Ye Jiasheng, Yu Yue, Zhang Yan
Opt Express. 2018 Jan 22;26(2):1506-1520. doi: 10.1364/OE.26.001506.
A vortex Bessel beam combines the merits of an optical vortex and a Bessel beam, including a spiral wave front and a non-diffractive feature, which has immense application potentials in optical trapping, optical fabrication, optical communications, and so on. Here, linearly and circularly polarized vortex Bessel beams in the terahertz (THz) frequency range are generated by utilizing a THz quarter wave plate, a spiral phase plate, and Teflon axicons with different opening angles. Taking advantage of a THz focal-plane imaging system, vectorial diffraction properties of the THz vortex Bessel beams are comprehensively characterized and discussed, including the transverse (Ex, Ey) and longitudinal (Ez) polarization components. The experimental phenomena are accurately simulated by adopting the vectorial Rayleigh diffraction integral. By varying the opening angle of the axicon, the characteristic parameters of these THz vortex Bessel beams are exhibited and compared, including the light spot size, the diffraction-free range, and the phase evolution process. This work provides the precise experimental and theoretical bases for the comprehension and application of a THz vortex Bessel beam.
涡旋贝塞尔光束兼具光学涡旋和贝塞尔光束的优点,包括螺旋波前和无衍射特性,在光镊、光学制造、光通信等领域具有巨大的应用潜力。在此,利用太赫兹四分之一波片、螺旋相位板和不同开口角度的聚四氟乙烯轴棱锥,产生了太赫兹(THz)频率范围内的线偏振和圆偏振涡旋贝塞尔光束。借助太赫兹焦平面成像系统,对太赫兹涡旋贝塞尔光束的矢量衍射特性进行了全面表征和讨论,包括横向(Ex、Ey)和纵向(Ez)偏振分量。采用矢量瑞利衍射积分对实验现象进行了精确模拟。通过改变轴棱锥的开口角度,展示并比较了这些太赫兹涡旋贝塞尔光束的特征参数,包括光斑尺寸、无衍射范围和相位演化过程。这项工作为太赫兹涡旋贝塞尔光束的理解和应用提供了精确的实验和理论基础。