Wu Zhen, Wang Xinke, Sun Wenfeng, Feng Shengfei, Han Peng, Ye Jiasheng, Zhang Yan
Beijing Key Laboratory of Metamaterials and Devices, Beijing Advanced Innovation Center for Imaging Technology, Key Laboratory of Terahertz Optoelectronics, Ministry of Education, and Department of Physics, Capital Normal University, Beijing, 100048, P.R. China.
Sci Rep. 2017 Oct 24;7(1):13929. doi: 10.1038/s41598-017-12524-y.
As a kind of special beams, Bessel beams are always a research hot spot in optics due to its non-diffractive and self-healing properties. Here, zero-order terahertz (THz) Bessel beams with linear and circular polarizations are generated by using a THz quarter wave plate and Teflon axicons with different opening angles. By applying a THz digital holographic imaging system, the evolutions of the transverse (E , E ) and longitudinal (E ) electric fields are coherently measured and analyzed during the propagation processes of the THz Bessel beams. The vectorial Rayleigh diffraction integral is used to accurately reproduce the amplitude, phase, and non-diffractive feature of each polarization component for the THz Bessel beams. With varying opening angles of the axicons, the focal spots, diffraction-free ranges, and Gouy phase shifts of the THz Bessel beams are compared and discussed. The experiment and simulation results provide a comprehensive view for exactly understanding peculiar features of THz Bessel beams.
作为一种特殊的光束,贝塞尔光束因其非衍射和自愈特性一直是光学领域的研究热点。在此,通过使用太赫兹四分之一波片和具有不同开口角度的聚四氟乙烯轴棱锥产生了具有线性和圆偏振的零阶太赫兹(THz)贝塞尔光束。通过应用太赫兹数字全息成像系统,在太赫兹贝塞尔光束的传播过程中对横向(E ,E )和纵向(E )电场的演化进行了相干测量和分析。矢量瑞利衍射积分用于精确再现太赫兹贝塞尔光束各偏振分量的振幅、相位和非衍射特性。随着轴棱锥开口角度的变化,对太赫兹贝塞尔光束的焦点、无衍射范围和古依相移进行了比较和讨论。实验和模拟结果为准确理解太赫兹贝塞尔光束的独特特性提供了全面的视角。