Cao Zhaolou, Zhai Chunjie, Xu Shanshan, Chen Yunyun
J Opt Soc Am A Opt Image Sci Vis. 2018 Feb 1;35(2):230-235. doi: 10.1364/JOSAA.35.000230.
Bessel beams have been increasingly used for their advantages of non-diffraction and long focal depth. In this paper, we studied the propagation of on-axis and off-axis Bessel beams in a gradient-index medium. By expressing a Bessel beam in integral form, the analytical expression of an on-axis, decentered, and tilted Bessel beam through a paraxial optical system is derived with the ABCD matrix method and Collins diffraction integral formula. Main lobe size and trajectory of the zeroth- and second-order Bessel beam are obtained, demonstrating that the Bessel beam is focused by the gradient-index medium and its main lobe trajectory is exactly the same as the corresponding geometrical ray for both the decentered and tilted Bessel beam. Effects of beam apodization are finally studied by the Fourier beam propagation method, showing that the side lobes of the Bessel beam vanish when the beam is focused inside the medium as only part of the beam enters the lens.
贝塞尔光束因其无衍射和长焦距深度的优点而得到越来越广泛的应用。在本文中,我们研究了轴上和离轴贝塞尔光束在梯度折射率介质中的传播。通过将贝塞尔光束表示为积分形式,利用ABCD矩阵法和柯林斯衍射积分公式推导了轴上、偏心和倾斜贝塞尔光束通过傍轴光学系统的解析表达式。得到了零阶和二阶贝塞尔光束的主瓣尺寸和轨迹,表明贝塞尔光束在梯度折射率介质中聚焦,并且对于偏心和倾斜贝塞尔光束,其主瓣轨迹与相应的几何光线完全相同。最后用傅里叶光束传播方法研究了光束切趾的影响,结果表明,当光束在介质内部聚焦时,由于只有部分光束进入透镜,贝塞尔光束的旁瓣消失。