首页> 外文会议>Emerging digital micromirror device based systems and applications VIII >Generation of vortex circular Airy beam through binary amplitude digital hologram
【24h】

Generation of vortex circular Airy beam through binary amplitude digital hologram

机译:通过二进制幅度数字全息图产生涡旋圆形艾里光束

获取原文
获取原文并翻译 | 示例

摘要

Airy beam is a kind of wavepacket existing in the form of photons, electrons, and plasmonics. Well known as diffraction-free beam, optical Airy beam tends to accelerate in transverse space with a parabolic trajectory, and exhibits self-healing property when partially blocked. Those properties have attracted a great deal of research interests and applications. Circular Airy beam, exhibiting cylindrically symmetric intensity pattern and abruptly autofocusing characteristics in the linear media, is a variant of Airy-like wave. Optical vortex, on the other hand, is a kind of phase singularity. We present to shape the autofocusing Airy beam with a vortex phase structure, which was realized through the binary amplitude modulation with a digital micromirror device (DMD). Each mirror on the DMD could be electronically addressed to situate at either of the two solid positional states corresponding to on and off. Shaping the light into a specific mode requires the calculation of the amplitude pattern for display on the DMD. By reshaping individual DMD pixels into giant pixels, the complex field of the vortex Airy beam could be encoded with a super-pixel method. The propagation property of the vortex Airy beam was investigated through numerical simulation for different topological charges. Furthermore, the propagation characteristics of this beam in free space were verified and discussed through the experiments. We anticipate that the proposed vortex Airy beam in particle trapping, biological field and optical communications. This method with DMD can also be used to generate other beams with different characteristics.
机译:通风束是一种以光子,电子和等离激元形式存在的波包。众所周知的无衍射光束,光学艾里光束倾向于在具有抛物线形轨迹的横向空间中加速,并在部分被阻挡时表现出自愈特性。这些特性吸引了许多研究兴趣和应用。圆形艾里光束在线性介质中表现出圆柱对称的强度模式和突然的自动聚焦特性,是艾里波的一种变体。另一方面,旋涡是一种相位奇点。我们目前使用涡旋相位结构对自动聚焦的艾里光束进行整形,这是通过使用数字微镜设备(DMD)进行二进制幅度调制来实现的。可以对DMD上的每个反射镜进行电子寻址,以使其处于对应于打开和关闭的两个固态位置中的任何一个。将光整形为特定模式需要计算振幅模式以显示在DMD上。通过将单个DMD像素重塑为巨型像素,涡旋艾里光束的复杂场可以用超像素方法进行编码。通过数值模拟研究了不同拓扑电荷下艾里涡旋涡流的传播特性。此外,通过实验验证并讨论了该光束在自由空间中的传播特性。我们预计拟议中的涡旋艾里光束在粒子捕获,生物场和光通信中的应用。这种带有DMD的方法也可以用于生成其他具有不同特性的光束。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号