首页> 外文学位 >Grating-based real-time smart optics for biomedicine and communications.
【24h】

Grating-based real-time smart optics for biomedicine and communications.

机译:基于光栅的实时智能光学器件,用于生物医学和通信。

获取原文
获取原文并翻译 | 示例

摘要

Novel photonic systems are proposed and experimentally validated using active as well as passive wavelength dispersive optical devices in unique fashions to solve important system level application problems in biomedicine and laser communications.; Specifically for the first time are proposed, high dynamic range variable optical attenuators (VOAs) using bulk acousto-optics (AO). These AO-based architectures have excellent characteristics such as high laser damage threshold (e.g., 1 Watt CW laser power operations), large (e.g., >40 dB) dynamic range, and microsecond domain attenuation setting speed. The demonstrated architectures show potentials for compact, low static insertion loss, and low power VOA designs for wavelength division multiplexed (WDM) fiber-optic communication networks and high speed photonic signal processing for optical and radio frequency (RF) radar and electronic warfare (EW).; Acoustic diffraction of light in isotropic media has been manipulated to design and demonstrate on a proof-of-principle basis, the first bulk AO-based optical coherence tomography (OCT) system for high-resolution sub-surface tissue diagnostics. As opposed to the current OCT systems that use mechanical means to generate optical delays, both free-space as well as fiber-optic AO-based OCT systems utilize unique electronically-controlled acousto-optically switched no-moving parts optical delay lines and therefore promise microsecond speed OCT data acquisition rates. The proposed OCT systems also feature high (e.g., >100 MHz) intermediate frequency for low 1/f noise heterodyne detection.; For the first time, two agile laser beam steering schemes that are members of a new beam steering technology known as Multiplexed-Optical Scanner Technology (MOST) are theoretically investigated and experimentally demonstrated. The new scanner technologies are based on wavelength and space manipulations and possess remarkable features such as a no-moving parts fast (e.g., microseconds domain or less) beam switching speed option, large (e.g., several centimeters) scanner apertures for high-resolution scans, and large (e.g., >10°) angular scans in more than one dimensions. These incredible features make these scanners excellent candidates for high-end applications. Specifically discussed and experimentally analyzed for the first time are novel MOST-based systems for agile free-space lasercom links, internal and external cavity scanning biomedical probes, and high-speed optical data handling such as barcode scanners. In addition, a novel low sidelobe wavelength selection filter based on a single bulk crystal acousto-optic tunable filter device is theoretically analyzed and experimentally demonstrated showing its versatility as a scanner control fiber-optic component for interfacing with the proposed wavelength based optical scanners.; In conclusion, this thesis has shown how powerful photonic systems can be realized via novel architectures using active and passive wavelength sensitive optics leading to advanced solutions for the biomedical and laser communications research communities.
机译:提出了新颖的光子系统,并通过有源和无源波长色散光学器件以独特的方式进行了实验验证,以解决生物医学和激光通信中重要的系统级应用问题。特别是首次提出了使用体声光(AO)的高动态范围可变光衰减器(VOA)。这些基于AO的体系结构具有出色的特性,例如高的激光损伤阈值(例如1瓦CW激光功率操作),大的动态范围(例如> 40 dB)和微秒域衰减设置速度。演示的架构显示出用于波分复用(WDM)光纤通信网络的紧凑,低静态插入损耗和低功耗VOA设计以及用于光,射频(RF)雷达和电子战(EW)的高速光子信号处理的潜力)。各向同性介质中的光声衍射已经过设计,并在原理证明的基础上进行了演示,这是第一个用于高分辨率次表面组织诊断的基于大块AO的光学相干断层扫描(OCT)系统。与当前使用机械手段产生光学延迟的OCT系统相反,自由空间以及基于光纤AO的OCT系统都利用独特的电控声光开关式无运动部件光学延迟线,因此有望实现微秒速度的OCT数据采集速率。所提出的OCT系统还具有高(例如> 100MHz)中频,用于低1 /斜体噪声外差检测。第一次,从理论上研究和实验证明了两种敏捷激光束操纵方案,它们是一种称为多路复用光学扫描仪技术(MOST)的新光束操纵技术的组成部分。新的扫描仪技术基于波长和空间操作,并具有非凡的功能,例如不移动部件的速度快(例如,微秒级或更小)的光束切换速度选项,用于高分辨率扫描的大(例如,几厘米)的扫描器孔径,以及超过一个维度的大角度(例如,> 10°)扫描。这些令人难以置信的功能使这些扫描仪成为高端应用程序的理想选择。首次专门讨论和实验分析的是基于MOST的新型系统,用于灵活的自由空间激光通信链路,内部和外部腔体扫描生物医学探针以及高速光学数据处理(例如条形码扫描器)。另外,从理论上分析和实验证明了一种基于单块体晶体声波可调滤光器装置的新型低旁瓣波长选择滤光器,显示了其作为与所提出的基于波长的光学扫描仪接口的扫描器控制光纤组件的多功能性。总而言之,本论文显示了如何使用有源和无源波长敏感光学器件通过新颖的体系结构实现强大的光子系统,从而为生物医学和激光通信研究领域提供先进的解决方案。

著录项

  • 作者

    Yaqoob, Zahid.;

  • 作者单位

    University of Central Florida.;

  • 授予单位 University of Central Florida.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 264 p.
  • 总页数 264
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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