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Asymmetric multiple quantum well light sources for optical coherence tomography.

机译:用于光学相干断层扫描的非对称多量子阱光源。

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摘要

Asymmetric multiple quantum wells (AMQWs) can provide broad and flat gain spectra Broadly tunable diode lasers can be realized with AMQW active regions and without the need for antireflection coatings on cleaved facets.;The features of broad and flat gain spectra of AMQWs also make AMQWs ideal candidates for broad spectral width superluminescent diodes (SLDs). 1300 nm AMQW InGaAsP/InP SLDs were designed and fabricated for application to time domain OCT. For the design of the active region, it was found by simulation of gain and the comparison of two growths that the transition carrier density (TCD) has to be reasonably high to achieve high power SLDs. A transfer matrix method was used to solve for the modes of planar optical waveguides with arbitrary layers and the thicknesses of these layers were optimized with a Marquardt nonlinear fitting method. With the optimization of the optical waveguide and with AMQWs with high TCDs, the output power of SLDs could reach 2 mW with > 90 nm spectral width. It is shown by time domain OCT measurements that the depth resolution of the OCT measurements could reach 7.85 mum in air with double section SLDs.;Two dimensional OCT images of a glass cover slip were built with the imageSC function in Matlab(TM). Image enhancement with blind/not-blind deconvolution was performed based on the measured point spread function (PSF) of the OCT setup. A Richardson-Lucy algorithm was used as the blind deconvolution method and a not-blind version of a Jansson-Van Cittert method was used.;This thesis reports the application of AMQW broadly tunable lasers with uncoated facets for Fourier domain and synthesized optical coherence tomography (OCT). A depth resolution of 13 mum in air was obtained with a test bed OCT system that used diffractive optical elements, short external cavities, and AMQW InGaAsP/InP broadly tunable lasers as the light sources for the Fourier domain and the synthesized OCT measurements. The centre wavelengths of the broadly tunable sources were 1550 nm and the tunable ranges were ≤ 117 nm.
机译:非对称多量子阱(AMQW)可以提供宽而平坦的增益谱可以在AMQW有源区域实现宽可调二极管激光器,而无需在劈开面上刻有抗反射涂层。; AMQW的宽而平坦的增益谱特征也使AMQW成为可能宽光谱宽度超发光二极管(SLD)的理想候选产品。设计并制造了1300 nm AMQW InGaAsP / InP SLD,用于时域OCT。对于有源区的设计,通过增益仿真和两次增长的比较发现,过渡载流子密度(TCD)必须合理地高才能实现高功率SLD。使用转移矩阵法求解具有任意层的平面光波导的模式,并使用Marquardt非线性拟合方法优化这些层的厚度。通过优化光波导以及具有高TCD的AMQW,SLD的输出功率可以达到2 mW,且光谱宽度> 90 nm。通过时域OCT测量显示,使用双截面SLD时,OCT测量的深度分辨率在空气中可以达到7.85 mum。在Matlab™中使用imageSC功能构建了玻璃盖玻片的二维OCT图像。基于OCT设置的测得点扩展函数(PSF),使用盲/非盲反卷积进行图像增强。使用Richardson-Lucy算法作为盲解卷积方法,并使用非盲版的Jansson-Van Cittert方法。 (OCT)。通过使用衍射光学元件,短外腔以及AMQW InGaAsP / InP宽可调激光器作为傅里叶域和合成OCT测量的光源的测试台OCT系统,可获得13 m的空气深度分辨率。广泛可调光源的中心波长为1550 nm,可调范围≤117 nm。

著录项

  • 作者

    Wang, Jingcong.;

  • 作者单位

    McMaster University (Canada).;

  • 授予单位 McMaster University (Canada).;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 93 p.
  • 总页数 93
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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