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Design and evaluation of a THz time domain imaging system using standard optical design software

机译:使用标准光学设计软件设计和评估THz时域成像系统

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摘要

A terahertz (THz) time domain imaging system is analyzed and optimized with standard optical design software (ZEMAX). Special requirements to the illumination optics and imaging optics are presented. In the optimized system, off-axis parabolic mirrors and lenses are combined. The system has a numerical aperture of 0.4 and is diffraction limited for field points up to 4 mm and wavelengths down to 750 (mu)m. ZEONEX is used as the lens material. Higher aspherical coefficients are used for correction of spherical aberration and reduction of lens thickness. The lenses were manufactured by ultraprecision machining. For optimization of the system, ray tracing and wave-optical methods were combined. We show how the ZEMAX Gaussian beam analysis tool can be used to evaluate illumination optics. The resolution of the THz system was tested with a wire and a slit target, line gratings of different period, and a Siemens star. The behavior of the temporal line spread function can be modeled with the polychromatic coherent line spread function feature in ZEMAX. The spectral and temporal resolutions of the line gratings are compared with the respective modulation transfer function of ZEMAX. For maximum resolution, the system has to be diffraction limited down to the smallest wavelength of the spectrum of the THz pulse. Then, the resolution on time domain analysis of the pulse maximum can be estimated with the spectral resolution of the center of gravity wavelength. The system resolution near the optical axis on time domain analysis of the pulse maximum is 1 line pair/mm with an intensity contrast of 0.22. The Siemens star is used for estimation of the resolution of the whole system. An eight channel electro-optic sampling system was used for detection. The resolution on time domain analysis of the pulse maximum of all eight channels could be determined with the Siemens star to be 0.7 line pairs/mm.
机译:使用标准光学设计软件(ZEMAX)对太赫兹(THz)时域成像系统进行了分析和优化。提出了对照明光学和成像光学的特殊要求。在优化的系统中,离轴抛物面镜和透镜组合在一起。该系统的数值孔径为0.4,并且对于最大4 mm的场点和最小750μm的波长受衍射限制。 ZEONEX被用作镜片材料。较高的非球面系数用于校正球差和减小镜片厚度。镜片是通过超精密加工制造的。为了优化系统,将光线跟踪和波光学方法相结合。我们将展示ZEMAX高斯光束分析工具如何用于评估照明光学器件。用导线和狭缝靶,不同周期的线光栅和西门子星测试了THz系统的分辨率。可以使用ZEMAX中的多色相干线扩展函数功能对时间线扩展函数的行为进行建模。将线光栅的光谱和时间分辨率与ZEMAX的相应调制传递函数进行比较。为了获得最大的分辨率,必须将系统衍射限制到THz脉冲频谱的最小波长。然后,可以利用重心波长的光谱分辨率估算脉冲最大值的时域分析分辨率。在最大脉冲的时域分析上,光轴附近的系统分辨率为1线对/ mm,强度对比度为0.22。西门子星用于估计整个系统的分辨率。使用八通道电光采样系统进行检测。可以用西门子星确定所有八个通道的最大脉冲的时域分析分辨率为0.7线对/ mm。

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