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Calibration of CRISM/MRO apparent wavelengths using synthetic data

机译:使用合成数据校准Crism / MRO表观波长

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The Compact Reconnaissance Instrument Spectrometer for Mars (CRISM) is a hyperspectral imager that is affected by optical distortions onto its spatial-spectral detector matrix that is also non-uniform in responsivity. In particular, central wavelength of the spectral response varies along the spatial dimension of the array, thus giving rise to artifacts in the data. An accurate knowledge of the point spread function (PSF) of each individual detector of the matrix is fundamental to correct for these effects. In this work, CRISM images from the poles of Mars are noticed to suffer from wavelength shifts that do not agree with pre-launch calibration data. The source of this instrumental anomaly is identified as a faulty flat fielding in the CRISM data pipeline and a method that is based on synthetic spectra is introduced for wavelength calibration. In the experiments, a polar CRISM image is calibrated by estimating its apparent wavelengths. Results are finally compared with the same test image after undergoing a prototype calibration that does not present the wavelength anomaly.
机译:MARS(CRISC)的紧凑型侦察仪器光谱仪是一种高光谱成像器,其受光学畸变的影响在其空间光谱检测器矩阵上也是不均匀的响应性。特别地,光谱响应的中心波长沿阵列的空间尺寸变化,从而产生数据中的伪像。对矩阵的每个单独检测器的点传播功能(PSF)的准确知识是纠正这些效果的基础。在这项工作中,来自火星极点的Crism图像被注意到不同意预启动校准数据的波长移位。该乐器异常的来源被识别为Crism数据流水线中的故障平面,并引入了基于合成光谱的方法,用于波长校准。在实验中,通过估计其表观波长来校准极性Crism图像。在经历未呈现波长异常的原型校准之后,最终将结果与相同的测试图像进​​行比较。

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