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Optical spectroscopic characterizations of laser irradiated olivine grains

机译:激光辐照橄榄石晶粒的光谱特征

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Context. Visible and near-infrared spectra of asteroids are known to be susceptible to nanophase irons produced by space weathering processes, thus making mineral identifications difficult. Mid-infrared spectroscopy may retain more mineral features owing to its lattice vibrational nature. Aims. We investigate the structure and reflectance spectral feature changes of olivine grains before and after simulated space weathering. Methods. We irradiate olivine grains by using pulsed laser to simulate varying degrees of micrometeorite bombardments. Reflectance measurements from 0.5 to 25 μm and radiative transfer calculations were carried out in order to compare them with each other. Results. Both the experimental simulations and modeling results indicate that the mid-infrared spectral features of olivine grains can survive the intense irradiations. Although the Christansen Feature is slightly shifted to longer wavelength, major vibrational bands remain essentially unchanged, because the lattice structure is quite immune to even the strongest irradiations, as revealed by both the X-ray diffraction and Raman scattering measurements. Conclusions. Mid-infrared spectroscopy is much more immune to productions of nanophase irons and amorphous materials and thus may be used more reliably in remote detections of minerals on asteroid surfaces.
机译:上下文。已知小行星的可见和近红外光谱容易受到空间风化过程产生的纳米相铁的影响,因此使矿物鉴定变得困难。中红外光谱由于其晶格振动性质而可能保留更多的矿物特征。目的我们研究了模拟空间风化前后橄榄石晶粒的结构和反射光谱特征的变化。方法。我们通过使用脉冲激光照射橄榄石来模拟不同程度的微陨石轰击。为了将它们相互比较,进行了0.5至25μm的反射率测量和辐射传递计算。结果。实验仿真和建模结果均表明,橄榄石晶粒的中红外光谱特征可以经受强辐射。尽管克里斯坦森特征稍微移到了更长的波长,但主要的振动带基本上保持不变,因为如X射线衍射和拉曼散射测量所显示的,即使是最强的辐照,晶格结构也完全不受干扰。结论。中红外光谱对纳米相铁和非晶态材料的产生具有更大的免疫力,因此可以更可靠地用于小行星表面矿物的远程检测。

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