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首页> 外文期刊>Journal of Applied Physics >Achieving accuracy in spectroradiometric measurements of temperature in the laser-heated diamond anvil cell: Diamond is an optical component
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Achieving accuracy in spectroradiometric measurements of temperature in the laser-heated diamond anvil cell: Diamond is an optical component

机译:在激光加热的金刚石砧盒中以光谱法测量温度时达到精度:金刚石是一种光学组件

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摘要

We present theoretical calculations of the optical effects of the diamond anvil on the accuracy of spectroradiometric temperature measurements made with the laser-heated diamond anvil cell. Considering the dual effects of wavelength-dependent index of refraction and wavelength-dependent absorbance, we find that systematic errors can be minimized by using low numerical aperture optics and by characterizing wavelength-dependent absorbance for each anvil as part of system response measurement. Quantitatively, failure to observe these guidelines can lead to systematic errors of hundreds of degrees. This physical effect may be one part of the origin of the discrepancy of experimental measurements of the melting temperature of iron at megabar pressures.
机译:我们介绍了金刚石砧对由激光加热的金刚石砧池进行的光谱辐射温度测量精度的光学影响的理论计算。考虑到波长依赖的折射率和波长依赖的吸光度的双重影响,我们发现可以通过使用低数值孔径光学器件和表征每个砧座的波长依赖的吸光度作为系统响应测量的一部分来最大程度地减少系统误差。从数量上讲,不遵守这些准则会导致数百度的系统误差。这种物理效应可能是在兆巴压力下铁的熔化温度实验测量值差异的部分原因之一。

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