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Determining the refractive index of shocked [100] lithium fluoride to the limit of transmissibility

机译:将冲击的[100]氟化锂的折射率确定为透射率的极限

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摘要

Lithium fluoride (LiF) is a common window material used in shock- and ramp-compression experiments because it displays a host of positive attributes in these applications. Most commonly, it is used to maintain stress at an interface and velocimetry techniques are used to record the particle velocity at that interface. In this application, LiF remains transparent to stresses up to 200 GPa. In this stress range, LiF has an elastic-plastic response with a very low (<0.5 GPa) elastic precursor and exhibits no known solid-solid phase transformations. However, because the density dependence of the refractive index of LiF does not follow the Gladstone-Dale relation, the measured particle velocity at this interface is not the true particle velocity and must be corrected. For that reason, the measured velocity is often referred to as the apparent velocity in these types of experiments. In this article, we describe a series of shock-compression experiments that have been performed to determine the refractive index of LiF at the two most commonly used wavelengths (532 nm and 1550 nm) between 35 and 200 GPa to high precision. A modified form of the Gladstone-Dale relation was found to work best to fit the determined values of refractive index. In addition, we provide a direct relationship between the apparent and true particle velocity to correct experimentally obtained wave profiles by others using these velocimetry techniques.
机译:氟化锂(LiF)是冲击和斜坡压缩实验中常用的窗户材料,因为它在这些应用中显示出许多积极的特性。最常见的是,它用于维持界面处的应力,测速技术用于记录该界面处的粒子速度。在此应用中,LiF对高达200 GPa的应力保持透明。在此应力范围内,LiF的弹塑性响应具有非常低的(<0.5PaGPa)弹性前体,并且没有已知的固-固相变。但是,由于LiF折射率的密度依赖性不遵循Gladstone-Dale关系,因此在该界面处测得的粒子速度不是真实的粒子速度,必须进行校正。因此,在这些类型的实验中,测得的速度通常称为视在速度。在本文中,我们描述了一系列的震动压缩实验,这些实验已被用来确定LiF在35至200PaGPa之间的两个最常用波长(532 35nm和1550 nm)上的折射率,以达到高精度。发现修改形式的Gladstone-Dale关系最适合于确定的折射率值。此外,我们提供了视在和真实粒子速度之间的直接关系,以使用这些测速技术来校正其他人通过实验获得的波剖面。

著录项

  • 来源
    《Journal of Applied Physics》 |2014年第3期|1-12|共12页
  • 作者单位

    Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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