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Theory of infrared absorption and material failure in crystals containing inclusions

机译:包含夹杂物的晶体中红外吸收和材料破坏的理论

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摘要

Two effects of inclusions in or on the surface of infrared‐transmitting materials are to increase the average value of the optical absorption coefficient β and to cause localized heating that could lead to material failure at high‐power levels. Volume fractions as low as 10-7-10-8 of such inclusions can give rise to a value of the optical absorption coefficient β of 10-4cm-1, a typical value of current interest. For various types of inclusions the frequency dependence of β ranges from increasing as ω2, to independent of ω, to exponentially decreasing with ω. The temperature dependence ranges from independent of T to increasing as Tp in the high‐temperature limit, where p≃2–4 typically. Simple expressions for the absorption cross section are derived for various cases of practical interest. The cross sections are used to derive expressions for β for the four cases of large inclusions of strong and weak absorbers and of small inclusions of dielectric and metallic particles. The material failure resulting from local heating of inclusions is a far greater problem in high‐intensity short‐pulse systems than in low‐intensity long‐pulse or cw systems having the same average intensity. Microsecond pulses with energy densities as low as a few joules per square centimeter can cause material failure.
机译:红外传输材料中或表面上的夹杂物的两个作用是增加光吸收系数β的平均值,并引起局部加热,这可能导致高功率水平下的材料失效。此类夹杂物的体积分数低至10-7-10-8可以产生10-4cm-1的光吸收系数β值,这是当前关注的典型值。对于各种类型的夹杂物,β的频率依赖性范围从随着ω2的增加到与ω无关,到随ω呈指数下降。温度的依赖性范围从独立于T到高温极限内随Tp的增加而增加,通常为p≃2-4。对于实际感兴趣的各种情况,得出了吸收截面的简单表达式。横截面用于导出强和弱吸收体的大夹杂物以及介电和金属颗粒的小夹杂物的四种情况的β表达式。与平均强度相同的低强度长脉冲或连续波系统相比,高强度短脉冲系统中夹杂物局部加热导致的材料故障要严重得多。能量密度低至每平方厘米几焦耳的微秒脉冲会导致材料故障。

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  • 来源
    《Journal of Applied Physics 》 |1973年第7期| 共8页
  • 作者

    Sparks M.; Duthler C. J.;

  • 作者单位

    Xonics, Incorporated, Van Nuys, California 91406;

  • 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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