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首页> 外文期刊>Pramana >Simple parametrization of photon mass energy absorption coefficients of H-, C-, N- and O-based samples of biological interest in the energy range 200–1500 keV
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Simple parametrization of photon mass energy absorption coefficients of H-, C-, N- and O-based samples of biological interest in the energy range 200–1500 keV

机译:在200–1500 keV的能量范围内对具有生物学意义的H,C,N和O基样品的光子质量能量吸收系数进行简单的参数化

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摘要

In this paper, we provide polynomial coefficients and a semi-empirical relation using which one can derive photon mass energy absorption coefficient of any H-, C-, N-, O-based sample of biological interest containing any other elements in the atomic number range 2–40 and energy range 200–1500 keV. More interestingly, it has been observed in the present work that in this energy range, both the mass attenuation coefficients and the mass energy absorption coefficients for such samples vary only with respect to energy. Hence it was possible to represent the photon interaction properties of such samples by a mean value of these coefficients. By an independent study of the variation of the mean mass attenuation coefficient as well as mass energy absorption coefficient with energy, two simple semi-empirical relations for the photon mass energy absorption coefficients and one relation for the mass attenuation coefficient have been obtained in the energy range 200–1500 keV. It is felt that these semi-empirical relations can be very handy and convenient in biomedical and other applications. One possible significant conclusion based on the results of the present work is that in the energy region 200–1500 keV, the photon interaction characteristics of any H-, C-, N-, O-based sample of biological interest which may or may not contain any other elements in the atomic number range 2–40 can be represented by a sample-independent (single) but energy-dependent mass attenuation coefficient and mass energy absorption coefficient.
机译:在本文中,我们提供了多项式系数和半经验关系,利用该关系可以得出任何在原子序数中包含任何其他元素的具有生物学意义的基于H,C,N,O的生物样品的光子质量能量吸收系数范围2–40和能量范围200–1500 keV。更有趣的是,在本工作中已经观察到,在该能量范围内,此类样品的质量衰减系数和质量能量吸收系数都仅相对于能量发生变化。因此,可以通过这些系数的平均值来表示这些样品的光子相互作用特性。通过对平均质量衰减系数以及质量能量吸收系数随能量变化的独立研究,获得了光子质量能量吸收系数的两个简单的半经验关系和能量中质量衰减系数的一个关系。范围200–1500 keV。可以感觉到,这些半经验关系在生物医学和其他应用中非常方便和方便。根据当前工作的结果,一个可能的重要结论是,在200–1500 keV的能量区域中,任何具有或不具有生物学意义的基于H,C,N,O的生物样品的光子相互作用特性原子序数范围为2–40的任何其他元素都可以由与样品无关(单个)但与能量相关的质量衰减系数和质量能量吸收系数表示。

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