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Titlebook: Optical Properties of Highly Transparent Solids; Shashanka S. Mitra,Bernard Bendow Book 1975 Plenum Press, New York 1975 Absorption.Blende

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書目名稱Optical Properties of Highly Transparent Solids
編輯Shashanka S. Mitra,Bernard Bendow
視頻videohttp://file.papertrans.cn/703/702639/702639.mp4
叢書名稱Optical Physics and Engineering
圖書封面Titlebook: Optical Properties of Highly Transparent Solids;  Shashanka S. Mitra,Bernard Bendow Book 1975 Plenum Press, New York 1975 Absorption.Blende
描述Although much work has been performed on measure- ments and interpretation of light absorption by opaque or nearly opaque solids, it is surprising to note that until recently relatively little reliable experimental data, and much less theoretical work was available on the nature of transparent solids. This, in spite of the fact that a vast majority of engineering and device ap- plications of a solid depend on its optical transparency. Needless to say, all solids are both transparent and opa- que depending on the spectral region of consideration. The absorption processes that limit the transparency of a solid are either due to lattice vibrations, as in ionic or partially ionic solids, or due to electronic transi- tions, both intrinsic and impurity-induced. For most materials, a sufficiently wide spectral window exists be- tween these two limits, where the material is transpar- ent. In general, the absorption coefficient, in the long wavelength side of, but sufficiently away from, the fun- damental absorption edge, is relatively structureless and has an exponential dependence on frequency. Recent evi- dence suggests that in the short wavelength side of the one-phonon region, but beyo
出版日期Book 1975
關(guān)鍵詞Absorption; Blende; Dispersion; Photometer; exciton; glass; laser; light scattering; optical communication; o
版次1
doihttps://doi.org/10.1007/978-1-4684-2178-1
isbn_softcover978-1-4684-2180-4
isbn_ebook978-1-4684-2178-1
copyrightPlenum Press, New York 1975
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Optical Absorption by Alkali Halides: Possible Structure in the Multiphonon Regionthe lattice in favor of a single-oscillator model. Here we attempt to incorporate the important features of both models into a single theory applicable to many substances. For the heavier alkali halides, the calculation predicts some structure in the absorption spectrum in the “transparent” region w
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Experimental Studies of Multiphonon IR Absorptiondecompose the exponential reststrahl absorption wing into N-phonon spectra (N = 2 ... 5) with considerable structure. The latter coincides with phonon combinations with particularly large densities of states. Comparison with data on KBr, NaCl, and LiF demonstrates the influence of zero point motion
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Temperature Dependence of Multiphonon Absorption in Fluorite Crystals0 to 800°K. The frequency dependence is found to be nearly exponential-like in the temperature range investigated, in agreement with existing multiphonon theories. A detailed analysis of the measured temperature dependence, utilizing the theories of Bendow, and of Namjoshi and Mitra, shows that the
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Multiphonon Absorption in KCl, NaCl, and ZnSeand tunable CO. laser calorimetry. The frequency dependent measurements indicate a difference in slope of the log of absorption versus frequency curves between single crystal and the same host hardened by the addition of a small amount of impurities or hot press forged. The temperature dependence of
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