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Titlebook: Amorphous and Liquid Semiconductors; J. Tauc Book 1974 Plenum Publishing Company Ltd 1974 Vibration.crystal.metals.physics.semiconductor

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發(fā)表于 2025-3-21 17:51:55 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Amorphous and Liquid Semiconductors
影響因子2023J. Tauc
視頻videohttp://file.papertrans.cn/155/154740/154740.mp4
圖書封面Titlebook: Amorphous and Liquid Semiconductors;  J. Tauc Book 1974 Plenum Publishing Company Ltd 1974 Vibration.crystal.metals.physics.semiconductor
影響因子Solid state physics after solving so successfully many fundamental problems in perfect or slightly imperfect crystals, tried in recent years to attack problems associated with large disorder with the aim to understand the consequences of the lack of the long-range order. Semiconductors are much more changed by disorder than metals or insulators, and appear to be the most suitable materials for fundamental work. Considerable exploratory work on amorphous and liquid semiconductors was done by the Leningrad School since the early fifties. In recent years, much research in several countries was directed to deepen the understanding of the structural, electronic, optical, vibrational, magnetic and other proper- ties of these materials and to possibly approach the present level of under- standing of crystalline semiconductors. This effort was stimulated not only by purely scientific interest but also by the possibility of new applications from which memory devices in the general sense are perhaps the most challenging. The research met with serious difficulties which are absent in crystals.
Pindex Book 1974
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發(fā)表于 2025-3-21 22:52:51 | 只看該作者
Structure and Electronic Properties of Liquid Semiconductors,is Nb.. a(q) whilst that for incoherent scattering is Nb.., provided the scattering is perfectly elastic (see, for example, Bacon (1962)), a(q) here is defined in the usual way as the expectation value of N S(q) S*(q) where.N is the number of scatterers, q is a wave number and r.refers to the positions of the nuclei.
板凳
發(fā)表于 2025-3-22 01:45:01 | 只看該作者
to attack problems associated with large disorder with the aim to understand the consequences of the lack of the long-range order. Semiconductors are much more changed by disorder than metals or insulators, and appear to be the most suitable materials for fundamental work. Considerable exploratory
地板
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Optical Properties of Amorphous Semiconductors, for on the basis of short-range order alone: If the long-range order is destroyed, the sharp structural detail, which is typical for crystals, disappears. However, the broad features of the spectra are similar if the short-range order is similar.
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Electronic Properties of Amorphous Semiconductors,h theory’. Many experiments fail to distinguish between mechanisms of quite different physical origin. This makes the problem of extracting a coherent picture from the experiments particularly difficult.
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