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Titlebook: Basic Semiconductor Physics; Chihiro Hamaguchi Textbook 20011st edition Springer-Verlag Berlin Heidelberg 2001 Energy band structures.Lumi

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Quantum Structures,tized at the interface and to exhibit two-dimensional properties. Then the Quantum Hall effect was discovered in 1980 by van Klitzing et al. [8.15] by using a Si-MOSFET and thereafter the transport properties of a twodimensional electron gas has received a great deal of attention.
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Textbook 20011st edition had to wait for 30 years (till the 1960s) to understand the physics of semi­ conductors. When the transistor was invented, it was still unclear whether germanium had a direct gap or indirect gap. The author started to study semiconductor physics in 1960 and the physics was very difficult for a begi
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Springer Series in Solid-State Sciences. In this Section we will not go into detail on this kind of phenomenological treatment but we will consider the magnitude of the change in the dielectric constant near the fundamental absorption edge induced by the applied electric field in a semiconductor.
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Energy Band Structures of Semiconductors, reported, but in this textbook we will deal with several methods, which are not so difficult to understand. We begin with the most simplified method to calculate electronic states in a model crystal.
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Optical Properties 2,. In this Section we will not go into detail on this kind of phenomenological treatment but we will consider the magnitude of the change in the dielectric constant near the fundamental absorption edge induced by the applied electric field in a semiconductor.
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Energy Band Structures of Semiconductors,nd structures of electrons in crystals reflect the periodic potential of the crystals and they can be calculated when we know the exact shape and the magnitude of the crystal potentials. The shape and the magnitude of the potential are not determined directly from any experimental methods, and thus
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Cyclotron Resonance and Energy Band Structures,played a very important role in understanding the valence band structures of Ge and Si and later led to an accurate determination of the energy band structures. In this chapter first we will describe the cyclotron resonance experiment and its analysis in order to discuss the anisotropy of the electr
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