Photoemission from Optoelectronic Materials and their Nanostructures

Nonfiction, Science & Nature, Science, Physics, Optics, Technology, Material Science
Cover of the book Photoemission from Optoelectronic Materials and their Nanostructures by Kamakhya Prasad Ghatak, Sitangshu Bhattacharya, Debashis De, Springer New York
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Author: Kamakhya Prasad Ghatak, Sitangshu Bhattacharya, Debashis De ISBN: 9780387786063
Publisher: Springer New York Publication: March 14, 2010
Imprint: Springer Language: English
Author: Kamakhya Prasad Ghatak, Sitangshu Bhattacharya, Debashis De
ISBN: 9780387786063
Publisher: Springer New York
Publication: March 14, 2010
Imprint: Springer
Language: English

In recent years, with the advent of fine line lithographical methods, molecular beam epitaxy, organometallic vapour phase epitaxy and other experimental techniques, low dimensional structures having quantum confinement in one, two and three dimensions (such as ultrathin films, inversion layers, accumulation layers, quantum well superlattices, quantum well wires, quantum wires superlattices, magneto-size quantizations, and quantum dots) have attracted much attention not only for their potential in uncovering new phenomena in nanoscience and technology, but also for their interesting applications in the areas of quantum effect devices. In ultrathin films, the restriction of the motion of the carriers in the direction normal to the film leads to the quantum size effect and such systems find extensive applications in quantum well lasers, field effect transistors, high speed digital networks and also in other quantum effect devices. In quantum well wires, the carriers are quantized in two transverse directions and only one-dimensional motion of the carriers is allowed.

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In recent years, with the advent of fine line lithographical methods, molecular beam epitaxy, organometallic vapour phase epitaxy and other experimental techniques, low dimensional structures having quantum confinement in one, two and three dimensions (such as ultrathin films, inversion layers, accumulation layers, quantum well superlattices, quantum well wires, quantum wires superlattices, magneto-size quantizations, and quantum dots) have attracted much attention not only for their potential in uncovering new phenomena in nanoscience and technology, but also for their interesting applications in the areas of quantum effect devices. In ultrathin films, the restriction of the motion of the carriers in the direction normal to the film leads to the quantum size effect and such systems find extensive applications in quantum well lasers, field effect transistors, high speed digital networks and also in other quantum effect devices. In quantum well wires, the carriers are quantized in two transverse directions and only one-dimensional motion of the carriers is allowed.

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