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- W174327934 abstract "The general importance of the confined systems and nanostructure materials has been widely suggested as a key in the future of nanotechnology and of interest in diverse fields including pharmaceuticals, aerospace, nanoelectronics, and optoelectronics. Several forms of classifying confined systems exist, and the most universal classification is by considering the number of directions where the particle could move freely—for example, quasi-2D systems have two directions for the free movement of the carriers and one spatial direction of confinement. Four types of quasi-2D systems are investigated in the chapter: (1) single heterostructure, (2) double heterostructure or quantum well, (3) multiple heterostructures or multiple quantum wells, and (4) superlattices. There are many methods for the synthesis and production of nanostructured materials in a laboratory scale; however, the most important are those where high-quality quantum nanostructures are achieved. The effect of an external electric field on the electronic structure of a spherical quantum dot is studied in the chapter by applying the effective-mass envelope function theory." @default.
- W174327934 created "2016-06-24" @default.
- W174327934 creator A5034467629 @default.
- W174327934 creator A5045050889 @default.
- W174327934 creator A5059491078 @default.
- W174327934 date "2001-01-01" @default.
- W174327934 modified "2023-09-27" @default.
- W174327934 title "Confined systems and nanostructured materials" @default.
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