Oscillatory transmission through non-tunneling regime of isolated Quantum Well

Parametric dependence of maxima and of minima

AvChaion Chandra Sarker,Sujaul Chowdhury

E-bok
PDF, Engelska, 2013

15 kr

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Beskrivning

Scientific Study from the year 2006 in the subject Physics - Quantum Physics, , language: English, abstract: Delve into the mesmerizing world of quantum transport with this comprehensive exploration of electron transmission through an isolated quantum well, a critical area of nanostructure physics and microelectronics. This book unveils the secrets behind the oscillatory behavior of electrons traversing a quantum well in the non-tunneling regime, offering a detailed analysis of the factors governing their passage. Beginning with a solid foundation in quantum mechanics, including the Schrodinger equation and wave function properties, and progressing through essential microelectronics concepts like bandgap engineering and semiconductor heterostructures, the narrative seamlessly bridges theoretical underpinnings with practical applications. Discover how the interplay of quantum phenomena shapes the transmission characteristics of electrons in these nanoscale systems. Explore the intricacies of nanostructure physics, examining tunnel barriers and quantum well structures, laying the groundwork for understanding electron behavior at the quantum level. The book meticulously details the analytical calculation of the transfer matrix and transmission coefficient, providing a rigorous mathematical framework for understanding electron transport. Uncover the qualitative aspects of transmission through numerical investigations, revealing how quantum well depth and width influence electron behavior. The book further explores the parametric dependence of transmission maxima and minima through meticulous quantitative analysis. Essential reading for researchers, engineers, and students in quantum mechanics, microelectronics, and nanotechnology, this book offers a unique blend of analytical rigor and numerical insight, making it an indispensable resource for anyone seeking to master the complexities of electron transport in quantum structures. Unlock the potential of quantum well technology with this insightful guide, and explore advanced topics in nanostructure physics. Gain a comprehensive understanding of oscillatory transmission, its parametric dependencies, and the crucial role of quantum mechanical principles in shaping the future of microelectronic devices. This book is a vital addition to the libraries of those working in semiconductor physics, solid-state physics, and materials science, providing a detailed exploration of quantum transport phenomena.

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