
Physics Of Superlattice And Quantum Wells - Proceedings Of The Workshop
par
C. H. Tsai
,
S. C. Shen
,
X. L. Lei
Pas encore d'évaluations
Science & Technology
Format
Relié
Pages
394
Langue
Chinois
Publié
Jan 1, 1989
Éditeur
World Scientific Publishing Company
ISBN-10
9971507641
ISBN-13
9789971507640
Description
In the realm of condensed matter physics, the exploration of superlattices and quantum wells stands as a frontier of significant interest. This collection captures the proceedings of a workshop dedicated to these innovative structures, detailing the latest theoretical insights and experimental breakthroughs. Experts in the field gathered to share their most recent findings, creating a rich tapestry of knowledge that reflects the dynamic nature of this area of study.
The contributions delve into the behavior and properties of these two-dimensional systems, examining how quantum confinement can lead to fascinating phenomena. The intricate interactions between electrons, photons, and phonons within these materials are unraveled through in-depth discussions, inspiring a fresh wave of research.
With a blend of theoretical explorations and practical applications, the workshop emphasized the implications of superlattices and quantum wells in advancing technology. The findings also raise questions about potential future developments and the role these materials might play in emerging fields such as quantum computing and nanotechnology.
Overall, the assembled papers present a comprehensive overview of current advancements and ongoing research in this dynamic field, inviting readers to engage with the complexities of superlattice physics and its promising applications.
The contributions delve into the behavior and properties of these two-dimensional systems, examining how quantum confinement can lead to fascinating phenomena. The intricate interactions between electrons, photons, and phonons within these materials are unraveled through in-depth discussions, inspiring a fresh wave of research.
With a blend of theoretical explorations and practical applications, the workshop emphasized the implications of superlattices and quantum wells in advancing technology. The findings also raise questions about potential future developments and the role these materials might play in emerging fields such as quantum computing and nanotechnology.
Overall, the assembled papers present a comprehensive overview of current advancements and ongoing research in this dynamic field, inviting readers to engage with the complexities of superlattice physics and its promising applications.
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