✍️ 🧑‍🦱 💚 Autor:innen verdienen bei uns doppelt. Dank euch haben sie so schon 476.753 € mehr verdient. → Mehr erfahren 💪 📚 🙏

Electronic States in Crystals of Finite Size

von Shang Yuan Ren
Hardcover - 9789811047169
96,29 €
  • Versandkostenfrei
Auf meine Merkliste
  • Hinweis: Print on Demand. Lieferbar in 7 Tagen.
  • Lieferzeit nach Versand: ca. 1-2 Tage
  • inkl. MwSt. & Versandkosten (innerhalb Deutschlands)

Weitere Formate

Softcover - 9789811352102
96,29 €

Autorenfreundlich Bücher kaufen?!

Weitere Formate

Softcover - 9789811352102
96,29 €

Beschreibung

This book presents an analytical theory of the electronic states in ideal low dimensional systems and finite crystals based on a differential equation theory approach. It provides precise and fundamental understandings on the electronic states in ideal low-dimensional systems and finite crystals, and offers new insights into some of the basic problems in low-dimensional systems, such as the surface states and quantum confinement effects, etc., some of which are quite different from what is traditionally believed in the solid state physics community. Many previous predictions have been confirmed in subsequent investigations by other authors on various relevant problems. In this new edition, the theory is further extended to one-dimensional photonic crystals and phononic crystals, and a general theoretical formalism for investigating the existence and properties of surface states/modes in semi-infinite one-dimensional crystals is developed. In addition, there are various revisions and improvements, including using the Kronig-Penney model to illustrate the analytical theory and make it easier to understand. This book is a valuable resource for solid-state physicists and material scientists.

Quantum Confinement of Bloch Waves

Quantum Confinement of Bloch Waves

Details

Verlag Springer Singapore
Ersterscheinung 14. September 2017
Maße 23.5 cm x 15.5 cm
Gewicht 617 Gramm
Format Hardcover
ISBN-13 9789811047169
Auflage 2nd ed. 2017
Seiten 283

Herstellerinformationen +