Parameters
- 410bladzijden
- 15 uur lezen
Meer over het boek
This introductory text develops the reader's fundamental understanding of core principles and experimental aspects underlying the operation of nanoelectronic devices. The author makes a thorough and systematic presentation of electron transport in quantum-confined systems such as quantum dots, quantum wires, and quantum wells together with Landauer-B�ttiker formalism and non-equilibrium Green's function approach. The coverage encompasses nanofabrication techniques and characterization tools followed by a comprehensive exposition of nanoelectronic devices including resonant tunneling diodes, nanoscale MOSFETs, carbon nanotube FETs, high-electron-mobility transistors, single-electron transistors, and heterostructure optoelectronic devices. The writing throughout is simple and straightforward, with clearly drawn illustrations and extensive self-study exercises for each chapter. Introduces the basic concepts underlying the operation of nanoelectronic devices. Offers a broad overview of the field, including state-of-the-art developments. Covers the relevant quantum and solid-state physics and nanoelectronic device principles. Written in lucid language with accessible mathematical treatment. Includes extensive end-of-chapter exercises and many insightful diagrams.
Een boek kopen
Introductory Nanoelectronics, Vinod Kumar Khanna
- Taal
- Jaar van publicatie
- 2020
- product-detail.submit-box.info.binding
- (Hardcover),
- Staat van het boek
- Zeer goed
- Prijs
- € 77,99
Betaalmethoden
Nog niemand heeft beoordeeld.
- Ondertitel
- Physical Theory and Device Analysis
- Taal
- Engels
- Auteurs
- Vinod Kumar Khanna
- Uitgever
- CRC Press
- Jaar van publicatie
- 2020
- Formaat
- Hardcover
- Aantal pagina's
- 410
- ISBN10
- 0815384262
- ISBN13
- 9780815384267
- Reeks
- Tags
- Non-fictie, Technologie & Industrie, Wetenschap en Wiskunde, Natuur, Ecologische thematiek, Ecologie, Elektronica & Elektrotechniek
- Aantekening
- This introductory text develops the reader's fundamental understanding of core principles and experimental aspects underlying the operation of nanoelectronic devices. The author makes a thorough and systematic presentation of electron transport in quantum-confined systems such as quantum dots, quantum wires, and quantum wells together with Landauer-B�ttiker formalism and non-equilibrium Green's function approach. The coverage encompasses nanofabrication techniques and characterization tools followed by a comprehensive exposition of nanoelectronic devices including resonant tunneling diodes, nanoscale MOSFETs, carbon nanotube FETs, high-electron-mobility transistors, single-electron transistors, and heterostructure optoelectronic devices. The writing throughout is simple and straightforward, with clearly drawn illustrations and extensive self-study exercises for each chapter. Introduces the basic concepts underlying the operation of nanoelectronic devices. Offers a broad overview of the field, including state-of-the-art developments. Covers the relevant quantum and solid-state physics and nanoelectronic device principles. Written in lucid language with accessible mathematical treatment. Includes extensive end-of-chapter exercises and many insightful diagrams.




