
As an Amazon Associate and affiliate partner, Menrva Books earns from qualifying purchases. Learn more
Nanoscale devices differ from larger microscale devices because they depend on the physical phenomena and effects that are central to their operation. This textbook illuminates the behavior of nanoscale devices by connecting them to the electronic, as well as magnetic, optical and mechanical properties, which fundamentally affect nanoscale devices in fascinating ways. Their small size means that an understanding of the phenomena measured is even more important, as their effects are so dominant and the changes in scale of underlying energetics and response are significant. Examples of these include classical effects such as single electron effects, quantum effects such as the states accessible as well as their properties; ensemble effects ranging from consequences of the laws of numbers to changes in properties arising from different magnitudes of the interactions, and others. These interactions, with the limits on size, make their physical behavior interesting, important and useful.The collection of four textbooks in the Electroscience Series culminates in a comprehensive understanding of nanoscale devices -- electronic, magnetic, mechanical and optical -- in the 4th volume. The series builds up to this last subject with volumes devoted to underlying semiconductor and solid-state physics.
This text investigates the fundamental physical phenomena and energetics that govern the operation of nanoscale devices. Author Sandip Tiwari, a recognized expert in the field, utilizes a rigorous framework to bridge the gap between classical semiconductor physics and the unique behaviors observed at the nanoscale. By analyzing electronic, magnetic, optical, and mechanical properties, the book provides a comprehensive methodology for understanding how size-dependent interactions dictate device performance.
What You Will Find
Experts identify this work as a foundational volume within the Electroscience Series, suitable for advanced students and researchers in electrical engineering and applied physics. Readers frequently note the academic density of the prose, which requires a strong background in solid-state physics to fully grasp the presented concepts.
Page Count:
688
Publication Date:
2017-08-15
Publisher:
Oxford University Press
ISBN-10:
0198759878
ISBN-13:
9780198759874
No comments yet. Be the first to share your thoughts!