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Domain Walls: From Fundamental Properties to Nanotechnology Concepts
Contributor(s): Meier, Dennis (Author), Seidel, Jan (Author), Gregg, Marty (Author)
ISBN: 0198862490     ISBN-13: 9780198862499
Publisher: Oxford University Press, USA
OUR PRICE:   $95.00  
Product Type: Hardcover - Other Formats
Published: November 2020
Qty:
Temporarily out of stock - Will ship within 2 to 5 weeks
Additional Information
BISAC Categories:
- Science | Physics - Condensed Matter
- Technology & Engineering | Power Resources - Electrical
- Science | Physics - Magnetism
Dewey: 538.44
LCCN: 2019957865
Physical Information: 0.9" H x 6.8" W x 9.8" (1.95 lbs) 368 pages
 
Descriptions, Reviews, Etc.
Publisher Description:
Technological evolution and revolution are both driven by the discovery of new functionalities, new materials and the design of yet smaller, faster, and more energy-efficient components. Progress is being made at a breathtaking pace, stimulated by the rapidly growing demand for more powerful
and readily available information technology. High-speed internet and data-streaming, home automation, tablets and smartphones are now necessities for our everyday lives. Consumer expectations for progressively more data storage and exchange appear to be insatiable.

Oxide electronics is a promising and relatively new field that has the potential to trigger major advances in information technology. Oxide interfaces are particularly intriguing. Here, low local symmetry combined with an increased susceptibility to external fields leads to unusual physical
properties distinct from those of the homogeneous bulk.

In this context, ferroic domain walls have attracted recent attention as a completely new type of oxide interface. In addition to their functional properties, such walls are spatially mobile and can be created, moved, and erased on demand. This unique degree of flexibility enables domain walls to
take an active role in future devices and hold a great potential as multifunctional 2D systems for nanoelectronics. With domain walls as reconfigurable electronic 2D components, a new generation of adaptive nano-technology and flexible circuitry becomes possible, that can be altered and upgraded
throughout the lifetime of the device. Thus, what started out as fundamental research, at the limit of accessibility, is finally maturing into a promising concept for next-generation technology.