Image from Google Jackets

Oxide spintronics / edited by Tamalika Banerjee.

Contributor(s): Material type: TextTextPublisher: Singapore : Jenny Stanford, 2019Description: 1 online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9780429886904
  • 042988690X
  • 9780429886898
  • 0429886896
  • 9780429886881
  • 0429886888
  • 9780429468193
  • 0429468199
Subject(s): DDC classification:
  • 621.381 23
LOC classification:
  • TK7874.887
Online resources: Summary: Oxide materials have been used in mainstream semiconductor technology for several decades and have served as important components, such as gate insulators or capacitors, in integrated circuits. However, in recent decades, this material class has emerged in its own right as a potential contender for alternative technologies, generally designated as beyond Moore'. The 2004 discovery by Ohtomo and Hwang was a global trendsetter in this context. It involved observing a two-dimensional, high-mobility electron gas at the heterointerface between two insulating oxides, LaAlO3 and SrTiO3, supported by the rise of nascent deposition and growth-monitoring techniques, which was an important direction in materials science research. The quest to understand the origin of this unparalleled physical property and to find other emergent properties has been an active field of research in condensed matter that has united researchers with expertise in diverse fields such as thin-film growth, defect control, advanced microscopy, semiconductor technology, computation, magnetism and electricity, spintronics, nanoscience, and nanotechnology.
Star ratings
    Average rating: 0.0 (0 votes)
No physical items for this record

Oxide materials have been used in mainstream semiconductor technology for several decades and have served as important components, such as gate insulators or capacitors, in integrated circuits. However, in recent decades, this material class has emerged in its own right as a potential contender for alternative technologies, generally designated as beyond Moore'. The 2004 discovery by Ohtomo and Hwang was a global trendsetter in this context. It involved observing a two-dimensional, high-mobility electron gas at the heterointerface between two insulating oxides, LaAlO3 and SrTiO3, supported by the rise of nascent deposition and growth-monitoring techniques, which was an important direction in materials science research. The quest to understand the origin of this unparalleled physical property and to find other emergent properties has been an active field of research in condensed matter that has united researchers with expertise in diverse fields such as thin-film growth, defect control, advanced microscopy, semiconductor technology, computation, magnetism and electricity, spintronics, nanoscience, and nanotechnology.

OCLC-licensed vendor bibliographic record.

There are no comments on this title.

to post a comment.

To Reach Us

0206993118
amiu.library@amref.ac.ke

Our Location

Lang’ata Road, opposite Wilson Airport
PO Box 27691 – 00506,   Nairobi, Kenya

Social Networks

Powered by Koha