
Magnetic Materials, Structures and Processing for Information Storage: Volume 614
Materials Research Society (Publisher)
Published on 29. March 2001
Book
Hardback
196 pages
978-1-55899-522-2 (ISBN)
Article exhausted; check for reprint
Description
The exponential growth in information technologies has resulted in an explosion in the need for data storage with increased speed and reliability. These requirements have caused rapid development of complex magnetic materials and structures. The rate of technology development has led to a situation where the performance envelope of new materials is not fully known until the materials are fabricated into devices. In response to this, the focus of this book, first published in 2001, is not only on magnetic materials, but also on techniques and technology associated with device fabrication. The work presented in this book effectively spans the range of the myriad of information storage research from concept to product. Topics include: patterned magnetic recording media; characterization of magnetic thin films and structures; magnetic tunnel junctions and spin-dependent transport; GMR and spin valves; media/GMR/CMR; writer materials and characteristics; and magnetic structure processing techniques.
The exponential growth in information technologies has resulted in an explosion in the need for data storage with increased speed and reliability. These requirements have caused rapid development of complex magnetic materials and structures. The rate of technology development has led to a situation where the performance envelope of new materials is not fully known until the materials are fabricated into devices. In response to this, the focus of this book, first published in 2001, is not only on magnetic materials, but also on techniques and technology associated with device fabrication. The work presented in this book effectively spans the range of the myriad of information storage research from concept to product. Topics include: patterned magnetic recording media; characterization of magnetic thin films and structures; magnetic tunnel junctions and spin-dependent transport; GMR and spin valves; media/GMR/CMR; writer materials and characteristics; and magnetic structure processing techniques.
The exponential growth in information technologies has resulted in an explosion in the need for data storage with increased speed and reliability. These requirements have caused rapid development of complex magnetic materials and structures. The rate of technology development has led to a situation where the performance envelope of new materials is not fully known until the materials are fabricated into devices. In response to this, the focus of this book, first published in 2001, is not only on magnetic materials, but also on techniques and technology associated with device fabrication. The work presented in this book effectively spans the range of the myriad of information storage research from concept to product. Topics include: patterned magnetic recording media; characterization of magnetic thin films and structures; magnetic tunnel junctions and spin-dependent transport; GMR and spin valves; media/GMR/CMR; writer materials and characteristics; and magnetic structure processing techniques.
More details
Series
Language
English
Place of publication
New York
United States
Target group
Professional and scholarly
Illustrations
Worked examples or Exercises
Dimensions
Height: 229 mm
Width: 152 mm
Thickness: 13 mm
Weight
430 gr
ISBN-13
978-1-55899-522-2 (9781558995222)
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Schweitzer Classification
Other editions
New editions

Brian J. Daniels | Tom P. Nolan | Michael A. Seigler
Magnetic Materials, Structures and Processing for Information Storage: Volume 614
Volume 614
Book
06/2014
Cambridge University Press
€40.90
Shipment within 15-20 days
Additional editions

Brian J. Daniels | Tom P. Nolan | Michael A. Seigler
Magnetic Materials, Structures and Processing for Information Storage: Volume 614
Volume 614
Book
06/2014
Cambridge University Press
€40.90
Shipment within 15-20 days
Persons
Editor
Stanford University, California
IBM T J Watson Research Center, New York