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Topic Area: Nanomagnetics
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Displaying records 161 to 170 of 218 records.
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161. Magnetic-Field-Modulated Written Bits in TbFeCo Thin Films: Transmission Electron Microscopy Lorentz and Scanning Electron Microscopy with Polarization Analysis Studies
Topic: Nanomagnetics
Published: 1/1/1990
Authors: M Aeschlimann, M Scheinfein, John Unguris
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620363

162. Scanning Electron Microscopy With Polarization Analysis (SEMPA)
Topic: Nanomagnetics
Published: 1/1/1990
Authors: M Scheinfein, John Unguris, Michael H Kelley, Daniel Thornton Pierce, Robert Celotta
Abstract: This was an extended abstract prepared for inclusion in the Microscopy & Microanalysis '99 Proceedings. It is a summary of Observation of Antiparallel Magnetic Order in Weakly Coupled Co/Cu Multilayers, which was published in Physical Review Letters, ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620360

163. Scanning Electron Microscopy with Polarization Analysis (SEMPA): Studies of Surface Magnetic Microstructure
Topic: Nanomagnetics
Published: 1/1/1990
Authors: M W Hart, M Scheinfein, John Unguris, Daniel Thornton Pierce, Robert Celotta
Abstract: SEMPA provides a new and versatile means of imaging surface magnetic microstructure with high resolution. When a ferromagnetic sample is probed by the highly focussed electron beam of an SEM, secondary electrons are generated whose spin polarization ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620368

164. Scanning Electron Microscopy with Polarization Analysis: Studies of Magnetic Microstructure
Topic: Nanomagnetics
Published: 1/1/1990
Authors: John Unguris, M Scheinfein, Robert Celotta, Daniel Thornton Pierce
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620358

165. Surface Magnetic Microstructural Analysis Using Scanning Electron Microscopy with Polarization Analysis (SEMPA)
Topic: Nanomagnetics
Published: 1/1/1990
Authors: M Scheinfein, John Unguris, Daniel Thornton Pierce, Robert Celotta
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620350

166. Surface Magnetic Microstructure
Topic: Nanomagnetics
Published: 1/1/1990
Authors: M Scheinfein, John Unguris, Robert Celotta, Daniel Thornton Pierce
Abstract: The way in which a magnetic solid minimizes its energy through the formation of domains and domain walls is strongly influenced by the presence of the surface. At the surface, a bulk Blich wall may change into a Neel wall in order to reduce the magn ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620334

167. Surface, Interface and Thin-Film Magnetism
Topic: Nanomagnetics
Published: 1/1/1990
Authors: L Falicov, Daniel Thornton Pierce, S Bader, R Gronsky, K Hathaway, H Hopster, D Lambeth, S Parkin, G Prinz, M Salamon, I Schuller, R Victora
Abstract: A comprehensive review and state of the art in the field of surface, interface, and thin-film magnetism is presented. New growth techniques which produce atomically engineered novel material, special characterization techniques to measure meagnetic p ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620359

168. Definition of Ultimate Attainable Spatial Resolution
Topic: Nanomagnetics
Published: 1/1/1989
Author: M Scheinfein
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620325

169. Influence of the Surface on Magnetic Domain Wall Microstructure
Topic: Nanomagnetics
Published: 1/1/1989
Authors: M Scheinfein, John Unguris, Robert Celotta, Daniel Thornton Pierce
Abstract: The magnetization orientations in domain walls at the surfaces of an Fe crystal, a ferromagnetic glass, and a Permalloy film, measured by scanning electron microscopy with polarization analysis, exhibit asymmetric surface N{eacute}el wall profiles wh ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620331

170. Magnetic Microstructure of Thin Films and Surfaces: Exploiting Spin-polarized Electrons in the SEM and STM
Topic: Nanomagnetics
Published: 1/1/1989
Authors: Daniel Thornton Pierce, M Scheinfein, John Unguris, Robert Celotta
Abstract: Magnetic microstructure, that is the configuration of domains and domain walls in a magnetic material, is of both fundamental interest and of crucial importance for device applications. For example, the ultimate density of magnetic information stora ...
http://www.nist.gov/manuscript-publication-search.cfm?pub_id=620335



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