Comparison of angular variation of coercivity in various magnetic media

Ranjan, R. ; Gau, J.S. ; Amin, N.

Amsterdam : Elsevier
ISSN:
0304-8853
Source:
Elsevier Journal Backfiles on ScienceDirect 1907 - 2002
Topics:
Physics
Type of Medium:
Electronic Resource
URL:
_version_ 1798291843226533890
autor Ranjan, R.
Gau, J.S.
Amin, N.
autorsonst Ranjan, R.
Gau, J.S.
Amin, N.
book_url http://linkinghub.elsevier.com/retrieve/pii/0304-8853(90)90704-T
datenlieferant nat_lic_papers
fussnote Angular variation of coercivity provides a method for studying magnetization reversal mechanisms and has stimulated theoretical interest, particularly for recording materials. This paper reports our experimental results on the angular variation of coercivity in different magnetic media, and compares these data. These include CoNiCr/Cr-type longitudinal media and Ba-ferrite-type particulate longitudinal media for hard disc applications, and CoNi-type metal evaporated longitudinal media for video-recording. Results from sputtered CoNiCr/Cr media showed a symmetric M-type curve and the peak height decreased with inter-granular coupling. In addition, the peak position also changed systematically with grain decoupling. Results from Ba-ferrite particulate media exhibited curves similar to those for CoNiCr/Cr media having relatively magnetically uncoupled grains. However, oriented Ba-ferrite media prepared by having a magnetic field applied at 30 and 60^o with respect to the film-plane, showed a very interesting behavior. In contrast, CoNi films which were prepared by oblique evaporation in the presence of oxygen, showed a canted columnar morphology with an easy axis of magnetization out of the film plane. The resultant angular coercivity features a shifted M-type unsymmetric curve and the shift angle increased with the oxygen content in the film - similar to the oriented Ba-ferrite media. It was noted that at high O"2 concentrations the curve deviates significantly from a shifted M-type nature. The microstructures of the aforementioned media will also be discussed.
hauptsatz hsatz_simple
identnr NLZ17942176X
issn 0304-8853
journal_name Journal of Magnetism and Magnetic Materials
materialart 1
package_name Elsevier
publikationsort Amsterdam
publisher Elsevier
reference 89 (1990), S. 38-46
search_space articles
shingle_author_1 Ranjan, R.
Gau, J.S.
Amin, N.
shingle_author_2 Ranjan, R.
Gau, J.S.
Amin, N.
shingle_author_3 Ranjan, R.
Gau, J.S.
Amin, N.
shingle_author_4 Ranjan, R.
Gau, J.S.
Amin, N.
shingle_catch_all_1 Ranjan, R.
Gau, J.S.
Amin, N.
Comparison of angular variation of coercivity in various magnetic media
0304-8853
03048853
Elsevier
shingle_catch_all_2 Ranjan, R.
Gau, J.S.
Amin, N.
Comparison of angular variation of coercivity in various magnetic media
0304-8853
03048853
Elsevier
shingle_catch_all_3 Ranjan, R.
Gau, J.S.
Amin, N.
Comparison of angular variation of coercivity in various magnetic media
0304-8853
03048853
Elsevier
shingle_catch_all_4 Ranjan, R.
Gau, J.S.
Amin, N.
Comparison of angular variation of coercivity in various magnetic media
0304-8853
03048853
Elsevier
shingle_title_1 Comparison of angular variation of coercivity in various magnetic media
shingle_title_2 Comparison of angular variation of coercivity in various magnetic media
shingle_title_3 Comparison of angular variation of coercivity in various magnetic media
shingle_title_4 Comparison of angular variation of coercivity in various magnetic media
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source_archive Elsevier Journal Backfiles on ScienceDirect 1907 - 2002
timestamp 2024-05-06T08:39:03.928Z
titel Comparison of angular variation of coercivity in various magnetic media
titel_suche Comparison of angular variation of coercivity in various magnetic media
Angular variation of coercivity provides a method for studying magnetization reversal mechanisms and has stimulated theoretical interest, particularly for recording materials. This paper reports our experimental results on the angular variation of coercivity in different magnetic media, and compares these data. These include CoNiCr/Cr-type longitudinal media and Ba-ferrite-type particulate longitudinal media for hard disc applications, and CoNi-type metal evaporated longitudinal media for video-recording. Results from sputtered CoNiCr/Cr media showed a symmetric M-type curve and the peak height decreased with inter-granular coupling. In addition, the peak position also changed systematically with grain decoupling. Results from Ba-ferrite particulate media exhibited curves similar to those for CoNiCr/Cr media having relatively magnetically uncoupled grains. However, oriented Ba-ferrite media prepared by having a magnetic field applied at 30 and 60^o with respect to the film-plane, showed a very interesting behavior. In contrast, CoNi films which were prepared by oblique evaporation in the presence of oxygen, showed a canted columnar morphology with an easy axis of magnetization out of the film plane. The resultant angular coercivity features a shifted M-type unsymmetric curve and the shift angle increased with the oxygen content in the film - similar to the oriented Ba-ferrite media. It was noted that at high O"2 concentrations the curve deviates significantly from a shifted M-type nature. The microstructures of the aforementioned media will also be discussed.
topic U
uid nat_lic_papers_NLZ17942176X