Crystallographic angle and temperature dependence of giant-anisotropy ferrimagnetic-resonance linewidth

Bernhard R. Tittmann, M. Sparks

Research output: Contribution to journalArticle

Abstract

Ferrimagnetic resonance linewidths were measured as a function of angle θ from a [100] axis in a (110) plane for an yttrium iron garnet sample doped with 0.1 at.%Ho. Near the [100] and [110] directions the linewidth has a single peak at 4.2°K which becomes a double peak at 27°and 77°K, as predicted by Sparks.

Original languageEnglish (US)
Pages (from-to)1082-1083
Number of pages2
JournalJournal of Applied Physics
Volume39
Issue number2
DOIs
StatePublished - Dec 1 1968

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temperature dependence
anisotropy
yttrium-iron garnet
sparks

All Science Journal Classification (ASJC) codes

  • Physics and Astronomy(all)

Cite this

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abstract = "Ferrimagnetic resonance linewidths were measured as a function of angle θ from a [100] axis in a (110) plane for an yttrium iron garnet sample doped with 0.1 at.{\%}Ho. Near the [100] and [110] directions the linewidth has a single peak at 4.2°K which becomes a double peak at 27°and 77°K, as predicted by Sparks.",
author = "Tittmann, {Bernhard R.} and M. Sparks",
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Crystallographic angle and temperature dependence of giant-anisotropy ferrimagnetic-resonance linewidth. / Tittmann, Bernhard R.; Sparks, M.

In: Journal of Applied Physics, Vol. 39, No. 2, 01.12.1968, p. 1082-1083.

Research output: Contribution to journalArticle

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AU - Sparks, M.

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N2 - Ferrimagnetic resonance linewidths were measured as a function of angle θ from a [100] axis in a (110) plane for an yttrium iron garnet sample doped with 0.1 at.%Ho. Near the [100] and [110] directions the linewidth has a single peak at 4.2°K which becomes a double peak at 27°and 77°K, as predicted by Sparks.

AB - Ferrimagnetic resonance linewidths were measured as a function of angle θ from a [100] axis in a (110) plane for an yttrium iron garnet sample doped with 0.1 at.%Ho. Near the [100] and [110] directions the linewidth has a single peak at 4.2°K which becomes a double peak at 27°and 77°K, as predicted by Sparks.

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