μSr study of 1:1 complex of bis(hexafluoroacetylacetonate) manganese(II) with diazodi(4-pyridyl)methan as a photo-responsible magnetic coupler

Y. Ajiro, T. Asano, Y. Inagaki, S. Karasawa, N. Koga, K. Nishiyama, Y. Miyake, K. Nagamine

研究成果: ジャーナルへの寄稿Conference article

抄録

We apply muon spin relaxation (μSR) technique to study the magnetic behaviors of the photosensitive molecular magnet, 1:1 complexes of bis(hexafluoroacetylacetonate) manganese(II), {Mn(hfac)2} with diazodi(4-pyridyl)methane as a photoresponsible magnetic coupler. The μSR time spectra have been collected before and after laser irradiation as a function of temperature from 290 K to 10 K and as a function of irradiation time during 30 hours. While we are not successful in detecting meaningful effects of irradiation at the present stage, we discuss potential usability of μSR technique to reveal the expected unconventional feature of the photo-induced magnetic order.

元の言語英語
ページ(範囲)421/103 - 426/108
ジャーナルMolecular Crystals and Liquid Crystals Science and Technology Section A: Molecular Crystals and Liquid Crystals
343
出版物ステータス出版済み - 1 1 2000
イベントProceedings of the International Symposium Molecular Design and Funtionalities of Assambled Metals Complexes (AMC'99) - Kyoto, Jpn
継続期間: 11 30 199912 2 1999

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Manganese
couplers
manganese
Irradiation
irradiation
Methane
Laser beam effects
Relaxation time
Magnets
muons
magnets
methane
relaxation time
Temperature
lasers
hexafluoroacetylacetonate
temperature

All Science Journal Classification (ASJC) codes

  • Condensed Matter Physics

これを引用

μSr study of 1:1 complex of bis(hexafluoroacetylacetonate) manganese(II) with diazodi(4-pyridyl)methan as a photo-responsible magnetic coupler. / Ajiro, Y.; Asano, T.; Inagaki, Y.; Karasawa, S.; Koga, N.; Nishiyama, K.; Miyake, Y.; Nagamine, K.

:: Molecular Crystals and Liquid Crystals Science and Technology Section A: Molecular Crystals and Liquid Crystals, 巻 343, 01.01.2000, p. 421/103 - 426/108.

研究成果: ジャーナルへの寄稿Conference article

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abstract = "We apply muon spin relaxation (μSR) technique to study the magnetic behaviors of the photosensitive molecular magnet, 1:1 complexes of bis(hexafluoroacetylacetonate) manganese(II), {Mn(hfac)2} with diazodi(4-pyridyl)methane as a photoresponsible magnetic coupler. The μSR time spectra have been collected before and after laser irradiation as a function of temperature from 290 K to 10 K and as a function of irradiation time during 30 hours. While we are not successful in detecting meaningful effects of irradiation at the present stage, we discuss potential usability of μSR technique to reveal the expected unconventional feature of the photo-induced magnetic order.",
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T1 - μSr study of 1:1 complex of bis(hexafluoroacetylacetonate) manganese(II) with diazodi(4-pyridyl)methan as a photo-responsible magnetic coupler

AU - Ajiro, Y.

AU - Asano, T.

AU - Inagaki, Y.

AU - Karasawa, S.

AU - Koga, N.

AU - Nishiyama, K.

AU - Miyake, Y.

AU - Nagamine, K.

PY - 2000/1/1

Y1 - 2000/1/1

N2 - We apply muon spin relaxation (μSR) technique to study the magnetic behaviors of the photosensitive molecular magnet, 1:1 complexes of bis(hexafluoroacetylacetonate) manganese(II), {Mn(hfac)2} with diazodi(4-pyridyl)methane as a photoresponsible magnetic coupler. The μSR time spectra have been collected before and after laser irradiation as a function of temperature from 290 K to 10 K and as a function of irradiation time during 30 hours. While we are not successful in detecting meaningful effects of irradiation at the present stage, we discuss potential usability of μSR technique to reveal the expected unconventional feature of the photo-induced magnetic order.

AB - We apply muon spin relaxation (μSR) technique to study the magnetic behaviors of the photosensitive molecular magnet, 1:1 complexes of bis(hexafluoroacetylacetonate) manganese(II), {Mn(hfac)2} with diazodi(4-pyridyl)methane as a photoresponsible magnetic coupler. The μSR time spectra have been collected before and after laser irradiation as a function of temperature from 290 K to 10 K and as a function of irradiation time during 30 hours. While we are not successful in detecting meaningful effects of irradiation at the present stage, we discuss potential usability of μSR technique to reveal the expected unconventional feature of the photo-induced magnetic order.

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