Nuclear Magnetic Resonance of Cl^<35> in a Single Crystal of NaClO_3
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概要
- 論文の詳細を見る
Nuclear spin-lattice relaxation due to quadrupole interaction of Cl^<35> in a single crystal of NaClO_3 under an applied magnetic field was investigated by using saturation- as well as double resonance-techniques. The relaxation through Δm=1 was found to be more effective than that through Δm=2. The experimental result at room temperature can be accounted for by Bayer's theory, if we assume an appropriate life time of the excited vibrational state. When one of the high frequency lines was pumped, an enhanced absorption or emission of the low frequency Zeeman line was observed, which corresponds to nuclear three level maser effect. Finally chemical shift of Cl^<35> in this crystal was measured for two different orientations. The absolute value and a slight anisotropy of the shift can be well explained by second-order paramagnetic shift.
- 社団法人日本物理学会の論文
- 1963-11-05
著者
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Itoh Junkichi
Department Of Physics Faculty Of Science Osaka University
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Itoh Junkichi
Department Of Material Science Faculty Of Engineering Science Osaka University:faculty Of Science Ko
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Kawamori Asako
Department Of Physics Faculty Of Science Osaka University
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Kawamori Asako
Department Of Physics Faculty Of Science Kwansei Gakuin University
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Kawamori A.
Department of Physics, Faculty of Science, Osaka University
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ITOH Junkichi
Department of Physics, Faculty of Science, Osaka University
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