An Empirical Relationship between Optical Properties and the Nuclear Quadrupole Coupling Parameters in the Boron Sites in the Nonlinear Optical CsLiB_6O_<10> (Condensed Matter: Electronic Structure, Electrical, Magnetic and Optical Properties)
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概要
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The rotation patterns of the nuclear magnetic resonance of ^<11>B (I = 3/2) in a nonlinear optical CsLiB_6O_10 single crystal were measured in three mutually perpendicular crystal planes. We observed sixteen different spectra which could be divided into two groups corresponding to two kinds of boron atoms, B(1) and B(2), having different boron-oxygen rings and lying at crystallographically inequivalent sites. From these results, the quadrupole coupling constants and the asymmetry parameters were determined at room temperature for the first time. For the 4-coordinated B(1), e^2qQ/h = 0.23 ± 0.03 MHz and η = 0.456 ± 0.004, and for the 3-coordinated B(2), e^2qQ/h = 2.58 ± 0.03 MHz and η = 0.276 ± 0.004. The directions of the principal axes of the electric field gradient tensors were also determined. The spectra for the two groups have different principal values of the electric field gradient tensor and originate from magnetically inequivalent sites. The principal Z-axis of the EFG tensor nearly coincides with the normal to the plane of the boron-oxygen triangle. We found an interesting correlation between the asymmetry parameter and the largest nonlinear optical coefficient.
- 社団法人日本物理学会の論文
- 2003-07-15
著者
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KIM Ji
Department of Polymer Science and Engineering, Kumoh National Institute of Technology
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Kim Ji
Department Of Physics Kaist Daeduck Science Town
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Kim Ji
Department Of Anesthesiology And Pain Medicine Gachon Medical School Gil Medical Center
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Lim A
Jeonju Univ. Jeonju Kor
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LIM Ae
Department of Physics, Jeonju University
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YOON Choon
Department of Physics, KAIST, Daeduck Science Town
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Lim Ae
Department Of Physics Jeonju University
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Yoon Choon
Department Of Physics Kaist Daeduck Science Town
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Yoon Choon
Department Of Histology College Of Medicine Chung-ang University
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Lin Ae
Department Of Physics Jeonju University
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Kim Ji
Department of Advanced Materials Engineering, Sangju National University, Kyeongbuk 742-711, Korea
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