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Laser-induced NMR shift of a paramagnetic system

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【作者】 李莉; 陈东明; 何天敬; 王秀燕; 刘凡镇;

【Author】 LI, Li CHEN, Dong-Ming HE, Tian-JingWANG, Xiu-Yan LIU, Fan-ChenDepartment of Chemical Physics, University of Science and Technology of China, Hefei, Anhui 230026, China

【机构】 Department of Chemical Physics; University of Science and Technology of China; Hefei; Anhui 230026; China; China;

【摘要】 <正> Perturbation theory on optical ac Stark effect is applied to study the NMR spectroscopy in paramagnetic systems. Application of the circularly or linearly polarized optical field would lead to shifts in the NMR lines, which is proportional to the laser intensity and the induced polarizability tensors by hyperfine interaction. The induced shift for 193Ir NMR spectrum of [IrBrg]2- is expected to be of the order of 1-10 Hz as resonance is approached with light intensity 10 W·cm-2. For the supersonic molecular beam samples 193IrC, the laser-induced NMR shift is estimated to be as large as 1-10 MHz near resonance.

【Abstract】 Perturbation theory on optical ac Stark effect is applied to study the NMR spectroscopy in paramagnetic systems. Application of the circularly or linearly polarized optical field would lead to shifts in the NMR lines, which is proportional to the laser intensity and the induced polarizability tensors by hyperfine interaction. The induced shift for 193Ir NMR spectrum of [IrBrg]2- is expected to be of the order of 1-10 Hz as resonance is approached with light intensity 10 W·cm-2. For the supersonic molecular beam samples 193IrC, the laser-induced NMR shift is estimated to be as large as 1-10 MHz near resonance.

【基金】 Project supported by the National Natural Science Foundation of China (No. 29873043);the Ph. D. Foundation of Education ministry of China
  • 【文献出处】 Chinese Journal of Chemistry ,中国化学(英文版) , 编辑部邮箱 ,1999年06期
  • 【分类号】O657.2
  • 【下载频次】2
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