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Triple quantum nutation in the two-level NMR system in the rotating frame
Authors:Hatanaka Hiroshi  Sugiyama Manabu  Tabuchi Noriyuki
Institution:Department of Physics, Faculty of Education, Kanazawa University, Kanazawa 920-1192, Japan. hatanaka@ed.kanazawa-u.ac.jp
Abstract:The authors present the detailed theory and the new results associated with the triple quantum (TQ) nutation and the line narrowing effect of the TQ resonance in the two-level NMR system which we reported previously. The TQ resonance is induced in the spin-locked system by the oscillating field produced by the sinusoidal phase modulation (PM) of the RF field. The theory predicts that the TQ nutation is accompanied by several higher frequency oscillations and we detected them experimentally by improving the detection system. These higher frequency oscillations are due to the fluctuation of the angle between the transverse or effective field causing the TQ nutation and the RF field. We obtain the result that the modulation index 2phim of the PM is the key parameter that essentially controls the conditions of the TQ resonance and the narrowing effect. Under the exact TQ resonance, the ratio of the TQ resonance frequency to the Larmor frequency of the RF field depends only on phim, and the secular part of the magnetic dipole Hamiltonian of a like spin system in the triply rotating frame disappears at a particular value of phim. The condition is different from that of the well-known magic angle condition.
Keywords:Multiple quantum NMR  Line narrowing  Double resonance  Magic angle nutation  19F resonance in Teflon
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