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Rabi and Larmor nuclear quadrupole double resonance of spin-1 nuclei

机译:自旋1核的Rabi和Larmor核四极双共振

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We demonstrate the creation of two novel double-resonance conditions between spin-1 and spin-1/2 nuclei in a crystalline solid. Using a magnetic field oscillating at the spin-1/2 Larmor frequency, the nuclear quadrupole resonance (NQR) frequency is matched to the Rabi or Rabi plus Larmor frequency, as opposed to the Larmor frequency as is conventionally done. We derive expressions for the cross-polarization rate for all three conditions in terms of the relevant secular dipolar Hamiltonian, and demonstrate with these expressions how to measure the strength of the heterogenous dipolar coupling using only low magnetic fields. In addition, the combination of different resonance conditions permits the measurement of the spin-1/2 angular momentum vector using spin-1 NQR, opening up an alternate modality for the monitoring of low-field nuclear magnetic resonance. We use ammonium nitrate to explore these resonance conditions, and furthermore use the oscillating field to increase the signal-to-noise ratio per time by a factor of 3.5 for NQR detection of this substance.
机译:我们证明了在晶体固体中spin-1和spin-1 / 2核之间两个新颖的双共振条件的创建。使用以自旋1/2拉莫尔频率振荡的磁场,核四极共振(NQR)频率与拉比或拉比加拉莫尔频率相匹配,这与传统上拉莫尔频率相反。我们根据相关的世俗偶极哈密顿量推导了所有三个条件下的交叉极化率表达式,并用这些表达式演示了如何仅使用低磁场来测量异质偶极耦合的强度。另外,不同共振条件的组合允许使用spin-1 NQR测量spin1 / 2角动量矢量,从而为监视低场核磁共振开辟了另一种方式。我们使用硝酸铵探索这些共振条件,并且进一步使用振荡场将每次时间的信噪比提高3.5倍,以进行NQR检测。

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