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Long-lived frequency shifts observed in a magnetic resonance force microscope experiment following microwave irradiation of a nitroxide spin probe

机译:微波辐照一氧化氮自旋探针在磁共振力显微镜实验中观察到的长寿命频移

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摘要

We introduce a spin-modulation protocol for force-gradient detection of magnetic resonance that enables the real-time readout of longitudinal magnetization in an electron spin resonance experiment involving fast-relaxing spins. We applied this method to observe a prompt change in longitudinal magnetization following the microwave irradiation of a nitroxide-doped perdeuterated polystyrene film having an electron spin-lattice relaxation time of T1 ∼ 1ms. The protocol allowed us to discover a large, long-lived cantilever frequency shift. Based on its magnitude, lifetime, and field dependence, we tentatively attribute this persistent signal to deuteron spin magnetization created via transfer of polarization from nitroxide spins.
机译:我们介绍了一种用于磁共振力梯度检测的自旋调制协议,该协议可在涉及快速松弛自旋的电子自旋共振实验中实时读取纵向磁化强度。我们应用这种方法观察了微波辐照的电子自旋晶格弛豫时间为T1〜1ms的氮氧化物掺杂的全氘代聚苯乙烯薄膜在微波辐照下的纵向磁化的迅速变化。该协议使我们能够发现长寿命的悬臂大频移。根据其大小,寿命和场依赖性,我们暂时将此持续信号归因于氘核自旋磁化,该氘化自旋是由一氧化氮自旋的极化转移产生的。

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