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Spin amplification in solution magnetic resonance using radiation damping

机译:使用辐射阻尼的溶液磁共振自旋放大

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The sensitive detection of dilute solute spins is critical to biomolecular NMR. In this work, a spin amplifier for detecting dilute solute magnetization is developed using the radiation damping interaction in solution magnetic resonance. The evolution of the solvent magnetization, initially placed along the unstable -z direction, is triggered by the radiation damping field generated by the dilute solute magnetization. As long as the radiation damping field generated by the solute is larger than the corresponding thermal noise field generated by the sample coil, the solute magnetization can effectively trigger the evolution of the water magnetization under radiation damping. The coupling between the solute and solvent magnetizations via the radiation damping field can be further improved through a novel bipolar gradient scheme, which allows solute spins with chemical shift differences much greater than the effective radiation damping field strength to affect the solvent magnetizations more efficiently. Experiments performed on an aqueous acetone solution indicate that solute concentrations on the order of 10(-5) that of the solvent concentration can be readily detected using this spin amplifier.
机译:稀释溶质自旋的灵敏检测对生物分子NMR至关重要。在这项工作中,利用溶液磁共振中的辐射阻尼相互作用,开发了一种用于检测稀溶质磁化强度的自旋放大器。最初沿不稳定的-z方向放置的溶剂磁化强度的演变是由稀溶质磁化强度产生的辐射衰减场触发的。只要溶质产生的辐射衰减场大于样品线圈产生的相应热噪声场,溶质磁化就可以有效地触发辐射衰减下水磁化的演化。通过新型的双极梯度方案可以进一步改善溶质与溶剂磁化强度之间通过辐射阻尼场的耦合,该方案允许溶质自旋的化学位移差异远大于有效辐射衰减场强,从而更有效地影响溶剂磁化强度。在丙酮水溶液上进行的实验表明,使用该旋转放大器可以很容易地检测出溶质浓度约为溶剂浓度的10(-5)。

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