论文标题

通过突然的热跳跃的无微波动态核极化

Microwave-free dynamic nuclear polarization via sudden thermal jumps

论文作者

Meriles, Carlos A., Zangara, Pablo R.

论文摘要

动态核极化(DNP)目前是增强核磁共振测量灵敏度的首选策略,但其应用依赖于使用高频微波处理来操纵电子旋转,这是随着施加的磁场生长而越来越苛刻的任务。在这里,我们研究了一个托管一个偏振剂的系统的动力学,该动力是由两个不同的磁磁中心在水平抗口气附近形成的动力学。从理论上讲,我们表明,在循环方案下,核自旋有效地极化,该协议结合了交替的热跳和连接杂种状态与相反的核和电子自旋对齐的射频脉冲。这一过程的核心是任何一种电子自旋物种的自旋晶格松弛时间之间的差异,每次热跳后将电子自旋浴暂时从平衡中驱逐出来。不需要微波激发,这种增强核极化的途径可能会很方便,尤其是在偏振剂被设计为具有高磁场处的电子水平抗穿刺的情况下。

Dynamic Nuclear Polarization (DNP) presently stands as the preferred strategy to enhance the sensitivity of nuclear magnetic resonance measurements, but its application relies on the use of high-frequency microwave to manipulate electron spins, an increasingly demanding task as the applied magnetic field grows. Here we investigate the dynamics of a system hosting a polarizing agent formed by two distinct paramagnetic centers near a level anti-crossing. We theoretically show that nuclear spins polarize efficiently under a cyclic protocol that combines alternating thermal jumps and radio-frequency pulses connecting hybrid states with opposite nuclear and electronic spin alignment. Central to this process is the difference between the spin-lattice relaxation times of either electron spin species, transiently driving the electronic spin bath out of equilibrium after each thermal jump. Without the need for microwave excitation, this route to enhanced nuclear polarization may prove convenient, particularly if the polarizing agent is designed to feature electronic level anti-crossings at high magnetic fields.

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