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作为自旋动力学和磁共振探测手段的自发自旋噪声光谱学

Spectroscopy of spontaneous spin noise as a probe of spin dynamics and magnetic resonance.

作者信息

Crooker S A, Rickel D G, Balatsky A V, Smith D L

机构信息

National High Magnetic Field Laboratory, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.

出版信息

Nature. 2004 Sep 2;431(7004):49-52. doi: 10.1038/nature02804.

Abstract

Not all noise in experimental measurements is unwelcome. Certain fundamental noise sources contain valuable information about the system itself-a notable example being the inherent voltage fluctuations (Johnson noise) that exist across any resistor, which allow the temperature to be determined. In magnetic systems, fundamental noise can exist in the form of random spin fluctuations. For example, statistical fluctuations of N paramagnetic spins should generate measurable noise of order N spins, even in zero magnetic field. Here we exploit this effect to perform perturbation-free magnetic resonance. We use off-resonant Faraday rotation to passively detect the magnetization noise in an equilibrium ensemble of paramagnetic alkali atoms; the random fluctuations generate spontaneous spin coherences that precess and decay with the same characteristic energy and timescales as the macroscopic magnetization of an intentionally polarized or driven ensemble. Correlation spectra of the measured spin noise reveal g-factors, nuclear spin, isotope abundance ratios, hyperfine splittings, nuclear moments and spin coherence lifetimes-without having to excite, optically pump or otherwise drive the system away from thermal equilibrium. These noise signatures scale inversely with interaction volume, suggesting a possible route towards non-perturbative, sourceless magnetic resonance of small systems.

摘要

并非实验测量中的所有噪声都是不受欢迎的。某些基本噪声源包含有关系统本身的有价值信息——一个显著的例子是任何电阻器两端存在的固有电压波动(约翰逊噪声),它可用于确定温度。在磁性系统中,基本噪声可以以随机自旋涨落的形式存在。例如,即使在零磁场中,N个顺磁自旋的统计涨落也应产生量级为N自旋的可测量噪声。在此,我们利用这种效应来进行无扰动磁共振。我们使用非共振法拉第旋转来被动检测顺磁碱金属原子平衡系综中的磁化噪声;随机涨落产生自发自旋相干,其进动和衰减的特征能量和时间尺度与有意极化或驱动系综的宏观磁化相同。所测量的自旋噪声的相关光谱揭示了g因子、核自旋、同位素丰度比、超精细分裂、核矩和自旋相干寿命——而无需激发、光泵浦或以其他方式使系统偏离热平衡。这些噪声特征与相互作用体积成反比,这表明了一条实现小系统非扰动、无源磁共振的可能途径。

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