Spin resonance spectroscopy with an electron microscope

IF 5.6 2区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY
Philipp Haslinger, Stefan Nimmrichter and Dennis Rätzel
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引用次数: 0

Abstract

Coherent spin resonance methods, such as nuclear magnetic resonance and electron spin resonance spectroscopy, have led to spectrally highly sensitive, non-invasive quantum imaging techniques. Here, we propose a pump-probe spin resonance spectroscopy approach, designed for electron microscopy, based on microwave pump fields and electron probes. We investigate how quantum spin systems couple to electron matter waves through their magnetic moments and how the resulting phase shifts can be utilized to gain information about the states and dynamics of these systems. Notably, state-of-the-art transmission electron microscopy provides the means to detect phase shifts almost as small as that due to a single electron spin. This could enable state-selective observation of spin dynamics on the nanoscale and indirect measurement of the environment of the examined spin systems, providing information, for example, on the atomic structure, local chemical composition and neighboring spins.
利用电子显微镜进行自旋共振光谱分析
相干自旋共振方法,如核磁共振和电子自旋共振光谱法,已经发展出光谱灵敏度高的非侵入式量子成像技术。在此,我们提出了一种基于微波泵场和电子探针的泵探自旋共振光谱学方法,该方法专为电子显微镜而设计。我们研究了量子自旋系统如何通过其磁矩与电子物质波耦合,以及如何利用由此产生的相移来获取这些系统的状态和动力学信息。值得注意的是,最先进的透射电子显微镜提供了检测几乎与单个电子自旋相等小的相移的方法。这样就可以在纳米尺度上对自旋动力学进行状态选择性观测,并间接测量所检查的自旋系统的环境,例如提供有关原子结构、局部化学成分和邻近自旋的信息。
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来源期刊
Quantum Science and Technology
Quantum Science and Technology Materials Science-Materials Science (miscellaneous)
CiteScore
11.20
自引率
3.00%
发文量
133
期刊介绍: Driven by advances in technology and experimental capability, the last decade has seen the emergence of quantum technology: a new praxis for controlling the quantum world. It is now possible to engineer complex, multi-component systems that merge the once distinct fields of quantum optics and condensed matter physics. Quantum Science and Technology is a new multidisciplinary, electronic-only journal, devoted to publishing research of the highest quality and impact covering theoretical and experimental advances in the fundamental science and application of all quantum-enabled technologies.
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