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The magnetic-resonance force microscope: a new tool for high-resolution, 3-D, subsurface scanned probe imaging

机译:磁共振力显微镜:用于高分辨率,3-D,地下扫描探头成像的新工具

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摘要

The magnetic-resonance force microscope (MRFM) is a novel scanned probe instrument which combines the three-dimensional (3-D) imaging capabilities of magnetic-resonance imaging with the high sensitivity and resolution of atomic-force microscopy. It will enable nondestructive, chemical-specific, high-resolution microscopic studies and imaging of subsurface properties of a broad range of materials. The MRFM has demonstrated its utility for study of microscopic ferromagnets, and it will enable microscopic understanding of the nonequilibrium spin polarization resulting from spin injection. Microscopic MRFM studies will provide unprecedented insight into the physics of magnetic and spin-based materials. We will describe the principles and the state-of-the-art in magnetic-resonance force microscopy, discuss existing cryogenic MRFM instruments incorporating high-Q, single-crystal microresonators with integral submicrometer probe magnets, and indicate future directions for enhancing MRFM instrument capabilities.
机译:磁共振力显微镜(MRFM)是一种新颖的扫描探针仪器,结合了磁共振成像的三维(3-D)成像功能以及原子力显微镜的高灵敏度和分辨率。它将能够进行无损,特定于化学的高分辨率显微研究,并对各种材料的表面性质进行成像。 MRFM已经证明了其在研究微观铁磁体中的实用性,并且将使人们能够从微观上理解自旋注入导致的非平衡自旋极化。微观MRFM研究将为磁性和自旋材料的物理学提供空前的见识。我们将描述磁共振力显微镜的原理和最新技术,讨论将高Q单晶微谐振器与亚微米测头磁体集成在一起的现有低温MRFM仪器,并指出增强MRFM仪器功能的未来方向。

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