论文标题

镁散射平台

A Magnon Scattering Platform

论文作者

Zhou, Tony X., Carmiggelt, Joris J., Gächter, Lisa M., Esterlis, Ilya, Sels, Dries, Stöhr, Rainer J., Du, Chunhui, Fernandez, Daniel, Rodriguez-Nieva, Joaquin F., Büttner, Felix, Demler, Eugene, Yacoby, Amir

论文摘要

散射实验彻底改变了我们对自然的理解。例子包括发现细胞核,晶体学和DNA双螺旋结构的发现。散射技术因所使用的颗粒的类型而不同,这些粒子与目标材料的相互作用以及所使用的波长范围。在这里,我们演示了一个新的二维桌面散射平台,用于探索介质长度尺度上材料的磁性特性。长期寿命,相干宏伟的激发是在YIG的薄膜中产生的,并散布在沉积在其表面上的磁目标。然后使用扫描NV中心磁力计记录散射波,该磁力计允许在低温到环境环境的条件下进行次波长成像和操作。尽管大多数散射平台仅测量散射波的强度,但我们的成像方法允许空间确定散射波的振幅和相位,从而可以系统地重建目标散射电位。我们的实验结果与这种几何形状的理论预测一致,并揭示了目标的磁反应的几个异常特征,包括在目标边缘附近的抑制和沿垂直于表面波传播方向的方向梯度的梯度。我们的结果建立了镁散射实验,作为研究相关多体系统的新平台。

Scattering experiments have revolutionized our understanding of nature. Examples include the discovery of the nucleus, crystallography, and the discovery of the double helix structure of DNA. Scattering techniques differ by the type of the particles used, the interaction these particles have with target materials and the range of wavelengths used. Here, we demonstrate a new 2-dimensional table-top scattering platform for exploring magnetic properties of materials on mesoscopic length scales. Long lived, coherent magnonic excitations are generated in a thin film of YIG and scattered off a magnetic target deposited on its surface. The scattered waves are then recorded using a scanning NV center magnetometer that allows sub-wavelength imaging and operation under conditions ranging from cryogenic to ambient environment. While most scattering platforms measure only the intensity of the scattered waves, our imaging method allows for spatial determination of both amplitude and phase of the scattered waves thereby allowing for a systematic reconstruction of the target scattering potential. Our experimental results are consistent with theoretical predictions for such a geometry and reveal several unusual features of the magnetic response of the target, including suppression near the target edges and gradient in the direction perpendicular to the direction of surface wave propagation. Our results establish magnon scattering experiments as a new platform for studying correlated many-body systems.

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