首页> 外文会议>Spintronics symposium >Temperature and magnetic-field driven dynamics in artificial magnetic square ice
【24h】

Temperature and magnetic-field driven dynamics in artificial magnetic square ice

机译:人工磁场冰中的温度和磁场驱动动力学

获取原文

摘要

Artificial spin ices are often spoken of as being realisations of some of the celebrated vertex models of statistical mechanics, where the exact microstate of the system can be imaged using advanced magnetic microscopy methods. The fact that a stable image can be formed means that the system is in fact athermal and not undergoing the usual finite-temperature fluctuations of a statistical mechanical system. In this paper we report on the preparation of artificial spin ices with islands that are thermally fluctuating due to their very small size. The relaxation rate of these islands was determined using variable frequency focussed magneto-optic Kerr measurements. We performed magnetic imaging of artificial spin ice under varied temperature and magnetic field using X-ray transmission microscopy which uses X-ray magnetic circular dichroism to generate magnetic contrast. We have developed an on-membrane heater in order to apply temperatures in excess of 700 K and have shown increased dynamics due to higher temperature. Due to the 'photon-in, photon-out' method employed here, it is the first report where it is possible to image the microstates of an ASI system under the simultaneous application of temperature and magnetic field, enabling the determination of relaxation rates, coercivties, and the analysis of vertex population during reversal.
机译:通常介绍人工旋转ice,因为统计力学的一些庆祝的顶点模型的实现,可以使用先进的磁显微镜方法对系统的精确微稳压进行成像。可以形成稳定图像的事实意味着该系统实际上是动脉的并且不经历统计机械系统的通常有限温度波动。在本文中,我们报告了由于其非常小的尺寸而导致热波动的岛屿的人工旋转冰。使用可变频率聚焦的磁光克尔测量确定这些岛的松弛率。我们使用X射线透射显微镜通过X射线透射显微镜进行多种温度和磁场下的人工旋转冰的磁成像,该X射线透射圆形二色性能产生磁对比。我们开发了一个膜加热器,以施加超过700 k的温度,并且由于更高的温度而导致动力增加。由于此处采用的“光子 - in,光子输出”方法,是第一报告,其中可以在同时施加温度和磁场下图像图像的微氢化物,从而能够确定松弛率,逆转期间的铸造和分析顶点人口。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号