首页> 外文会议>Conference on Optical metrology roadmap for the semiconductor, optical, and data storage industries >A Versatile Optical System for Static and Dynamic Thermo-Magnetic Recording Using A Scanning Laser Microscope
【24h】

A Versatile Optical System for Static and Dynamic Thermo-Magnetic Recording Using A Scanning Laser Microscope

机译:一种多功能光学系统,用于使用扫描激光显微镜静态和动态热磁录制

获取原文

摘要

Scanning Laser Microscopes (SLM) have been used to characterise the magnetic domain properties of various magnetic and magneto-optical materials. The SLM in our laboratory has been designed to enable both static and dynamic read-write operations to be performed on stationary media. In a conventional (static) SLM, data bits are recorded thermo-magnetically by focusing a pulse of laser light onto the sample surface.If the laser beam has a Gaussian intensity distribution (TEM_(00)) then so will the focused laser spot. The resultant temperature profile will largely mirror the intensity distribution of the focused spot, and in the region where the temperature is sufficiently high for switching to occur, in the presence of bias field, a circular data bit will be recorded. However, in a real magneto-optical drive the bits are written onto non-stationary media, and the resultant bit will be non-circular. A versatile optical system has been developed to facilitate both recording and imaging of data bits. To simulate the action of a Magneto-Optical drive, the laser is pulsed via an Acousto-Optic Modulator, whilst being scanned across the sample using a galvanometer mounted mirror, thus imitating a storage medium rotating above a MO head with high relative velocity between the beam and medium. Static recording is simply achieved by disabling the galvanometer scan mirror. Polar magneto-optic Kerr effect images are acquired using multiple-segment photo-detectors for diffraction-limited scanned spot detection, with either specimen scanning for highest resolution or beam scanning for near real-time image acquisition. Results will be presented to illustrate the systems capabilities.
机译:扫描激光显微镜(SLM)已被用于表征各种磁性和磁光材料的磁畴性能。我们实验室中的SLM旨在使静态和动态读写操作能够在静止介质上执行。在传统的(静态)SLM中,通过将激光脉冲聚焦到样品表面上,记录热磁性比特。如果激光束具有高斯强度分布(TEM_(00)),则聚焦激光斑也将被聚焦激光点。得到的温度分布在很大程度上将在很大程度上反映聚焦斑点的强度分布,并且在偏置场的存在下,将温度足够高用于切换的区域中,将记录圆形数据位。然而,在真实的磁光驱动器中,比特写入非静止介质上,并且所得位将是非圆形的。已经开发了一种多功能光学系统来促进数据位的记录和成像。为了模拟磁光驱动器的动作,激光器通过声光调制器脉冲,同时使用电流计安装镜在样品上扫描,从而模仿旋转在MO头上的存储介质,相对速度光束和媒介。通过禁用电流计扫描镜,简单地实现了静态录制。使用多段照片探测器获取极性磁光kerr效果图像,用于衍射限制扫描光斑检测,具有标本扫描,用于近实时图像采集的最高分辨率或光束扫描。将提出结果以说明系统功能。

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