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首页> 外文期刊>Display Technology, Journal of >Submicron Magneto-Optical Spatial Light Modulation Device for Holographic Displays Driven by Spin-Polarized Electrons
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Submicron Magneto-Optical Spatial Light Modulation Device for Holographic Displays Driven by Spin-Polarized Electrons

机译:用于自旋极化电子驱动的全息显示器的亚微米磁光空间光调制装置

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摘要

We have proposed a spin transfer switching (STS MO-SLM) device, based on Magneto-optical (MO) spatial light-modulation and driven by spin-polarized current flow, and confirmed its basic operation and characteristics experimentally. The proposed SLM device can be operated without active-matrix devices, has a spatial resolution as small as several hundred nanometers and possesses the potential for being driven at ultra-high speed of several tens of nanoseconds. Unlike existing SLM devices, this device satisfies both the size and speed requirements of SLMs for use in displaying holographic three-dimensional (3D) moving images. To improve the light modulation characteristics of SLM device, we carried out studies on magnetic films with perpendicular magnetic anisotropy to obtain large magneto-optical signals, which enabled us to realize enhanced light modulation performance. In addition, we measured a MO signal that was about twenty-times larger than that possible with in-plane anisotropy. We conclude that the MO-SLM device that we are developing is suitable for displaying future super-high definition, holographic three-dimensional moving images.
机译:我们提出了一种基于磁光(MO)空间光调制并受自旋极化电流驱动的自旋转移开关(STS MO-SLM)装置,并通过实验证实了其基本操作和特性。所提出的SLM设备可以在没有有源矩阵设备的情况下运行,其空间分辨率低至数百纳米,并且具有以数十纳秒的超高速驱动的潜力。与现有的SLM设备不同,此设备满足用于显示全息三维(3D)运动图像的SLM的尺寸和速度要求。为了改善SLM器件的光调制特性,我们对具有垂直磁各向异性的磁性膜进行了研究,以获得较大的磁光信号,从而使我们能够实现增强的光调制性能。此外,我们测得的MO信号比面内各向异性可能产生的信号大二十倍。我们得出的结论是,我们正在开发的MO-SLM设备适合显示未来的超高清全息三维运动图像。

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