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A Magneto-Optical Spatial Light Modulator Driven by Spin Transfer Switching for 3D Holography Applications

机译:由自旋转移开关驱动的3D全息应用的磁光空间光调制器

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摘要

We have successfully fabricated a basic magneto-optical spatial light modulator (MO-SLM) device driven by spin-transfer-switching (STS), which we call Spin-SLM technology. The SLM device is comprised of a one dimensional ten-pixel light modulation array (1 ×10 pixels) with a fine pitch of 1 μm. The light modulation pixels were composed of Gd-Fe based giant magneto resistance (GMR) devices, with a free layer of Gd-Fe, an Ag spacer and a Co-Fe/Tb-Fe-Co pinned layer. The GMR devices were sandwiched by a Cu bottom and Indium zinc oxide top electrodes in order to inject current perpendicular to the film plane for switching. Incident light penetrating the transparent top electrode can be modulated due to its magneto-optic Kerr effect with the Gd-Fe free layer. The fabricated device cell size is 220×300 nm. We confirmed successful switching of the individual free layers, which was controlled by STS. We have also fabricated magnetic hologram patterns with the same magnetic materials used in the light modulation layer of the Spin-SLM device in order to determine its feasibility in display applications. The pixel pitch of the pattern was one micron and a reconstructed image by laser light was successfully observed with a wide viewing zone angle as 38 deg, which is nearly the same value expected from calculations. Although these patterns do not have an electrode to switch the magnetization direction, we confirmed the potential of Spin-SLM technology as a display device for 3D holography applications.
机译:我们已经成功地制造了由自旋转移开关(STS)驱动的基本磁光空间光调制器(MO-SLM)器件,我们将其称为Spin-SLM技术。 SLM装置由1微米的精细间距的一维十像素光调制阵列(1×10像素)组成。光调制像素由基于Gd-Fe的巨磁电阻(GMR)器件组成,具有Gd-Fe的自由层,Ag间隔层和Co-Fe / Tb-Fe-Co固定层。 GMR器件被铜底电极和铟锌氧化物顶电极夹在中间,以注入垂直于薄膜平面的电流进行切换。透过透明顶部电极的入射光可以通过无Gd-Fe层的磁光Kerr效应进行调制。所制造的器件单元尺寸为220×300nm。我们确认成功切换了由STS控制的各个自由层。为了确定其在显示应用中的可行性,我们还用与Spin-SLM器件的光调制层中使用的磁性材料相同的磁性材料制作了全息图图案。图案的像素间距为1微米,并且成功地在38度的宽视角范围内观察到了激光重建的图像,该角度与计算所得的值几乎相同。尽管这些图案没有电极来切换磁化方向,但我们确认了Spin-SLM技术作为3D全息应用显示设备的潜力。

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