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A direct-overwrite system for magneto-optical storage systems with circularly magnetized control layer

机译:具有圆形磁化控制层的磁光存储系统的直接覆盖系统

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The principles of a new direct-overwrite system for magnetooptical memory systems are investigated. In this system, the conductive layer of the heatsink is magnetic with an in-plane easy axis parallel to the data tracks. Magnetic charge windows are created in the latter layer along the data tracks on the flanks of the temperature profiles produced by the focused laser energy. By varying the laser power, the charge and the associated field windows are modified and displaced with respect to the storage layer. Thus, the total field is reversed at the critical rim in the storage layer at which M is adjustable. Write fields larger than 40 kA/m and data rates on the order of 10 to 20 Mb/s can be realized. The performance of the system is studied by means of three-dimensional finite-element calculations of the temperature distribution in the moving film stack and three-dimensional field calculations. Appropriate control layers have been produced, and their stability has been experimentally investigated.
机译:研究了用于磁光存储系统的新型直接覆盖系统的原理。在该系统中,散热器的导电层是磁性的,其平面内易轴平行于数据磁道。在后一层中,沿着聚焦激光能量产生的温度分布图侧面的数据磁道创建了磁电荷窗口。通过改变激光功率,电荷和相关的场窗被修改并相对于存储层移位。因此,总场在M可调节的存储层的临界边缘处反转。可以实现大于40 kA / m的写入场和10到20 Mb / s的数据速率。通过对活动薄膜叠堆中的温度分布进行三维有限元计算和三维场计算来研究系统的性能。已经产生了合适的控制层,并且已经通过实验研究了它们的稳定性。

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