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Fabrication and Spectroscopy of Thin Films for Power-Gated Holeburning

机译:功率门控烧蚀薄膜的制备和光谱学

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摘要

The fabrication of spectral storage materials presents a great challenge of tailoring the optical properties of a solid at the atomic scale. We show that by a careful choice of a host material and the luminescent rare earth centers created in it, thin film structures can be fabricated using pulsed laser deposition. It is shown that these structures can be tailored to satisfy the material requirements for the power-gated spectral holeburning, one of the most successful techniques for the spectral storage. In the form of multilayer thin film structures, these tailored materials can provide surface storage densities exceeding a terabit per square inch. Possibilities of tailoring new rare earth centers that can further multiply the storage densities have been discussed. Experimental data has been presented for the fabrication and characterization of such impurity based europium centers in MgS and CaS by chemically controlled pulsed laser deposition.
机译:光谱存储材料的制造提出了在原子尺度上调整固体的光学性质的巨大挑战。我们表明,通过仔细选择主体材料和在其中创建的发光稀土中心,可以使用脉冲激光沉积来制造薄膜结构。结果表明,可以对这些结构进行定制以满足功率门控光谱空穴燃烧的材料要求,这是光谱存储最成功的技术之一。这些多层材料以多层薄膜结构的形式提供的表面存储密度超过了每平方英寸1 TB的容量。已经讨论了定制新的稀土中心以进一步增加存储密度的可能性。已经提出了通过化学控制脉冲激光沉积法在MgS和CaS中制造和表征此类基于杂质的euro中心的实验数据。

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