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Permanent and Transient Refractive Index Gratings in Rare-Earth Activated Silicate Glasses

Permanent and Transient Refractive Index Gratings in Rare-Earth Activated Silicate Glasses
稀土激活硅酸盐玻璃中的永久和瞬态折射率光栅
批准号:
9705284
负责人:
James Wicksted
金额:
$37.5万
依托单位:
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
1997
资助国家:
美国
项目状态:
已结题
起止时间:
1997-07-15 至 2001-06-30

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中文摘要
翻译
小行星9705284狄克逊 这是一个新的项目,在稀土激活硅酸盐玻璃中形成永久和瞬态折射率光栅的稀土掺杂硅酸盐玻璃的物理。 这些研究将有助于为定制这些介质的光折变特性,用于频率选择开关、全息存储器、分布反馈激光器以及光信号处理中的其他应用提供物理基础。 玻璃是在内部合成的,并表征光栅强度和动力学特性。 这些测量支持的理论研究和实验研究的声子物理和输运性质的玻璃。 PI希望展示一个使用瞬态光栅的频率选择性光开关的原型。 为了增加光通信网络的容量,这种设备是重要的。 这是一个关于稀土掺杂硅酸盐玻璃物理的新项目,用于在稀土激活硅酸盐玻璃中形成永久和瞬态折射率光栅。 如果不同光波携带的信息沿着同一根光纤同时传输,光纤电话网的容量就可以大大增加,而不需要安装新的电缆。 要做到这一点,必须能够切换和分离这些不同的光波,以便信息到达正确的接收器。 光波长选择滤波器和开关是实现这一点的有趣手段。 本研究项目旨在了解使含稀土硅酸盐玻璃成为制造这些开关和过滤器的一类材料的物理过程和化学成分。 这项研究的结果有望为定制玻璃化学和加工提供“路线图”,以生产此类高效设备。 这项工作的预期成果之一将是原型波长。 ***
英文摘要
9705284 Dixon This is a new project on the physics of rare earth doped silicate glasses for the formation of permanent and transient refractive index gratings in rare-earth activated silicate glasses. These studies will help develop a pjysical basis for tailoring the photorefractive properties of these media for frequency-selective switches, holographic memories, distributed feedback lasers, and other applications in optical signal processing. Glasses are synthesized in-house and characterized for properties of grating strength and kinetics. These measurements are supported by theoretical studies and by experimental studies of the phonon physics and transport properties of the glasses. The PI's expect to demonstrate a prototype frequency-selective optical switch using transient gratings. Such a device is important in order to increase the capacity of optical communications networks. %%% This is a new project on the physics of rare earth doped silicate glasses for the formation of permanent and transient refractive index gratings in rare-earth activated silicate glasses. The capacity of fiber optical telephone networks can be greatly increased, without installing new cable, if messages carried by different light waves are transmitted simultaneously along the same fiber. To do this, it is essential to be able to switch and separate these different light waves so that the messages arrives at the correct receiver. Light wavelength-selective filters and switches are an interesting means of accomplishing this. The present research project is directed toward understanding the physical processes and chemical compositions that make rare earth containing silicate glasses a class of materials in which to fabricate these switches and filters. The results of this research are expected to provide a "road map" for tailoring the glass chemistry and processing to produce efficient devices of this kind. One of the expected outcome of this work will be a prototype wavelength. ***
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  • 批准号:
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  • 项目类别:
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  • 资助金额:
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  • 财政年份:
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  • 项目类别:
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  • 资助金额:
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  • 批准年份:
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