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Slow Light Enhanced Mid-infrared Nonlinear Optical Devices

Slow Light Enhanced Mid-infrared Nonlinear Optical Devices
慢光增强中红外非线性光学器件
批准号:
1232077
负责人:
Wounjhang Park
金额:
$37.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-09-01 至 2016-08-31

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中文摘要
翻译
该计划的目标是进行新型非线性材料和波导设计的实验研究,并开发一种紧凑的集成光子器件平台,用于在中红外光谱区工作的非线性光学器件。目前在中红外波段的非线性光学器件还很缺乏,本研究计划旨在填补这一空白,其智力上的优点是:(1)低损耗慢光传输的新型器件结构;(2)中红外波段的新型可调谐光源和放大器。慢光器件基于光子晶体,使慢光所需的色散工程,但有根本不同的设计,以规避散射损耗所施加的基本限制。此外,该器件将在硫属化物材料系统中实现,具有高非线性和拉曼增益,长红外透明性和高玻璃化转变温度。首先,拟议的工作将广泛影响应用物理和材料科学世界提供了一个新的一类设备的基础上非线性增强慢光。超低非线性阈值的能力将为使用标准、低成本激光器的器件开辟广阔的应用空间。在中红外波段展示低阈值非线性光学器件的潜力将在传感、光谱、通信、医学等领域的应用中产生变革性的影响。该项目还旨在将研究与本科和研究生教育相结合,吸引代表性不足的少数民族学生,并向公众提供外联服务。
英文摘要
The objective of this program is to conduct experimental investigation of novel nonlinear material andwaveguide designs and to develop a compact, integrated photonic device platform for nonlinear opticaldevices operating in the mid-infrared spectral region. There is a current dearth of nonlinear opticaldevices in the mid-infrared and the proposed research program aims to fill this void.The intellectual merits are: (1) novel device architecture for slow light propagation with low loss and (2)new tunable light sources and amplifiers for the mid-infrared frequency region. The slow light devicesare based on photonic crystals to enable dispersion engineering necessary for slow light but has radicallydifferent designs to circumvent the fundamental limits imposed by scattering loss. Additionally, thedevices will be implemented in a chalcogenide material system, with high nonlinearity and Raman gain,long infrared transparency, and a high glass transition temperature.The broader impacts are many. First, the proposed work will broadly impact the applied physics andmaterials science world by providing a new class of devices based on nonlinear-enhancement from slowlight. The capability of ultralow threshold for nonlinearities will open a wide application space for the useofdevices with standard, low cost lasers. The potential to demonstrate a low-threshold nonlinear opticaldevice in the mid-infrared will be transformative for applications in sensing, spectroscopy,communications, medicine and more. The project is also designed to integrate research with education atboth undergraduate and graduate levels, attract underrepresented minority students, and offer outreach togeneral public.
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