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InP-based MEMS-tunable Optical Filters and Switches

InP-based MEMS-tunable Optical Filters and Switches
基于 InP 的 MEMS 可调谐光学滤波器和开关
批准号:
0401087
负责人:
Reza Ghodssi
金额:
$0.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-04-01 至 2009-09-30

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中文摘要
翻译
该项目的目标是开发和测试用于宽带光网络的波长选择性宽可调(1250-1650 nm)谐振型微腔滤光器和开关,该滤光器和开关采用片上静电微机械驱动的磷化铟(InP)波导和高反射单片水平镜。这项工作建立在PI发起的实验研究的基础上,以使InP成为适用于微光机电系统(MOEMS)的材料,使有源和无源光电子器件的单片集成达到了新的水平,这在传统的硅基MEMS中是不可能的。智能优势:MEMS通过在基于波导的低功率光子集成电路(PIC)中实现由两个高反射镜约束的可变长度微腔,提供了一种简单实用的宽波长调谐机制,通常优于相应的静态配置。这一事实有助于加快智能光网络的渗透,使其更接近消费者,从而更快、更容易地获取信息,从而在包括教育、医疗保健和商业在内的所有领域产生全面影响。电子束-光刻定义的深腐蚀亚微米复合反射镜结构的集成将促进MEMS与纳米技术的集成。这项拟议的研究将加强PI‘s小组正在进行的基于InP的光学MEMS计划。PI管理着一批本科生和研究生,其中大多数是美国公民。MSAL还为短期合作研究项目接待了国际交换生和高级研究科学家。该合作项目是UMD工程女性项目的成员,定期指导所有级别的学生(从中学到研究生)。这些活动将直接影响UMD系统集成课程开发的性质,招聘优秀学生(已经很明显),为行业学生创造实习机会,并通过区域MEMS联盟研讨会向更大的社区传播知识,最终通过参考期刊出版物。
英文摘要
The objective of the project is to develop and test wavelength-selective widely tunable (1250-1650 nm) resonant microcavity filters and switches by on-chip electrostatic micro-electro-mechanical actuation of indium phosphide (InP) waveguides and highly reflective monolithic horizontal mirrors, for broadband optical networks. The work builds upon experimental research initiated by the PI to establish InP as a suitable material for micro-opto-electro-mechanical systems (MOEMS), permitting a new level of monolithic integration of active and passive optoelectronic devices, impossible in traditional silicon-based MEMS.Intellectual Merits: MEMS provide a simple and useful broad wavelength-tuning mechanism, often superior to the corresponding static configuration, by realizing variable-length microcavities bound by two highly reflective mirrors in waveguide-based low-power Photonic Integrated Circuits (PIC).Broader Impacts:Integrated MOEMS devices are inherently miniaturized and mass-producible; a fact that helps in accelerating the penetration of intelligent optical networks closer to the consumers for faster and easier access to information, leading to sweeping impact in all fields including education, healthcare, and commerce. The integration of e-beam-lithographically defined deep-etched sub-micron composite mirror structures would boost the integration of MEMS with nanotechnology. The proposed research will strengthen an ongoing InP-based Optical MEMS program in the PI's group. The PI supervises a number of undergraduate and graduate students, majority of whom are US citizens. MSAL has also hosted international exchange students and senior research scientists for short-term collaborative research projects. The co-PI is a member of the Women in Engineering program at the UMD, and regularly mentors students of all levels (from middle school to graduate school). These activities will directly impact the nature of system integration curriculum development at UMD, recruitment of outstanding students (already evident), creation of internship opportunities for students in industry, and dissemination of knowledge to a much larger community through the regional MEMS Alliance workshops and eventually, refereed journal publications.
期刊论文(0)
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