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Nanoscale coherent optical components
其他题名Nanoscale coherent optical components
LIEBER, CHARLES, M.; DUAN, XIANGFENG; HUANG, YU; AGARWAL, RITESH
2004-01-29
专利权人PRESIDENT AND FELLOWS OF HARVARD COLLEGE
公开日期2004-01-29
授权国家世界知识产权组织
专利类型发明申请
摘要This invention generally relates to nanotechnology and nanoelectronics as well as associated methods and devices. In particular, the invention relates to nanoscale optical components such as electroluminescence devices (e.g., LEDs), amplified stimulatedemission devices (e.g., lasers), waveguides, and optical cavities (e.g., resonators). Articles and devices of a size greater than the nanoscale are also included. Such devices can be formed from nanoscale wires such as nanowires or nanotubes. In some cases, the nanoscale wire is a single crystal. In one embodiment, the nanoscale laser is constructed as a Fabry-Perot cavity, and is driven by electrical injection. Any electrical injection source may be used. For example, electrical injection may be accomplished through a crossed wire configuration, an electrode or distributed electrode configuration, or a core/shell configuration. The output wavelength can be controlled, for example, by varying the types of materials used to fabricate the device. One or more such nanoscale lasers may also be integrated with other nanoscale components within a device.
其他摘要本发明一般涉及纳米技术和纳米电子学以及相关的方法和装置。特别地,本发明涉及纳米级光学元件,例如电致发光器件(例如LED),放大的激发发射器件(例如激光器),波导和光学腔(例如,谐振器)。还包括尺寸大于纳米级的制品和装置。这种器件可以由纳米级导线如纳米线或纳米管形成。在某些情况下,纳米级线是单晶。在一个实施例中,纳米级激光器被构造为法布里 - 珀罗腔,并且通过电注入来驱动。可以使用任何电注入源。例如,电注入可以通过交叉线配置,电极或分布式电极配置或核/壳配置来实现。例如,可以通过改变用于制造器件的材料类型来控制输出波长。一个或多个这样的纳米级激光器也可以与装置内的其他纳米级部件集成。
申请日期2003-07-21
专利号WO2004010552A1
专利状态未确认
申请号PCT/US2003/022753
公开(公告)号WO2004010552A1
IPC 分类号H01S5/347 | H01S5/00 | H01S5/20 | G11C13/02 | H01S5/343 | H01S3/14 | H01S5/34 | H01S5/12 | H01S5/02 | H01S5/10
专利代理人OYER, TIMOTHY, J.
代理机构-
文献类型专利
条目标识符http://ir.opt.ac.cn/handle/181661/88952
专题半导体激光器专利数据库
作者单位PRESIDENT AND FELLOWS OF HARVARD COLLEGE
推荐引用方式
GB/T 7714
LIEBER, CHARLES, M.,DUAN, XIANGFENG,HUANG, YU,et al. Nanoscale coherent optical components. WO2004010552A1[P]. 2004-01-29.
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