OPT OpenIR  > 半导体激光器专利数据库
Ultrathin Film Lasing
其他题名Ultrathin Film Lasing
SFEIR, MATTHEW Y.; APPAVOO, KANNATASSEN; LIU, XIAOZE; MENON, VINOD M.
2017-11-09
专利权人BROOKHAVEN SCIENCE ASSOCIATES, LLC
公开日期2017-11-09
授权国家美国
专利类型发明申请
摘要Technologies are described for methods to fabricate lasers to amplify light. The methods may comprise depositing nanoparticles on a substrate. The length, width, and height of the nanoparticles may be less than 100 nm. The methods may further comprise distributing the nanoparticles on the substrate to produce a film. The nanoparticles in the film may be coupled nanoparticles. The coupled nanoparticles may be in disordered contact with each other within the film. The distribution may be performed such that constructive interference of the light occurs by multiple scattering at the boundaries of the coupled nanoparticles within the film. The methods may comprise exposing the film to a power source.
其他摘要描述了制造激光以放大光的方法的技术。该方法可包括将纳米颗粒沉积在基底上。纳米颗粒的长度,宽度和高度可小于100nm。该方法可以进一步包括将纳米颗粒分布在基底上以产生膜。膜中的纳米颗粒可以是偶联的纳米颗粒。偶联的纳米颗粒可在膜内彼此无序接触。可以执行分布,使得通过在膜内的耦合纳米颗粒的边界处的多次散射来发生光的相长干涉。该方法可包括将膜暴露于电源。
主权项A method for fabricating a laser to amplify light, the method comprising: depositing nanoparticles on a substrate, wherein the length, width, and height of the nanoparticles are less than 100 nm; distributing the nanoparticles on the substrate to produce a film, wherein the nanoparticles in the film are coupled nanoparticles, the coupled nanoparticles are in disordered contact with each other within the film, and the distributing is performed such that constructive interference of the light occurs by multiple scattering at the boundaries of the coupled nanoparticles within the film; and exposing the film to a power source.
申请日期2017-05-04
专利号US20170324215A1
专利状态申请中
申请号US15/586821
公开(公告)号US20170324215A1
IPC 分类号H01S5/028 | H01S5/02 | G01N21/64
专利代理人-
代理机构-
文献类型专利
条目标识符http://ir.opt.ac.cn/handle/181661/57578
专题半导体激光器专利数据库
作者单位BROOKHAVEN SCIENCE ASSOCIATES, LLC
推荐引用方式
GB/T 7714
SFEIR, MATTHEW Y.,APPAVOO, KANNATASSEN,LIU, XIAOZE,et al. Ultrathin Film Lasing. US20170324215A1[P]. 2017-11-09.
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