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    • 4. 发明授权
    • Group-delay-dispersive multilayer-mirror structures and method for
designing same
    • 群延迟分散多层镜结构及其设计方法
    • US6154318A
    • 2000-11-28
    • US441002
    • 1999-11-16
    • R. Russel AustinR. Ian Edmond
    • R. Russel AustinR. Ian Edmond
    • G02B5/28G02B5/08G02B5/26H01S5/12G02B1/10H01S3/08H01S3/082
    • G02B5/0883G02B5/0858
    • Negative Group-delay-dispersion mirror (NGDD-mirror) multilayer structures include a generally-orderly arrangement of layers or groups of layers in which the function of certain individual layers or groups of layers can be recognized and defined. The structures are broadly definable as a rear group of layers which are primarily responsible for providing a desired reflection level and reflection bandwidth together with a low and smoothly varying reflection phase-dispersion, and a front group of layers which are primarily responsible for producing high reflection phase-dispersion necessary for providing a desired NGDD level and bandwidth. The front group of layers relies on multiple resonant trapping mechanisms such as two or more effective resonant-cavities, employing one or more sub-quarter-wave layers to shape the phase-dispersion for providing a substantially-constant NGDD. In certain embodiments of the structures, a base layer or substrate of a highly-reflective metal can be used to reduce the number of dielectric layers needed to provide high reflectivity.
    • 负组延迟分散反射镜(NGDD-mirror)多层结构包括层或层组的一般有序布置,其中可以识别和限定某些单个层或多组层的功能。 这些结构可以广泛地定义为后面的层组,其主要负责提供期望的反射水平和反射带宽以及低和平滑变化的反射相位分散以及主要负责产生高反射的前面的层组 提供所需的NGDD级别和带宽所需的相位色散。 前组的层依赖于多个谐振捕获机构,例如两个或更多个有效的谐振腔,采用一个或多个亚四分之一波长的层来形成相位分散以提供基本上恒定的NGDD。 在结构的某些实施例中,可以使用高反射金属的基底层或衬底来减少提供高反射率所需的电介质层的数量。
    • 5. 发明授权
    • Turning prism for ultraviolet radiation
    • 转动棱镜进行紫外线辐射
    • US06980358B2
    • 2005-12-27
    • US10674239
    • 2003-09-29
    • Tracy F. ThonnR. Ian Edmond
    • Tracy F. ThonnR. Ian Edmond
    • G02B5/04G02B13/14G02B5/30
    • G02B5/04Y10S359/90
    • A truncated triangular prism has an entrance and an exit face perpendicular to each other and a reflecting face inclined at an angle α to the entrance face where α is about 135°−θB, and where θB is the external Brewster angle for the material of the prism at the wavelength of radiation to be reflected by the prism. A beam of p-polarized radiation directed into the prism through the entrance face at the Brewster angle is totally internally reflected from the reflecting face and leaves the exit face at the Brewster angle and at an angle of ninety degrees to the direction at which the radiation enters the prism.
    • 截头三角棱镜具有彼此垂直的入射面和出射面,反射面以与入射面成α角的方式倾斜,其中α为约135°-θB,并且其中θ B 是棱镜材料在辐射波长被棱镜反射的外部布鲁斯特角。 通过入口面以布鲁斯特角度引导入棱镜的p偏振光束从反射面全部内部反射,并将出射面离开布鲁斯特角度,并以与辐射方向成90度的角度离开 进入棱镜。
    • 6. 发明授权
    • Group-delay-dispersive multilayer-mirror structures and method for designing same
    • 群延迟分散多层镜结构及其设计方法
    • US06222673B1
    • 2001-04-24
    • US09135972
    • 1998-08-18
    • R. Russel AustinR. Ian Edmond
    • R. Russel AustinR. Ian Edmond
    • G02B110
    • G02B5/0883G02B5/0858
    • Negative Group-delay-dispersion mirror (NGDD-mirror) multilayer structures include a generally-orderly arrangement of layers or groups of layers in which the function of certain individual layers or groups of layers can be recognized and defined. The structures are broadly definable as a rear group of layers which are primarily responsible for providing a desired reflection level and reflection bandwidth together with a low and smoothly varying reflection phase-dispersion, and a front group of layers which are primarily responsible for producing high reflection phase-dispersion necessary for providing a desired NGDD level and bandwidth. The front group of layers relies on multiple resonant trapping mechanisms such as two or more effective resonant-cavities, employing one or more sub-quarter-wave layers to shape the phase-dispersion for providing a substantially-constant NGDD. In certain embodiments of the structures, a base layer or substrate of a highly-reflective metal can be used to reduce the number of dielectric layers needed to provide high reflectivity.
    • 负组延迟分散反射镜(NGDD-mirror)多层结构包括层或层组的一般有序布置,其中可以识别和限定某些单个层或多组层的功能。 这些结构可以广泛地定义为后面的层组,其主要负责提供期望的反射水平和反射带宽以及低和平滑变化的反射相位分散以及主要负责产生高反射的前面的层组 提供所需的NGDD级别和带宽所需的相位色散。 前组的层依赖于多个谐振捕获机构,例如两个或更多个有效的谐振腔,采用一个或多个亚四分之一波长的层来形成相位分散以提供基本上恒定的NGDD。 在结构的某些实施例中,可以使用高反射金属的基底层或衬底来减少提供高反射率所需的电介质层的数量。