INFRARED IMAGING MICROSCOPE USING TUNABLE LASER RADIATION
    1.
    发明申请
    INFRARED IMAGING MICROSCOPE USING TUNABLE LASER RADIATION 审中-公开
    使用激光激光辐射的红外成像显微镜

    公开(公告)号:US20160320597A1

    公开(公告)日:2016-11-03

    申请号:US15209596

    申请日:2016-07-13

    Abstract: An imaging microscope (12) for generating an image of a sample (10) comprises a beam source (14) that emits a temporally coherent illumination beam (20), the illumination beam (20) including a plurality of rays that are directed at the sample (10); an image sensor (18) that converts an optical image into an array of electronic signals; and an imaging lens assembly (16) that receives rays from the beam source (14) that are transmitted through the sample (10) and forms an image on the image sensor (18). The imaging lens assembly (16) can further receive rays from the beam source (14) that are reflected off of the sample (10) and form a second image on the image sensor (18). The imaging lens assembly (16) receives the rays from the sample (10) and forms the image on the image sensor (18) without splitting and recombining the rays.

    Abstract translation: 用于产生样品(10)的图像的成像显微镜(12)包括发射时间相干照明光束(20)的光束源(14),所述照明光束(20)包括指向 样品(10); 将光学图像转换为电子信号阵列的图像传感器(18); 以及成像透镜组件(16),其接收来自所述光束源(14)的透射通过所述样品(10)的光并在所述图像传感器(18)上形成图像。 成像透镜组件(16)可以进一步接收来自所述光束源(14)的从所述样品(10)反射的光线,并在所述图像传感器(18)上形成第二图像。 成像透镜组件(16)接收来自样品(10)的光线,并且在图像传感器(18)上形成图像而不分裂和重新组合光线。

    HIGH OUTPUT, MID INFRARED LASER SOURCE ASSEMBLY
    2.
    发明申请
    HIGH OUTPUT, MID INFRARED LASER SOURCE ASSEMBLY 有权
    高输出,MID红外激光源组件

    公开(公告)号:US20140097360A1

    公开(公告)日:2014-04-10

    申请号:US13629341

    申请日:2012-09-27

    Abstract: A laser source assembly for providing an assembly output beam includes a first MIR laser source, a second MIR laser source, and a beam combiner. The first MIR laser source emits a first MIR beam that is in the MIR range and the second MIR laser source emits a second MIR beam that is in the MIR range. Further, the beam combiner spatially combines the first MIR beam and the second MIR beam to provide the assembly output beam. With this design, a plurality MIR laser sources can be packaged in a portable, common module, each of the MIR laser sources generates a narrow linewidth, accurately settable MIR beam, and the MIR beams are combined to create a multiple watt assembly output beam having the desired power.

    Abstract translation: 用于提供组件输出光束的激光源组件包括第一MIR激光源,第二MIR激光源和光束组合器。 第一个MIR激光源发射位于MIR范围内的第一个MIR光束,第二个MIR激光源发射一个位于MIR范围内的第二个MIR光束。 此外,光束组合器在空间上组合第一MIR光束和第二MIR光束以提供组装输出光束。 通过这种设计,多个MIR激光源可以被封装在便携式公共模块中,每个MIR激光源产生窄线宽,精确可设定的MIR光束,并且MIR光束被组合以产生多瓦组件输出光束,其具有 所需的电力。

    Infrared imaging microscope using tunable laser radiation

    公开(公告)号:US10082654B2

    公开(公告)日:2018-09-25

    申请号:US15209596

    申请日:2016-07-13

    Abstract: An imaging microscope (12) for generating an image of a sample (10) comprises a beam source (14) that emits a temporally coherent illumination beam (20), the illumination beam (20) including a plurality of rays that are directed at the sample (10); an image sensor (18) that converts an optical image into an array of electronic signals; and an imaging lens assembly (16) that receives rays from the beam source (14) that are transmitted through the sample (10) and forms an image on the image sensor (18). The imaging lens assembly (16) can further receive rays from the beam source (14) that are reflected off of the sample (10) and form a second image on the image sensor (18). The imaging lens assembly (16) receives the rays from the sample (10) and forms the image on the image sensor (18) without splitting and recombining the rays.

    Infrared imaging microscope using tunable laser radiation
    4.
    发明授权
    Infrared imaging microscope using tunable laser radiation 有权
    红外成像显微镜使用可调激光辐射

    公开(公告)号:US09432592B2

    公开(公告)日:2016-08-30

    申请号:US14353487

    申请日:2012-10-25

    Abstract: An imaging microscope (12) for generating an image of a sample (10) comprises a beam source (14) that emits a temporally coherent illumination beam (20), the illumination beam (20) including a plurality of rays that are directed at the sample (10); an image sensor (18) that converts an optical image into an array of electronic signals; and an imaging lens assembly (16) that receives rays from the beam source (14) that are transmitted through the sample (10) and forms an image on the image sensor (18). The imaging lens assembly (16) can further receive rays from the beam source (14) that are reflected off of the sample (10) and form a second image on the image sensor (18). The imaging lens assembly (16) receives the rays from the sample (10) and forms the image on the image sensor (18) without splitting and recombining the rays.

    Abstract translation: 用于产生样品(10)的图像的成像显微镜(12)包括发射时间相干照明光束(20)的光束源(14),所述照明光束(20)包括指向 样品(10); 将光学图像转换为电子信号阵列的图像传感器(18); 以及成像透镜组件(16),其接收来自所述光束源(14)的透射通过所述样品(10)的光并在所述图像传感器(18)上形成图像。 成像透镜组件(16)可以进一步接收来自所述光束源(14)的从所述样品(10)反射的光线,并在所述图像传感器(18)上形成第二图像。 成像透镜组件(16)接收来自样品(10)的光线,并且在图像传感器(18)上形成图像而不分裂和重新组合光线。

    INFRARED IMAGING MICROSCOPE USING TUNABLE LASER RADIATION

    公开(公告)号:US20200333572A1

    公开(公告)日:2020-10-22

    申请号:US16825916

    申请日:2020-03-20

    Abstract: An imaging microscope (12) for generating an image of a sample (10) comprises a beam source (14) that emits a temporally coherent illumination beam (20), the illumination beam (20) including a plurality of rays that are directed at the sample (10); an image sensor (18) that converts an optical image into an array of electronic signals; and an imaging lens assembly (16) that receives rays from the beam source (14) that are transmitted through the sample (10) and forms an image on the image sensor (18). The imaging lens assembly (16) can further receive rays from the beam source (14) that are reflected off of the sample (10) and form a second image on the image sensor (18). The imaging lens assembly (16) receives the rays from the sample (10) and forms the image on the image sensor (18) without splitting and recombining the rays.

    INFRARED IMAGING MICROSCOPE USING TUNABLE LASER RADIATION

    公开(公告)号:US20190011686A1

    公开(公告)日:2019-01-10

    申请号:US16118100

    申请日:2018-08-30

    Abstract: An imaging microscope (12) for generating an image of a sample (10) comprises a beam source (14) that emits a temporally coherent illumination beam (20), the illumination beam (20) including a plurality of rays that are directed at the sample (10); an image sensor (18) that converts an optical image into an array of electronic signals; and an imaging lens assembly (16) that receives rays from the beam source (14) that are transmitted through the sample (10) and forms an image on the image sensor (18). The imaging lens assembly (16) can further receive rays from the beam source (14) that are reflected off of the sample (10) and form a second image on the image sensor (18). The imaging lens assembly (16) receives the rays from the sample (10) and forms the image on the image sensor (18) without splitting and recombining the rays.

    INFRARED IMAGING MICROSCOPE USING TUNABLE LASER RADIATION
    8.
    发明申请
    INFRARED IMAGING MICROSCOPE USING TUNABLE LASER RADIATION 有权
    使用激光激光辐射的红外成像显微镜

    公开(公告)号:US20140253714A1

    公开(公告)日:2014-09-11

    申请号:US14353487

    申请日:2012-10-25

    Abstract: An imaging microscope (12) for generating an image of a sample (10) comprises a beam source (14) that emits a temporally coherent illumination beam (20), the illumination beam (20) including a plurality of rays that are directed at the sample (10); an image sensor (18) that converts an optical image into an array of electronic signals; and an imaging lens assembly (16) that receives rays from the beam source (14) that are transmitted through the sample (10) and forms an image on the image sensor (18). The imaging lens assembly (16) can further receive rays from the beam source (14) that are reflected off of the sample (10) and form a second image on the image sensor (18). The imaging lens assembly (16) receives the rays from the sample (10) and forms the image on the image sensor (18) without splitting and recombining the rays.

    Abstract translation: 用于产生样品(10)的图像的成像显微镜(12)包括发射时间相干照明光束(20)的光束源(14),所述照明光束(20)包括指向 样品(10); 将光学图像转换为电子信号阵列的图像传感器(18); 以及成像透镜组件(16),其接收来自所述光束源(14)的透射通过所述样品(10)的光并在所述图像传感器(18)上形成图像。 成像透镜组件(16)可以进一步接收来自所述光束源(14)的从所述样品(10)反射的光线,并在所述图像传感器(18)上形成第二图像。 成像透镜组件(16)接收来自样品(10)的光线,并且在图像传感器(18)上形成图像而不分裂和重新组合光线。

    TUNABLE LIGHT SOURCE WITH FREQUENCY GENERATOR

    公开(公告)号:US20250093739A1

    公开(公告)日:2025-03-20

    申请号:US18818201

    申请日:2024-08-28

    Abstract: A tunable light source (10) that generates a source beam (12) having a tunable source frequency (12a) includes an emitter assembly (14), a first frequency generator (16), and a first filter (18). The emitter assembly (14) emits an emitter beam (14a), and the first frequency generator (16) receives the emitter beam (14a) and generates a plurality of first frequency lines (16b). The first filter (18) filters the first frequency lines (16b) to transmit a first filter beam (18a) that includes only one of the first frequency lines (16b). The light source (10) can include a second frequency generator (20) that converts the first filter beam (18a) into a plurality of second frequency lines (20b), and a second filter (22) that filters the second frequency lines (20b) to provide a second filter beam (22a) having the source frequency (12a).

    Infrared imaging microscope using tunable laser radiation

    公开(公告)号:US11852793B2

    公开(公告)日:2023-12-26

    申请号:US17579015

    申请日:2022-01-19

    Abstract: An imaging microscope (12) for generating an image of a sample (10) comprises a beam source (14) that emits a temporally coherent illumination beam (20), the illumination beam (20) including a plurality of rays that are directed at the sample (10); an image sensor (18) that converts an optical image into an array of electronic signals; and an imaging lens assembly (16) that receives rays from the beam source (14) that are transmitted through the sample (10) and forms an image on the image sensor (18). The imaging lens assembly (16) can further receive rays from the beam source (14) that are reflected off of the sample (10) and form a second image on the image sensor (18). The imaging lens assembly (16) receives the rays from the sample (10) and forms the image on the image sensor (18) without splitting and recombining the rays.

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