Invention Grant
- Patent Title: Spatially relaying radiation components
- Patent Title (中): 空间中继辐射元件
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Application No.: US14110757Application Date: 2012-04-05
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Publication No.: US09030733B2Publication Date: 2015-05-12
- Inventor: Oleg Pronin , Alexander Apolonskiy , Ferenc Krausz , Vladimir Pervak
- Applicant: Oleg Pronin , Alexander Apolonskiy , Ferenc Krausz , Vladimir Pervak
- Applicant Address: DE Munich DE Munich
- Assignee: Max-Planck-Gesellschaft zur Foerderung der Wissenschaften e.V.,Ludwig-Maximilians-Universitaet Muenchen
- Current Assignee: Max-Planck-Gesellschaft zur Foerderung der Wissenschaften e.V.,Ludwig-Maximilians-Universitaet Muenchen
- Current Assignee Address: DE Munich DE Munich
- Agency: Caesar, Rivise, Bernstein, Cohen & Pokotilow, Ltd.
- Priority: EP11003085 20110412
- International Application: PCT/EP2012/001541 WO 20120405
- International Announcement: WO2012/139744 WO 20121018
- Main IPC: H01S3/106
- IPC: H01S3/106 ; G02B27/10 ; G02B5/28 ; G01N21/25 ; H01S3/08

Abstract:
A method of spatially relaying a first radiation component (1) having a first wavelength and a second radiation component (2) having a second wavelength different from the first radiation component (1), using an optical relaying device (10) which comprises a transparent plate (11) having anti-reflection coatings (12, 13) on both side surfaces thereof, comprises transmitting the first radiation component (1) across the optical relaying device (10) with predetermined incident (a) and emergent angles (β), resp., wherein said anti-reflection coatings (12, 13) being effective for the first radiation component (1) at the incident and emergent angles (α, β), resp., and reflecting the second radiation component (2) at the optical relaying device (10) with a predetermined reflection angle (a) being equal to at least one of said incident and emergent angles (α, β), wherein the first and second radiation components (1, 2) are split from each other toward different directions or combined into a common beam path. Furthermore, an optical relaying device (10) and a resonator device, in particular enhancement cavity device (100) and a laser resonator, are described.
Public/Granted literature
- US20140036352A1 SPATIALLY RELAYING RADIATION COMPONENTS Public/Granted day:2014-02-06
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