- Patent Title: Physically operable and mechanically reconfigurable light sources
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Application No.: US16486774Application Date: 2018-02-19
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Publication No.: US11303089B2Publication Date: 2022-04-12
- Inventor: Holger Schmidt
- Applicant: The Regents of the University of California
- Applicant Address: US CA Oakland
- Assignee: The Regents of the University of California
- Current Assignee: The Regents of the University of California
- Current Assignee Address: US CA Oakland
- Agency: Carter, DeLuca & Farrell LLP
- International Application: PCT/US2018/018646 WO 20180219
- International Announcement: WO2018/152478 WO 20180823
- Main IPC: H01S3/102
- IPC: H01S3/102 ; H01S3/063 ; H01S3/02 ; H01S3/083 ; H01S3/0915 ; H01S3/213 ; H01S3/105 ; H01S5/12 ; H01S3/106 ; H01S3/1055 ; H01S5/34

Abstract:
A combination of microvalves and waveguides may enable the creation of reconfigurable on-chip light sources compatible with planar sample preparation and particle sensing architecture using either single-mode or multi-mode interference (MMI) waveguides. A first type of light source is a DFB laser source with lateral gratings created by the light valves. Moreover, feedback for creating a narrowband light source does not have to be a DFB grating in the active region. A DBR configuration (Bragg mirrors on one or both ends of the active region) or simple mirrors at the end of the cavity can also be used. Alternately, ring resonators may be created using a valve coupled to a bus waveguide where the active gain medium is either incorporated in the ring or inside an enclosed fluid. The active light source may be activated by moving a fluid trap and/or a solid-core optical component defining its active region.
Public/Granted literature
- US20210143605A1 PHYSICALLY OPERABLE AND MECHANICALLY RECONFIGURABLE LIGHT SOURCES Public/Granted day:2021-05-13
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