38 research outputs found

    Wavelength locked laser including integrated wavelength selecting total internal reflection (TIR) Structure.

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    The basic concept of the invention is a wavelength locking device or feedback mechanism fabricated on the epiwafer in which a light emitting semiconductor device has also been fabricated

    Hybrid MOPA having narrowband oscillator and amplifier with integrated optical coupling.

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    This invention was disclosed in a FHOENICS Program Meeting on April 4, 2005. This invention utilizes the concepts of internal wavelength locking and gain switching to create high brightness optical pulses that range in pulse width from 20 picoseconds to 100s of picoseconds

    Surface-Emitting Qds Laser With A Monolithically Integrated Grating Outcoupler

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    Grating coupled surface emitting laser diodes were designed and fabricated from a 1270nm InAs QDs epi. The integrated outcoupler\u27s characteristics were compared with the grating simulation data. The advanced emitter\u27s performance enhanced the device applications. © 2009 OSA

    Broadband 2.5-6 Îœm Frequency Comb Source For Dual-Comb Molecular Spectroscopy

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    Absorption spectroscopy with frequency combs in the molecular fingerprint portion of the spectrum (2-10 μm) has great potential for trace molecular detection and in particular for such applications as monitoring of the atmosphere and medical breath analysis. Especially attractive is dual-comb Fourier transform spectroscopy where full advantage is taken of temporal and spatial coherence of frequency combs as well as of their broadband nature. The promise is high speed, broad spectral coverage, superior sensitivity, high spectral resolution, and the possibility of absolute frequency calibration of molecular resonances. Here we report a system suitable for performing dual-comb spectroscopy in the range of 2.5-6 μm and beyond. Broadband mid-IR frequency combs are obtained via a doubly-resonant near-degenerate synchronously pumped optical parametric oscillator (OPO) based on orientation-patterned GaAs (OP-GaAs) pumped by a femtosecond Tm-fiber laser at 2-μm wavelength. Low pump threshold (7 mW), high coherence, and broad instantaneous spectral coverage make this system extremely promising for spectroscopic studies

    Internal Wavelength Locking Of Broad Stripe Gratingcoupled Semiconductor Lasers

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    This paper investigates wavelength locking of broad stripe grating coupled surface emitting lasers. This approach introduces an innovative TIR-type Littrow grating for locking with comparisons it to a conventional DBR. © 2005 Optical Society of America

    Internal Wavelength Locking Of Grating-Coupled Semiconductor Lasers Using Integrated On-Chip Littrow Grating

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    We have conceived, fabricated, and tested a semiconductor laser with an integrated wavelength locking mechanism using an out-coupling grating combined with a total internal reflection (TIR) Littrow grating. © 2005 OSA/IPRA 2005

    Compact High Peak Power Mopa Assembly Based On Grating Coupled Laser Diodes

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    A hybrid MOPA was assembled by stacking laser diodes incorporating grating couplers. Applying subnanosecond driving pulses for both MO and flared PA, optical pulses with 130W peak power and 98psec pulsewidth were achieved. © 2006 IEEE

    Multi-Bounce Dual Grating Reflector For Internal Wavelength Locking Of Laser Diodes

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    This paper introduces a multi-bounce scheme based on a Dual Grating Reflector concept for integrated wavelength locking of broad stripe laser diodes. Theoretical and experimental results are shown to have a line-width of less than 50 pm for a broad stripe device. © 2007 Optical Society of America

    Compact Hybrid Master Oscillator Power Amplifier Based On Grating Coupled Laser Diodes

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    A hybrid master oscillator power amplifier (MOPA; was fabricated from vertically stacked laser diodes with integrated grating couplers. The MO incorporated a dual grating reflector providing a narrow emission spectrum of 0.2nm. Using a tapered amplifier, an output peak power of 32W in the pulse regime was achieved. © 2006 Optical Society of America
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