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1.
Appl Opt ; 54(4): 757-62, 2015 Feb 01.
Article in English | MEDLINE | ID: mdl-25967785

ABSTRACT

To date, high-power scaling of Tm:fiber lasers has been accomplished by maximizing the power from a single fiber aperture. In this work, we investigate power scaling by spectral beam combination of three linearly polarized Tm:fiber MOPA lasers using dielectric mirrors with a steep transition from highly reflective to highly transmissive that enable a minimum wavelength separation of 6 nm between individual laser channels within the wavelength range from 2030 to 2050 nm. Maximum output power is 253 W with M(2)<2, ultimately limited by thermal lensing in the beam combining elements.

2.
Opt Express ; 20(18): 20558-63, 2012 Aug 27.
Article in English | MEDLINE | ID: mdl-23037103

ABSTRACT

We report on a Tm:fiber master oscillator power amplifier (MOPA) system producing 109 W CW output power, with >15 dB polarization extinction ratio, sub-nm spectral linewidth, and M2 <1.25. The system consists of polarization maintaining (PM) fiber and PM-fiber components including tapered fiber bundle pump combiners, a single-mode to large mode area mode field adapter, and a fiber-coupled isolator. The laser components ultimately determine the system architecture and the limits of laser performance, particularly considering the immature and rapidly developing state of fiber components in the 2 µm wavelength regime.


Subject(s)
Amplifiers, Electronic , Fiber Optic Technology/instrumentation , Lasers , Thulium/chemistry , Energy Transfer , Equipment Design , Equipment Failure Analysis , Systems Integration
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