Higher-order mode fiber enables high energy chirped-pulse amplification

Xiang Peng, Paul S. Westbrook, Eric M. Monberg, Jeffrey W. Nicholson, Robert S. Windeler, A. DeSantolo, John M. Fini, D. J. DiGiovanni, F. DiMarcello, Kyungbum Kim, Michael Mielke, Tim Booth, Xiaoping Liu, C. Headley
2013-12-20

SCID:  54.1/z9hmqkw6
Energy scaling of femtosecond fiber lasers has been constrained by nonlinear impairments and optical fiber damage. Reducing the optical irradiance inside the fiber by increasing mode size lowers these effects. Using an erbium-doped higher-order mode fiber with 6000 µm(2) effective area and output fundamental mode re-conversion, we show a breakthrough in pulse energy from a monolithic fiber chirped pulse amplification system using higher-order mode propagation generating 300 µJ pulses with duration <500 fs (FWHM) and peak power >600 MW at 1.55 µm. The erbium-doped HOM fiber has both a record large effective mode area and excellent mode stability, even when coiled to reasonable diameter. This demonstration proves efficacy of a new path for high energy monolithic fiber-optic femtosecond laser systems.
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2013-12-20
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Xiang Peng
Paul S. Westbrook
Eric M. Monberg
Jeffrey W. Nicholson
Robert S. Windeler
A. DeSantolo
John M. Fini
D. J. DiGiovanni
F. DiMarcello
Kyungbum Kim
Michael Mielke
Tim Booth
Xiaoping Liu
C. Headley
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