Sridharan Arun Kumar, Pax Paul H, Heebner John E, Drachenberg Derrek R, Armstrong J Paul, Dawson Jay W
Lawrence Livermore National Laboratory, 7000 East Avenue, Livermore, CA 94550, USA.
Opt Express. 2012 Dec 17;20(27):28792-800. doi: 10.1364/OE.20.028792.
A rectangular-core (ribbon) fiber that guides and amplifies a single higher-order-mode (HOM) can potentially scale to much higher average powers than what is possible in traditional circular-core large-mode-area fibers. Such an amplifier would require mode-conversion at the input to enable interfacing with seed sources that typically output TEM(00) mode radiation and at the output to generate diffraction-limited radiation for end-user applications. We present the first simulation and experimental results of a mode conversion technique that uses two diffractive-optic-elements in conjugate Fourier planes to convert a diffraction limited TEM(00) mode to the HOM of a ribbon fiber. Mode-conversion-efficiency is approximately 84% and can theoretically approach 100%. We also demonstrate a mode-converter system that converts a single HOM of a ribbon fiber back to a diffraction-limited TEM(00) mode. Conversion efficiency is a record 80.5%.