Abstract
Nonlinearity plays a critical role in the intra-cavity dynamics of high-pulse energy fiber lasers. Management of the intra-cavity nonlinear dynamics is the key to increase the output pulse energy in such laser systems. Here, we examine the impact of the order of the intra-cavity elements on the energy of generated pulses in the all-normal dispersion mode-locked ring fiber laser cavity. In mathematical terms, the nonlinear light dynamics in resonator makes operators corresponding to the action of laser elements (active and passive fiber, out-coupler, saturable absorber) non-commuting and the order of their appearance in a cavity important. For the simple design of all-normal dispersion ring fiber laser with varying cavity length, we found the order of the cavity elements, leading to maximum output pulse energy.
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Shtyrina, O. V., Yarutkina, I. A., Skidin, A., Fedoruk, M. P., & Turitsyn, S. K. (2015). Impact of the order of cavity elements in all-normal dispersion ring fiber lasers. IEEE Photonics Journal, 7(2). https://doi.org/10.1109/JPHOT.2015.2413591
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