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- W2164080002 abstract "We show experimentally and theoretically that the cavity design plays an important role in achieving stable bi-directional operation in a mode locked ring laser. We developed a numerical model for a bi-directional Kerr Lens Mode Locked (KLML) Ti:Sapphire ring laser. We verified the model by comparing its results with three ring laser cavities, which we constructed in the laboratory. The three ring lasers were a standard x-cavity with two curved mirrors, a cavity with four curved mirrors, and a cavity with four curved mirrors that included an additional nonlinear element. We show that this model can predict conditions for the bi-directional operation. Our model predicts, as our experiments show that the presence of an extra fold in the four-mirror ring cavity permits a more stable bi-directional mode locked operation. Furthermore, our model helps us to understand why addition of an extra fold in the cavity could improve the stability of mode locked operation. In general, the repetition rate of the laser in the two opposite directions was different, and depended on the position of the laser rod. We further experimentally show that, this difference can be eliminated if another Kerr element is added to the cavity. It was also confirmed experimentally and numerically, that the additional Kerr element reduces power threshold for mode locking." @default.
- W2164080002 created "2016-06-24" @default.
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- W2164080002 date "2002-06-01" @default.
- W2164080002 modified "2023-10-16" @default.
- W2164080002 title "The role of cavity design in a bi-directional Kerr lens mode locked ring Ti:Sapphire laser" @default.
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- W2164080002 doi "https://doi.org/10.1016/s0030-4018(02)01498-0" @default.
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