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Continuously tunable pulsed Ti:Sa laser self-seeded by an extended grating cavity

机译:连续可调的脉冲式Ti:Sa激光器由扩展的光栅腔自行植入

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摘要

A continuously tunable titanium:sapphire (Ti:Sa) laser self-seeded by an extended grating cavity was demonstrated and characterized. By inserting a partially reflecting mirror inside the cavity of a classic single-cavity grating laser, two oscillators are created: a broadband power oscillator, and a narrowband oscillator with a prism beam expander and a diffraction grating in Littrow configuration. By coupling the grating cavity oscillation into the power oscillator, a power-enhanced narrow-linewidth laser oscillation is achieved. Compared to the classic grating laser, this simple modification significantly increases the laser output power without considerably broadening the linewidth. With most of the oscillating laser power confined inside the broadband power cavity and lower power incident onto the grating, the new configuration also allows higher pump power, which is typically limited by the thermal deformation of the grating coating at high oscillation power.
机译:演示并表征了一种可连续调谐的钛:蓝宝石(Ti:Sa)激光器,该激光器由扩展的光栅腔自植入。通过在经典的单腔光栅激光器的腔体内插入部分反射镜,可以创建两个振荡器:宽带功率振荡器,带棱镜扩束器和Littrow配置的衍射光栅的窄带振荡器。通过将光栅腔振荡耦合到功率振荡器,可以实现功率增强的窄线宽激光振荡。与经典的光栅激光器相比,这种简单的修改可以显着提高激光器的输出功率,而不会大幅增加线宽。由于大多数振荡激光功率都限制在宽带功率腔内,并且较低的功率入射到光栅上,因此新配置还允许更高的泵浦功率,这通常受光栅涂层在高振荡功率下的热变形的限制。

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