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Laser-induced spectral broadening and hole-burning in rare earth doped crystals and coherent optical spectroscopy for frequency upconversion

机译:激光掺杂稀土晶体中的光谱加宽和烧孔以及相干光谱法用于频率上转换

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摘要

The excitation spectra for linear fluorescence and for frequency upconversion are recorded in Er~(3+) doped crystal Er: YAG. An excitation induced spectral broadening and hole-burning are shown to appear at the resonant frequency of the linear fluorescence excitation spectrum, where the upconversion is simultaneously enhanced. Rate equation analysis is applied to model the optical pumping processes in the crystal. We present evidence that the induced resonance broadening and hole-burning are the result of excitation competition between the linear absorption and the excited state absorption. Femtosecond pulse pairs are applied to excite the linear and nonlinear frequency conversion, resulting in coherent controlled branching ratio between the linear and nonlinear frequency conversion. The experimental reasults are in good agreement with the numerical evaluation based on optical Bloch equation.
机译:在掺Er〜(3+)的晶体Er:YAG中记录了线性荧光和频率上变频的激发光谱。激发引起的光谱展宽和空穴燃烧显示为出现在线性荧光激发光谱的共振频率处,其中上转换同时得到增强。应用速率方程分析对晶体中的光泵浦过程进行建模。我们目前的证据表明,诱导的共振加宽和空穴燃烧是线性吸收和激发态吸收之间的竞争竞争的结果。飞秒脉冲对用于激发线性和非线性频率转换,从而在线性和非线性频率转换之间产生相干受控的分支比。实验结果与基于光学Bloch方程的数值计算结果吻合良好。

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