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Limitations of the tunability of dual-crystal optical parametric oscillators

机译:双晶光学参量振荡器可调性的局限性

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We demonstrate what is believed to be the first continuous-wave dual-crystal optical parametric oscillator(D-OPO) for generation of waves with a frequency difference of some terahertz. It is based on two magnesium-doped periodically poled lithium niobate crystals pumped with near-infrared light at 1030 nm. By changing the temperature difference of the crystals we achieve a difference-frequency tuning. This ranges from an initially unexpected lower threshold of 1.3 THz up to higher frequencies. The linewidth of the considered signal waves is smaller than 5 GHz. Smaller difference frequencies were not achievable. Our model, describing the dual-crystal parametric gain, explains the observed lower tuning limit by showing that the assumption of independent oscillation conditions in a D-OPO is not necessarily valid.
机译:我们演示了被认为是第一个连续波双晶光学参量振荡器(D-OPO),用于产生具有几太赫兹频率差的波。它基于两个掺有1030 nm近红外光的镁掺杂周期性极化铌酸锂晶体。通过改变晶体的温差,我们可以实现差频调谐。范围从最初意外的1.3 THz较低的阈值到较高的频率。所考虑的信号波的线宽小于5 GHz。较小的差频是无法实现的。我们的模型描述了双晶参量增益,通过显示D-OPO中独立振荡条件的假设不一定有效来解释观察到的较低调谐极限。

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