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Frequency Conversion in a High Q-Factor Sapphire Whispering Gallery Mode Resonator due to Paramagnetic Nonlinearity

机译:顺磁非线性导致高Q因数蓝宝石耳语回廊模式谐振器的频率转换

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摘要

Nonlinear frequency conversion is a well known and widely exploited family of effects in optics, often arising from a Kerr nonlinearity in a crystal medium. Here, we report high stability frequency conversion in the microwave regime due to a X~(3) nonlinearity in sapphire introduced by a dilute concentration of paramagnetic spins. First, we produce a high stability comb from two microwave fields at 12.029 and 12.037 GHz corresponding to two high Q-factor whispering gallery (WG) modes within the electron spin resonance bandwidth of the Fe~(3+) ion. The resulting comb is generated by a cascaded four-wave mixing effect with a 7.7 MHz repetition rate. Then, by suppressing four-wave mixing by increasing the threshold power, third harmonic generation is achieved in a variety of WG modes coupled to various species of paramagnetic ion within the sapphire.
机译:非线性频率转换是光学中一种众所周知的且被广泛利用的效应族,通常是由晶体介质中的Kerr非线性引起的。在这里,我们报告了由于稀有顺磁自旋引起的蓝宝石的X〜(3)非线性,在微波状态下的高稳定性频率转换。首先,我们从在12.029和12.037 GHz的两个微波场产生高稳定性梳,对应于Fe〜(3+)离子的电子自旋共振带宽内的两个高Q因子耳语画廊(WG)模式。通过级联的四波混频效果以7.7 MHz的重复频率生成最终的梳状。然后,通过通过增加阈值功率来抑制四波混频,在耦合到蓝宝石内各种顺磁性离子的各种WG模式下实现了三次谐波的产生。

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