首页> 外文会议>Conference on nonlinear frequency generation and conversion: Materials, devices, and applications VIII; 20090127-29; San Jose, CA(US) >Self-phase-locked divide-by-2 optical parametric oscillator as a broadband frequency comb source
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Self-phase-locked divide-by-2 optical parametric oscillator as a broadband frequency comb source

机译:自锁相二分频光参量振荡器作为宽带梳齿源

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We investigate coherence properties of a degenerate synchronously-pumped optical parametric oscillator (SPOPO) as a divide-by-2 subharmonic generator. Type 0 (e-ee) periodically-poled MgO : LiNbO_3 was used as a nonlinear gain crystal and a femtosecond mode-locked Ti:Sapphire laser at 775 nm - as a pump source. We observed that the SPOPO longitudinal modes at degeneracy were phase-coherent with that of the pump. The self-phase-locking and self-stabilization effect can be explained in terms of mutual injection locking between the signal and the idler frequencies of the SPOPO. We confirmed the phase-locking effect by performing interference between pump and frequency-doubled output, as well as beat frequency measurements between the SPOPO output and (ⅰ) the pump laser and (ⅱ) an independent continuous-wave (CW) laser. A frequency locking range around SPOPO degeneracy △f was measured as a function of pump power, when the SPOPO operated in the phase-locking regime. We have found that △f increased monotonically with the pump power and decreased with the cavity Q, in good accord with our theoretical model based on coupled nonlinear optical wave equations. When the proper regime was chosen, the SPOPO remained phase-locked to the pump without any active stabilization even in the presence of environmental noise. At degeneracy (around 1550 nm), the SPOPO produced 70-fs output pulses with the FWHM spectral width of 210 cm~(-1) that is 2.6 times broader than the spectrum of the pump laser.
机译:我们研究简并同步泵浦光学参量振荡器(SPOPO)作为2分频次谐波发生器的相干特性。使用0型(e-ee)周期极化MgO:LiNbO_3作为非线性增益晶体,并使用飞秒锁模的775 nm Ti:蓝宝石激光器作为泵浦光源。我们观察到,简并的SPOPO纵向模式与泵的相位相干。自锁相和自稳定效应可以用信号和SPOPO的惰轮频率之间的相互注入锁相来解释。我们通过在泵浦和倍频输出之间进行干扰,以及在SPOPO输出与(ⅰ)泵浦激光器和(ⅱ)独立连续波(CW)激光器之间进行拍频测量,证实了锁相效果。当SPOPO在锁相状态下运行时,围绕SPOPO简并性Δf的锁频范围被测量为泵浦功率的函数。我们发现△f随泵浦功率单调增加,随腔Q单调减小,这与我们基于耦合非线性光波方程的理论模型非常吻合。当选择适当的方式时,即使存在环境噪声,SPOPO仍保持锁相于泵,而没有任何主动的稳定作用。在退化时(大约1550 nm),SPOPO产生70 fs的输出脉冲,其FWHM光谱宽度为210 cm〜(-1),是泵浦激光器光谱的2.6倍。

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