Balskus K, Leitch S M, Zhang Z, McCracken R A, Reid D T
Opt Express. 2015 Jan 26;23(2):1283-8. doi: 10.1364/OE.23.001283.
We present the first example of a femtosecond optical parametric oscillator frequency comb harmonically-pumped by a 333-MHz Ti:sapphire laser to achieve a stabilized signal comb at 1-GHz mode spacing in the 1.1-1.6-µm wavelength band. Simultaneous locking of the comb carrier-envelope-offset and repetition frequencies is achieved with uncertainties over 1 s of 0.27 Hz and 5 mHz respectively, which are comparable with those of 0.27 Hz and 1.5 mHz achieved for 333-MHz fundamental pumping. The phase-noise power-spectral density of the CEO frequency integrated from 1 Hz-64 kHz was 2.8 rad for the harmonic comb, 1.0 rad greater than for fundamental pumping. The results show that harmonic operation does not substantially compromise the frequency-stability of the comb, which is shown to be limited only by the Rb atomic frequency reference used.
我们展示了首个由333兆赫兹钛宝石激光器谐波泵浦的飞秒光学参量振荡器频率梳的实例,以在1.1 - 1.6微米波长波段实现1吉赫兹模式间隔的稳定信号梳。同时实现了梳状载波包络偏移频率和重复频率的锁定,1秒内的不确定度分别为0.27赫兹和5毫赫兹,这与333兆赫兹基频泵浦时实现的0.27赫兹和1.5毫赫兹相当。从1赫兹至64千赫兹积分的载波包络偏移(CEO)频率的相位噪声功率谱密度,对于谐波梳为2.8弧度,比基频泵浦时大1.0弧度。结果表明,谐波操作不会大幅损害频率梳的频率稳定性,其稳定性仅受所用铷原子频率基准的限制。