Kim Eok Bong, Lee Jae-hwan, Trung Luu Tran, Lee Wong-Kyu, Yu Dai-Hyuk, Ryu Han Young, Nam Chang Hee, Park Chang Yong
Korea Research Institute of Standards and Science, 209 Gajeong-Ro, Yuseong-Gu, Daejeon 305-340, Korea.
Opt Express. 2009 Nov 9;17(23):20920-6. doi: 10.1364/OE.17.020920.
We developed an optical frequency synthesizer (OFS) with the carrier-envelope-offset frequency locked to 0 Hz achieved using the "direct locking method." This method differs from a conventional phaselock method in that the interference signal from a self-referencing f-2f interferometer is directly fed back to the carrier-envelope-phase control of a femtosecond laser in the time domain. A comparison of the optical frequency of the new OFS to that of a conventional OFS stabilized by a phase-lock method showed that the frequency comb of the new OFS was not different to that of the conventional OFS within an uncertainty of 5.68x10(-16). As a practical application of this OFS, we measured the absolute frequency of an acetylene-stabilized diode laser serving as an optical frequency standard in optical communications.
我们开发了一种光学频率合成器(OFS),其载波包络偏移频率锁定到0 Hz,采用“直接锁定法”实现。该方法与传统的锁相方法不同,在于自参考f-2f干涉仪的干涉信号在时域中直接反馈到飞秒激光器的载波包络相位控制。将新型OFS的光学频率与通过锁相方法稳定的传统OFS的光学频率进行比较,结果表明,在5.68×10⁻¹⁶的不确定度范围内,新型OFS的频率梳与传统OFS的频率梳没有差异。作为该OFS的实际应用,我们测量了用作光通信中光频率标准的乙炔稳定二极管激光器的绝对频率。