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Piezoelectric-transducer-based optoelectronic frequency synchronizer for control of pulse delay in a femtosecond passively mode-locked Ti:sapphire laser

机译:基于压电换能器的光电频率同步器,用于控制飞秒被动锁模Ti:蓝宝石激光器中的脉冲延迟

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We propose a piezoelectric transducer- (PZT-) based optoelectronic frequency synchronizer to control simultaneously changes in the repetition rate, the relative pulse delay, and the phase noise of a passively mode-locked femtosecond Ti:sapphire laser with an intracavity saturable Bragg reflector absorber with respect to an electronic frequency reference. An optoelectronic phase-locked-loop-based PZT feedback controller with a proportional, integral, and differential (PID) circuit and a tunable voltage regulator is designed to achieve frequency synchronization, phase-noise suppression, and delay-time tuning. When the controlling voltage is tuned from -2.6 to 2.6 V, the maximum pulse-delay range, tuning slope, and tuning resolution of the laser pulse-train are 11.3 ns, 2.3 ps/mV, and 1.2 ps, respectively. Setting the gain constant of the PID circuit at 10 or larger causes the delay-time tuning function to be linearly proportional to the controlling voltage. In the delay-time tuning mode the uncorrelated single-side-band phase-noise density of the frequency-synchronized laser is approximately -120 dBc/Hz at an offset frequency of 5 kHz, which is only 7 dBc/Hz higher than that of the electrical frequency reference. The proposed system also supports linear, continuous switching, and programmable control of the delay time of Ti:sapphire laser pulses when they are frequency synchronized to external reference clocks.
机译:我们提出一种基于压电换能器(PZT-)的光电频率同步器,以同时控制腔内可饱和布拉格反射器吸收器的被动锁模飞秒Ti:蓝宝石激光器的重复率,相对脉冲延迟和相位噪声的变化关于电子频率参考。基于光电锁相环的PZT反馈控制器具有比例,积分和差分(PID)电路和可调电压调节器,旨在实现频率同步,相位噪声抑制和延迟时间调谐。当控制电压从-2.6调整到2.6 V时,激光脉冲序列的最大脉冲延迟范围,调谐斜率和调谐分辨率分别为11.3 ns,2.3 ps / mV和1.2 ps。将PID电路的增益常数设置为10或更大会导致延迟时间调整功能与控制电压成线性比例。在延迟时间调谐模式下,频率同步激光器的不相关单边带相位噪声密度在5 kHz偏移频率下约为-120 dBc / Hz,仅比5kHz偏移频率高7 dBc / Hz。电频率参考。拟议的系统还支持Ti:蓝宝石激光脉冲的频率与外部参考时钟同步时的线性,连续切换和可编程控制。

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    《Applied optics》 |2003年第15期|共6页
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