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Long-term stabilization of carrier envelope phases of mid-infrared pulses for the precise detection of phase-sensitive responses to electromagnetic waves

机译:中红外脉冲的长期稳定阶段中红外脉冲的精确检测电磁波的相敏感响应

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We report a high performance mid-infrared pump visible probe measurement system, which can measure phase-sensitive responses to a mid-infrared pulse along the oscillating electromagnetic field. In this system, the pump light is a phase-locked mid-infrared pulse with a temporal width of 100 fs, which is produced via difference frequency generation (DFG) from two idler pulses of two optical parametric amplifiers (OPAs) that are excited by the same Ti:sapphire regenerative amplifier. The probe pulse is a visible pulse with a temporal width of 9 fs and is generated from a custom-built non-collinear OPA. By measuring the electric-field waveforms of mid-infrared pump pulses with electro-optic sampling and evaluating their carrier envelope phase (CEP) and the temporal positions of their envelopes relative to ultrashort visible probe pulses, we are able to perform double feedback corrections that eliminate both the following sources of drift. The CEP drift in mid-infrared pulses originating from fluctuations in the difference of optical-path lengths of the two idler pulses before the DFG is corrected by inserting a wedge plate in one idler path, and the drift in pump–probe delay times due to fluctuations in the difference of the overall optical-path lengths of the pump and probe pulses is corrected with mechanical delay lines. In this double feedback system, the absolute carrier phase of mid-infrared pulses can be fixed within 200 mrad and errors in the measurement of phase-sensitive responses can be reduced to within 1 fs over a few tens of hours.
机译:我们报告了高性能中红外泵可见探针测量系统,可以测量沿着振荡电磁场的中红外脉冲的相敏感响应。在该系统中,泵浦光是锁相中红外脉冲,其时间宽度为100 fs,其通过从两个光学参数(opas)的两个惰轮脉冲(OPA)的差频生成(DFG)产生相同的Ti:蓝宝石再生放大器。探针脉冲是具有9 fs的时间宽度的可见脉冲,并且由定制的非共线OPA产生。通过测量带电光采样的中红外泵脉冲的电场波形,并评估它们的载波封套相(CEP)和相对于超短的可见探针脉冲的信封的时间位置,我们能够执行双重反馈校正消除以下漂移来源。在通过在一个惰轮路径中插入楔形板之前校正DFG之前,CEP漂移来自两个惰轮脉冲的光路长度的差异的波动,并且由于泵探测延迟时间而校正DFG之前用机械延迟线校正泵和探针脉冲的整体光路长度差异的波动。在这种双反馈系统中,中红外脉冲的绝对载波可以固定在200mrad内,相敏响应的测量中的误差可以在几十个小时内减少到1 fs内。

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