论文标题
超快锯齿状光学频率翻译器
Ultrafast serrodyne optical frequency translator
论文作者
论文摘要
锯齿状原理可以通过在时域应用线性相斜率来移动电磁信号的频率[1]。该现象已被利用为射频(RF),电磁频谱的微波和光学区域中的频率转移信号,高达几个GHz的范围,例如。为了分析RF信号的多普勒移位,以抑制噪声和频率稳定[2-9]。在这里,我们采用这一原理在非线性多通用细胞的帮助下,将高功率飞秒激光脉冲的中心频率移动到几个THZ的范围内。我们通过将最先进的75 W频率梳激光器的中心波长从1030 \,NM \升至1060 \,NM和NM 1000 \,通过将最新的75 W频率梳激光激光器的中心波长转移到实验中。此外,我们在实验上表明,这种波长转移技术支持几个Hz级别的连贯特性,同时改善了时间脉冲质量。该技术通常适用于广泛的参数范围和不同的激光系统,从而使高功率激光器向光谱区域的有效波长转换超出了可用激光平台的增益带宽。
The serrodyne principle enables shifting the frequency of an electromagnetic signal by applying a linear phase ramp in the time domain [1]. This phenomenon has been exploited to frequency-shift signals in the radiofrequency (RF), microwave and optical region of the electromagnetic spectrum over ranges of up to a few GHz e.g. to analyse the Doppler shift of RF signals, for noise suppression and frequency stabilization [2-9]. Here, we employ this principle to shift the center frequency of high power femtosecond laser pulses over a range of several THz with the help of a nonlinear multi-pass cell. We demonstrate our method experimentally by shifting the central wavelength of a state-of-the-art 75 W frequency comb laser from 1030\,nm to 1060\,nm and to 1000\,nm. Furthermore, we experimentally show that this wavelength shifting technique supports coherence characteristics at the few Hz-level while improving the temporal pulse quality. The technique is generally applicable to wide parameter ranges and different laser systems, enabling efficient wavelength conversion of high-power lasers to spectral regions beyond the gain bandwidth of available laser platforms.