论文标题
在非分散性腔中以光学亚谐波产生的范围范围(3-12μm)中红外频率梳子(3-12μm)
Two-octave-wide (3-12 μm) mid-infrared frequency comb produced as an optical subharmonic in a nondispersive cavity
论文作者
论文摘要
光谱的3至20μM区域中的相干激光束最适用于化学感测,通过解决培养基的最强振动吸收共振。在此光谱范围内的宽带频率梳具有特别的兴趣,因为它们可以用作分子光谱的强大工具,可在数据收集的速度,灵敏度,精度和巨大的并行性方面具有巨大的增长。在这里,我们表明,通过基于磷化物的方向图案镀磷脂(OPO)在光学参数振荡器(OPO)中实现的频率梳子通过Kerr-Lens模式锁定的2.35-μm激光器可以泵送的磷化物(OP-GAP)可以达到3-12μm的连续波长的3-12μm,从而覆盖了大多数分子'sarearular'sirnature'sage'sage'sage'。实现如此广泛的范围的关键是使用一个低分散腔,需要所有涂有金色的镜子,最小化和光学薄的腔内元素以及专门设计的泵喷油器。该系统具有光滑的超宽带光谱输出,与泵激光梳相干,245兆瓦的输出功率具有高(> 20%)的光学转换效率,并且有可能从模式的驱动器接近统一转换,这要归功于非隔离性下降频率下降过程和光子再生。
Coherent laser beams in the 3 to 20 μm region of the spectrum are most applicable for chemical sensing by addressing the strongest vibrational absorption resonances of the media. Broadband frequency combs in this spectral range are of special interest since they can be used as a powerful tool for molecular spectroscopy offering dramatic gains in speed, sensitivity, precision, and massive parallelism of data collection. Here we show that a frequency comb realized through subharmonic generation in an optical parametric oscillator (OPO) based on orientation-patterned gallium phosphide (OP-GaP) pumped by a Kerr-lens mode-locked 2.35-μm laser can reach a continuous wavelength span of 3-12 μm, thus covering most of the molecular 'signature' region. The key to achieving such a broad spectrum is to use a low-dispersion cavity entailing all gold-coated mirrors, minimally dispersive and optically thin intracavity elements, and a specially designed pump injector. The system features a smooth ultra-broadband spectral output that is phase coherent to the pump laser comb, 245-mW output power with high (>20%) optical conversion efficiency, and a possibility to reach close to unity conversion from a mode-locked drive, thanks to the non-dissipative downconversion processes and photon recycling.