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GHz飞秒激光器相比于传统的百MHz飞秒激光器,其频域中相邻纵模的间隔更大、可分辨率更高,相同光谱范围内纵模密度更小,每个纵模分得的平均功率相对更高,在梳齿可分辨光谱学、直接频率梳光谱学、光学任意波形产生以及天文摄谱仪校准等诸多领域有着更重要的应用价值。文中从GHz飞秒脉冲的产生方案出发,着重对激光二极管泵浦的GHz重复频率全固态飞秒激光的产生方案以及相应的技术挑战进行了详细介绍,然后重点综述了国际上基于SESAM被动锁模以及克尔透镜锁模全固态GHz飞秒激光器的研究进展,并结合笔者所在课题组取得的初步研究结果对全固态GHz重复频率飞秒激光器的应用价值以及笔者所在课题组的研究目标进行了展望。 相似文献
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A five-band metamaterial absorber (MMA) based on a simple planar structure is proposed. It utilizes different areas of a single unit cell to match impedance, and produces different absorptive frequencies. Numerical calculation shows that the MMA has five different absorption peaks at 3.78 GHz, 7.66 GHz, 10.9 GHz, 14.5 GHz and 16.7 GHz, and their absorption rates reach 95.5%, 98.6%, 95.7%, 96.6% and 99.8%, respectively. The proposed structure is polarization insensitive for transverse electric (TE) and transverse magnetic (TM) incident waves. Also, the absorptive characteristics over large incident angles are examined. In addition, we analyze the absorption mechanism by the surface current density and power flow density distributions. This simple structure provides a way to design multi-band MMA, and also saves the cost of fabrication. 相似文献
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