论文标题
光学参数振荡器中的二次孤子中的高功率MID-IR频率梳
High-Power Mid-IR Few-Cycle Frequency Comb from Quadratic Solitons in an Optical Parametric Oscillator
论文作者
论文摘要
在广泛的应用中,中红外(MIR)光谱区域中强大而有效的光频梳非常可取。尽管利用各种技术进行了广泛的努力,但对于许多应用,mir频率梳源仍缺乏功率,效率或带宽。在这里,我们报告了从光学参数振荡器(OPO)中以4.18μm为中心的本质上锁定的频率梳子源的产生,在Symulton策略中运行的是,在该策略中,纯粹的二次孤子构成纯粹的二极管孤子的形成会增强性能。我们在与常规制度的直接实验比较中表明了在Sumulton制度中的运行优势,模拟和理论也支持。我们实现了565 MW的平均功率,900 nm的瞬时3-DB带宽,斜率效率的350%,转化效率的44%;在此波长范围内,这种性能优于以前的OPO演示和其他来源。这项工作为具有高功率和效率的mir频率梳子生成开辟了新的途径,并提出了基于mir光谱区域二次非线性的孤子产生的巨大潜力。
Powerful and efficient optical frequency combs in the mid-infrared (MIR) spectral region are highly desirable for a broad range of applications. Despite extensive efforts utilizing various techniques, MIR frequency comb sources are still lacking power, efficiency, or bandwidth for many applications. Here, we report the generation of an intrinsically locked frequency comb source centered at 4.18 μm from an optical parametric oscillator (OPO) operating in the simulton regime, in which formation of purely quadratic solitons lead to enhanced performance. We show advantages of operation in the simulton regime in direct experimental comparisons to the conventional regime, which are also supported by simulation and theory. We achieve 565 mW of average power, 900 nm of instantaneous 3-dB bandwidth, 350% of slope efficiency, and 44% of conversion efficiency; a performance that is superior to previous OPO demonstrations and other sources in this wavelength range. This work opens a new avenue toward MIR frequency comb generation with high power and efficiency and suggests the great potential of soliton generation based on quadratic nonlinearity in the MIR spectral region.