Descloux Delphine, Dherbecourt Jean-Baptiste, Melkonian Jean-Michel, Raybaut Myriam, Lai Jui-Yu, Drag Cyril, Godard Antoine
Opt Express. 2016 May 16;24(10):11112-25. doi: 10.1364/OE.24.011112.
A new optical parametric oscillator (OPO) architecture with high tuning speed capability is demonstrated. This device exploits the versatility offered by aperiodic quasi-phase matching (QPM) to provide a broad parametric gain spectrum without changing the temperature, angle, or position of the nonlinear crystal. Rapid tuning is then straightforwardly achieved using a fast intracavity spectral filter. This concept is demonstrated here for a picosecond synchronously pumped OPO containing an aperiodically poled MgO-doped LiNbO crystal and a rapidly tunable spectral filter based on a diffraction grating. Tuning over 160 nm around 3.86 μm is achieved at fixed temperature and a fast tuning over 30 nm in 40 μs is demonstrated. Different configurations are tested and compared. The cavity length detuning is analyzed and discussed. This device is successfully used to detect NO by absorption. This approach could be generalized to other spectral ranges (e.g., visible) and temporal regimes (e.g., continuous-wave or nanosecond).
展示了一种具有高调谐速度能力的新型光学参量振荡器(OPO)架构。该装置利用非周期准相位匹配(QPM)提供的通用性,在不改变非线性晶体温度、角度或位置的情况下提供宽参量增益谱。然后,使用快速腔内光谱滤波器可以直接实现快速调谐。本文针对包含非周期极化掺氧化镁铌酸锂晶体和基于衍射光栅的快速可调谐光谱滤波器的皮秒同步泵浦OPO演示了这一概念。在固定温度下实现了在3.86μm附近160nm的调谐,并演示了在40μs内30nm的快速调谐。测试并比较了不同配置。分析并讨论了腔长失谐。该装置已成功用于通过吸收检测一氧化氮。这种方法可以推广到其他光谱范围(如可见光)和时间模式(如连续波或纳秒)。