Aadhi A, Apurv Chaitanya N, Singh R P, Samanta G K
Opt Lett. 2014 Jun 15;39(12):3410-3. doi: 10.1364/OL.39.003410.
We report the development of a compact, high-power, continuous-wave, single-frequency, ultraviolet (UV) source with extended wavelength tunability. The device is based on single-pass, intracavity, second-harmonic-generation (SHG) of the signal radiation of a singly resonant optical parametric oscillator (SRO) working in the visible and near-IR wavelength range. The SRO is pumped in the green with a 25-mm-long, multigrating, MgO doped periodically poled stoichiometric lithium tantalate (MgO:sPPLT) as nonlinear crystal. Using three grating periods, 8.5, 9.0, and 9.5 μm of the MgO:sPPLT crystal and a single set of cavity mirrors, the SRO can be tuned continuously across 710.7-836.3 nm in the signal and corresponding idler across 2115.8-1462.1 nm with maximum idler power of 1.9 W and maximum out-coupled signal power of 254 mW. By frequency-doubling the intracavity signal with a 5-mm-long bismuth borate (BIBO) crystal, we can further tune the SRO continuously over 62.8 nm across 355.4-418.2 nm in the UV with maximum single-frequency UV power, as much as 770 mW at 398.28 nm in a Gaussian beam profile. The UV radiation has an instantaneous line-width of ∼14.5 MHz and peak-peak frequency stability of 151 MHz over 100 s. More than 95% of the tuning range provides UV power >260 mW. Access to lower UV wavelengths can in principle be realized by operating the SRO in the visible using shorter grating periods.
我们报告了一种紧凑、高功率、连续波、单频、具有扩展波长可调谐性的紫外(UV)光源的研制情况。该装置基于在可见和近红外波长范围内工作的单谐振光学参量振荡器(SRO)信号辐射的单程腔内二次谐波产生(SHG)。SRO由一块25毫米长、多光栅、氧化镁掺杂的周期性极化化学计量比钽酸锂(MgO:sPPLT)作为非线性晶体在绿光波段泵浦。利用MgO:sPPLT晶体的8.5、9.0和9.5微米三种光栅周期以及一组腔镜,SRO在信号波段可在710.7 - 836.纳米范围内连续调谐,相应的闲频光在2115.8 - 1462.1纳米范围内,最大闲频光功率为1.9瓦,最大输出耦合信号功率为254毫瓦。通过用一块5毫米长的硼酸铋(BIBO)晶体对腔内信号进行倍频,我们可以在紫外波段355.4 - 418.2纳米范围内进一步连续调谐SRO超过62.8纳米,在高斯光束分布下,最大单频紫外功率在398.28纳米处可达770毫瓦。该紫外辐射的瞬时线宽约为14.5兆赫兹,在100秒内峰峰值频率稳定性为151兆赫兹。超过95%的调谐范围可提供大于260毫瓦的紫外功率。原则上,通过使用更短的光栅周期在可见光波段操作SRO,可以实现更低紫外波长的输出。