Bhardwaj S, Mittholiya K, Bhatnagar A, Bernard R, Dharmadhikari J A, Mathur D, Dharmadhikari A K
Appl Opt. 2017 Jul 10;56(20):5692-5697. doi: 10.1364/AO.56.005692.
We describe two types of waveguides (type I and depressed cladding) inscribed in lithium niobate using a variable repetition rate (200 kHz-25 MHz), 270 fs duration fiber laser. The type I modification-based waveguides have propagation losses in the range from 1.2 to 10 dB/cm at 1550 nm, depending on experimental parameters. These waveguides are not permanent; they deteriorate over time. Such deterioration of waveguides can be slowed down from 30 days to 100 days by pre-annealing the samples and by writing at a 720 kHz laser repetition rate. The propagation losses measured at 1550 nm show significant improvement for pre-annealed samples. The depressed cladding-inscribed waveguides are permanent, but the propagation loss depends on the number of damage tracks. A track separation of ∼1 μm between adjacent damage tracks yields the lowest propagation loss of 0.5 dB/cm at 1550 nm for a 40 μm diameter waveguide. We observe multimode guidance for sizes in the range of 20-80 μm in these waveguide structures at 1550 nm. Their crystalline nature is found to remain intact, as inferred from second-harmonic generation within the waveguide region.
我们描述了两种使用可变重复频率(200kHz - 25MHz)、持续时间为270fs的光纤激光器在铌酸锂中写入的波导(I型和凹陷包层型)。基于I型改性的波导在1550nm处的传播损耗范围为1.2至10dB/cm,这取决于实验参数。这些波导不是永久性的;它们会随时间恶化。通过对样品进行预退火并以720kHz的激光重复频率写入,可以将波导的这种恶化从30天减缓至100天。在1550nm处测量的预退火样品的传播损耗有显著改善。凹陷包层写入的波导是永久性的,但传播损耗取决于损伤轨迹的数量。对于直径为40μm的波导,相邻损伤轨迹之间约1μm的轨迹间距在1550nm处产生最低传播损耗0.5dB/cm。在1550nm处,我们观察到这些波导结构中尺寸在20 - 80μm范围内的多模导光。从波导区域内的二次谐波产生推断,发现它们的晶体性质保持完整。