Dyakonov I V, Saygin M Yu, Kondratyev I V, Kalinkin A A, Straupe S S, Kulik S P
Opt Lett. 2017 Oct 15;42(20):4231-4234. doi: 10.1364/OL.42.004231.
Integrated optical waveguides, manufactured with femtosecond laser writing (FSLW) technology, enable precise control and manipulation of light in complicated photonic chips. However, due to the intrinsically low anisotropy of FSLW waveguides, polarizing integrated devices have had a relatively large footprint. In this Letter, we demonstrate an approach based on stress-induced anisotropy, allowing us to decrease the size of polarizing directional couplers down to 3.7 mm, almost an order of magnitude shorter than previously reported. The measured extinction ratios at the wavelength of 808 nm are 16 dB and 20 dB for the horizontal and vertical polarizations, respectively. We provide a possible theoretical model for the observed effects.
采用飞秒激光直写(FSLW)技术制造的集成光波导,能够在复杂的光子芯片中实现对光的精确控制和操纵。然而,由于FSLW波导本质上的各向异性较低,偏振集成器件的尺寸相对较大。在本信函中,我们展示了一种基于应力诱导各向异性的方法,使我们能够将偏振定向耦合器的尺寸减小至3.7毫米,比先前报道的尺寸几乎短了一个数量级。在808纳米波长下,水平偏振和垂直偏振的测量消光比分别为16分贝和20分贝。我们为观察到的效应提供了一个可能的理论模型。