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Micromachining of ridge optical waveguides on top of He+-implanted beta-BaB2O4 crystals by femtosecond laser ablation

机译:飞秒激光烧蚀He+植入β-BaB2O4晶体顶部脊状光波导的微加工

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摘要

We report on a technique for the fabrication of ridge optical waveguides on top of beta-BaB2O4 (BBO) crystals. The BBO crystals were first implanted by He+ ions to form planar optical waveguides. In the second step, the femtosecond laser ablation technique was employed for micromachining of ridge-type optical waveguides. A thorough study of material-specific ablation parameters for BBO has been performed in order to achieve ablated structures with smooth sidewalls. A further process of Ar+ ion smoothing in a plasma chamber was used to reduce the sidewall roughness of the ablated ridges from 75 to 35 nm root mean square. We demonstrated optical waveguiding in these femtosecond-ablated plasma-treated waveguides and measured total propagation losses of less than 10 dB/cm at 532 nm, making them suitable for nonlinear- and electro-optical applications. (c) 2006 American Institute of Physics.
机译:我们报道了一种在β-BaB2O4(BBO)晶体上制造脊状光波导的技术。BBO晶体首先由He+离子注入,形成平面光波导。第二步,采用飞秒激光烧蚀技术对脊型光波导进行微加工。已经对 BBO 的材料特定烧蚀参数进行了彻底研究,以实现具有光滑侧壁的烧蚀结构。在等离子体室中进一步进行Ar+离子平滑处理,将烧蚀脊的侧壁粗糙度从75nm均方根降低到35nm。我们在这些飞秒烧蚀等离子体处理波导中展示了光波导,并在 532 nm 处测量了小于 10 dB/cm 的总传播损耗,使其适用于非线性和电光应用。(c) 2006年美国物理研究所。

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