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Current State-of-the-art Of Pulsed Laser Deposition Of Optical Waveguide Structures: Existing Capabilities And Future Trends

机译:光波导结构的脉冲激光沉积的最新技术:现有能力和未来趋势

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Pulsed laser deposition (PLD) has now reached a stage of maturity where the growth of thin films is routine. All that is required is a pulsed ultra-violet (UV) wavelength laser, a vacuum chamber, a target, and a substrate placed in near proximity to the plasma plume. Whether the film that you grow is the film that you need, and whether the thickness, uniformity, optical quality, stoichiometry, degree of crystallinity, orientation and much more is what is desired is another question entirely. PLD is both a science and an art and there are many tricks-of-the-trade that need to be considered to ensure that materials grown are the materials wanted. This paper discusses the practicalities of PLD systems, target geometries, heating regimes for successful epitaxial growth of crystalline films, the problem of particulates, laser sources to use, and in the context of our most recent PLD system, the number of independent lasers and targets used. We show that the use of multiple targets permits a combinatorial approach, whereby stoichiometry can be adjusted to grow designer materials, and in particular multilayer systems, ideally suited for active optical waveguides, a truly demanding end application where optical quality and in-plane losses must be reduced to an absolute minimum.
机译:脉冲激光沉积(PLD)现在已经达到了成熟的阶段,其中薄膜的生长是常规的。所需要的只是脉冲紫外(UV)波长激光器,真空室,靶材和紧邻等离子体羽流放置的基板。究竟要生长的薄膜是否是您需要的薄膜,厚度,均匀性,光学质量,化学计量,结晶度,取向度以及更多,是否是您所需要的,完全是另一个问题。 PLD既是一门科学,又是一门艺术,因此需要考虑许多交易技巧,以确保所生长的材料是所需的材料。本文讨论了PLD系统的实用性,目标几何形状,成功地外延生长晶体膜的加热方式,颗粒问题,要使用的激光源,以及在我们最近的PLD系统中,独立激光器和目标的数量用过的。我们表明,使用多个靶标允许组合方法,通过该方法可以调整化学计量,以生长设计材料,尤其是多层系统,非常适合有源光波导,这是对光学质量和面内损耗必不可少的真正苛刻的最终应用减少到绝对最小值。

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