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Processing of photonic crystal nanocavity for quantum information in diamond

机译:用于钻石中量子信息的光子晶体纳米腔的处理

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The realization of photonic crystals (PC) in diamond is of major importance for the entire field of spintronics based on fluorescent centers in diamond. The processing steps for the case of diamond differ from those commonly used, due to the extreme chemical and mechanical properties of this material. The present work summarizes the state of the art in the realization of PC's in diamond. It is based on the creation of a free standing diamond membrane into which the desired nano-sized patterns are milled by the use of Focused-Ion-Beam (FIB). The optimal fabrication-oriented structure parameters are predicted by simulations. The milling strategies, the method of formation the diamond membrane, recipes for dielectric material-manipulation in FIB and optical characterization constraints are discussed in conjunction with their implication on PC cavity design. The thus produced structures are characterized via confocal photoluminescence.
机译:在钻石中实现光子晶体(PC)对于整个自旋电子学领域(基于钻石中的荧光中心)至关重要。由于这种材料具有极高的化学和机械性能,因此与金刚石相比,其加工步骤与通常所用的不同。本工作总结了钻石实现PC的最新技术。它基于创建独立的金刚石膜,并通过使用聚焦离子束(FIB)将所需的纳米尺寸的图案研磨到其中。通过仿真预测最佳的面向制造的结构参数。讨论了铣削策略,形成金刚石膜的方法,FIB中介电材料处理的配方以及光学特性约束条件及其对PC腔设计的影响。由此产生的结构通过共焦光致发光来表征。

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