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One-and two-dimensional photonic crystal microcavities in single crystal diamond

机译:单晶金刚石中的一维和二维光子晶体微腔

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摘要

Diamond is an attractive material for photonic quantum technologies because its colour centres have a number of outstanding properties, including bright single photon emission and long spin coherence times. To take advantage of these properties it is favourable to directly fabricate optical microcavities in high-quality diamond samples. Such microcavities could be used to control the photons emitted by the colour centres or to couple widely separated spins. Here, we present a method for the fabrication of one- and two-dimensional photonic crystal microcavities with quality factors of up to 700 in single crystal diamond. Using a post-processing etching technique, we tune the cavity modes into resonance with the zero phonon line of an ensemble of silicon-vacancy colour centres, and we measure an intensity enhancement factor of 2.8. The controlled coupling of colour centres to photonic crystal microcavities could pave the way to larger-scale photonic quantum devices based on single crystal diamond.
机译:金刚石是光子量子技术的一种有吸引力的材料,因为它的色心具有许多出色的特性,包括明亮的单光子发射和长的自旋相干时间。为了利用这些特性,直接在高质量钻石样品中制造光学微腔是有利的。这样的微腔可以用来控制色中心发出的光子或耦合分离得很远的自旋。在这里,我们提出了一种在单晶金刚石中制造品质因子高达700的一维和二维光子晶体微腔的方法。使用后处理蚀刻技术,我们将腔模调整为与硅空位色心整体的零声子线共振,并且测得强度增强因子为2.8。色心与光子晶体微腔的受控耦合可以为基于单晶金刚石的大规模光子量子设备铺平道路。

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