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Fabrication of micro lens array on diamond surface

机译:金刚石表面上的微透镜阵列的制造

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Fabrication of microlenses on a diamond surface is an important way to enhance the performance of the embedded nitrogen vacancy (NV) center which is a promising single light source for quantum communication and quantum-based detection. In this work, lenses with a micrometer diameter were fabricated on a diamond surface by using the inductively coupled plasma (ICP) etching technique with a mask of polystyrene (PS) balls. First, 1 μ m diameter PS balls were dispersed on the surface of deionized water. Then, the balls were transferred onto a diamond surface. Third, the sample was treated using the ICP technique to form microlenses. By increasing ICP etching time, the surface of fabricated microlenses became smoother. The simulation results demonstrate that the microlenses can greatly improve the photon collection efficiency of the embedded NV center and focus more excitation light to the NV center than bulk diamond.
机译:微透镜在金刚石表面上的制造是增强嵌入式氮空位(NV)中心的性能的重要途径,这是用于量子通信和基于量子的检测的有前途的单光源。在这项工作中,通过使用具有聚苯乙烯(PS)球的掩模的电感耦合的等离子体(ICP)蚀刻技术,在金刚石表面上制造具有微米直径的镜片。首先,将1μm直径Ps球分散在去离子水的表面上。然后,将球转移到金刚石表面上。第三,使用ICP技术进行样品以形成微透镜。通过增加ICP蚀刻时间,制造的微透镜的表面变得更加光滑。仿真结果表明,微透镜可以大大提高嵌入式NV中心的光子收集效率,并将更多的激发光聚焦到NV中心的散装金刚石。

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