Semiconductor nanopillar as a single-photon emitter and its optimal design

S. Odashima, H. Sasakura
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Abstract

The semiconductor quantum dot nanopillar array in InAs/GaAs was fabricated. In consideration of the quantum dot density, the pillar diameter was determined as only a few quantum dots were involved in a pillar. The lattice constant of a pillar array was optimized such that only one pillar couples to the fiber core without any specific manipulation. Such structural consideration regarding the photon source and the optical setup contributes to the high purity of the single-photon generation. For high extraction efficiency of photons from photon source, we fabricated the metal cavity structure around the pillar array. The combination of dry-etching and wet-etching realizes the functionally designed three-dimensional structure. Such fabrication processes face the realization of the well-optimized single-photon emitter.
半导体纳米柱作为单光子发射器及其优化设计
在InAs/GaAs中制备了半导体量子点纳米柱阵列。考虑到量子点的密度,柱的直径被确定为只有几个量子点参与一个柱。对柱阵的晶格常数进行了优化,使得只有一根柱与纤芯耦合,无需任何特殊的操作。这种关于光子源和光学设置的结构考虑有助于单光子产生的高纯度。为了提高从光子源中提取光子的效率,我们在柱阵周围制造了金属腔结构。干法蚀刻与湿法蚀刻相结合,实现了功能设计的三维结构。这种制造工艺面临着优化单光子发射器的实现。
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