循环布拉格共振器的制造后调整,用于增强的发射器 - 腔合
Tobias M Krieger1, Christian Weidinger1, Thomas Oberleitner1
1Institute of Semiconductor and Solid State Physics, Johannes Kepler University Linz, Altenberger Straße 69, 4040 Linz, Austria.
概括
量子发射器微空洞系统中的制造缺陷可以克服. 湿化学蚀刻调整了AlGaAs共振器,增强了量子点辐射,并改善了固态量子发射器的设备产量.
科学领域:
- 量子光学就是一个量子光学.
- 固态物理 固态物理
- 材料科学是一种材料科学.
背景情况:
- 圆形布拉格共振器中的固态量子发射器提供高亮度和低多光子概率.
- 制造上的缺陷限制了发射器-空腔合,导致空间和光谱不匹配.
研究的目的:
- 展示一个制造后的方法来纠正量子发射器微空洞系统中的光谱不匹配.
- 为了提高空腔增强固态量子发射器的性能和产量.
主要方法:
- 使用重复的湿化学蚀刻步骤来调整AlGaAs共振器中的光学模式.
- 使用单个嵌入式GaAs量子点作为发射器.
- 执行数值计算以验证实验观察结果.
主要成果:
- 在AlGaAs共振器中实现了光学模式的约16纳米波长调节.
- 证明了单个GaAs量子点辐射的Purcell增强的4倍.
- 数字计算证实在调范围内的性能降低最小.
结论:
- 湿化学蚀刻是一种有效的方法,用于量子发射器微空洞系统的制造后调整.
- 这种技术可以显著提高固态量子发射器的合强度和性能.
- 该方法预计可用于各种材料平台,增加设备产量.
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