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Deterministic optical polarisation in nitride quantum dots at thermoelectrically cooled temperatures

机译:热电冷却温度下氮化物量子点中的确定性光偏振

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摘要

We report the successful realisation of intrinsic optical polarisation control by growth, in solid-state quantum dots in the thermoelectrically cooled temperature regime (≥200 K), using a non-polar InGaN system. With statistically significant experimental data from cryogenic to high temperatures, we show that the average polarisation degree of such a system remains constant at around 0.90, below 100 K, and decreases very slowly at higher temperatures until reaching 0.77 at 200 K, with an unchanged polarisation axis determined by the material crystallography. A combination of Fermi-Dirac statistics and >k·p theory with consideration of quantum dot anisotropy allows us to elucidate the origin of the robust, almost temperature-insensitive polarisation properties of this system from a fundamental perspective, producing results in very good agreement with the experimental findings. This work demonstrates that optical polarisation control can be achieved in solid-state quantum dots at thermoelectrically cooled temperatures, thereby opening the possibility of polarisation-based quantum dot applications in on-chip conditions.
机译:我们报告了通过使用非极性InGaN系统在热电冷却温度范围(≥200K)中的固态量子点中的生长成功实现了本征光学偏振控制。利用从低温到高温的具有统计意义的重要实验数据,我们表明,这种系统的平均极化度保持恒定在0.90左右(低于100 K),并且在较高温度下缓慢降低,直到在200 K达到0.77且极化不变轴由材料晶体学确定。费米-狄拉克统计和> k·p 理论的结合,同时考虑了量子点各向异性,使我们能够从基本的角度阐明该系统鲁棒的,几乎对温度不敏感的偏振特性的起源,结果与实验结果非常吻合。这项工作表明,在热电冷却的温度下,可以在固态量子点中实现光学偏振控制,从而为在片上条件下基于偏振的量子点应用提供了可能性。

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