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Anomalous photoluminescence of InAs surface quantum dots: intensity enhancement and strain control by underlying quantum dots

机译:InAs表面量子点的异常光致发光:底层量子点的强度增强和应变控制

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Strain control and photoluminescence (PL) enhancement of InAs surface quantum dots (SQDs), exposed to ambient conditions, have been achieved by introducing underlying buried quantum dots (BQDs). The PL wavelength has been tuned from 1270 to as long as 1780 nm, redshifted as the size of the SQDs is reduced. This is in strong contrast to standard QDs, in which blueshift is observed from smaller QDs following basic quantum mechanics. Here, smaller SQDs, both in height and base area, as observed by atomic force microscopy, were obtained with wider GaAs spacer thickness between the SQDs and BQDs. The result strongly suggests that strain and related effects dominate the electronic properties of the SQDs rather than their size, and that a change in the complex strain field occurs through the spacer. The underlying BQDs also serve as effective carrier reservoirs. A PL intensity enhancement of 17 fold was observed as the GaAs spacer thickness was reduced from 150 to 10 nm. A large portion of the photoexcited carriers is initially captured and stored in the BQDs. When sufficient carriers are transferred to fill non-radiative surface states, the excess may be transferred to the SQDs enhancing the luminescence.
机译:通过引入底层埋藏量子点(BQD),实现了暴露于环境条件下的InAs表面量子点(SQD)的应变控制和光致发光(PL)增强。PL 波长已从 1270 nm 调谐到最长的 1780 nm,随着 SQD 尺寸的减小而发生红移。这与标准量子点形成鲜明对比,在标准量子点中,根据基本量子力学从较小的量子点观察到蓝移。在这里,通过原子力显微镜观察到的更小的SQD在高度和基底面积上都更小,SQDs和BQD之间具有更宽的GaAs间隔物厚度。结果强烈表明,应变和相关效应主导了SQD的电子特性,而不是它们的大小,并且复应变场的变化通过间隔物发生。底层BQD也可作为有效的载流子储液库。当GaAs间隔层厚度从150 nm减小到10 nm时,PL强度增强了17倍。大部分光激发载流子最初被捕获并储存在BQD中。当转移足够的载流子以填充非辐射表面状态时,多余的载流子可以转移到增强发光的SQDs上。

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