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Electro-optic effect in strained and lattice matched multiquantum well structures — Role of excitonic resonances

机译:应变和晶格匹配多量子阱结构中的电光效应 - 激子共振的作用

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摘要

The well known quantum confined Stark effect (QCSE) is currently being exploited to design optoelectronic devices based on electric field controlled absorption of photons. QCSE is also responsible for strong below exciton resonance changes in refractive index with applied field. These changes can be used for high speed couplers and switches in waveguides. This paper focuses on the use of strain to influence the excitonic resonances in InxGa1-xAs/Al0.2Ga0.8As and In0.53+/-xGa0.47[mnplus]xAs/InGaAsP multiple quantum wells. Experimental results are presented showing the effect of compressive and tensile strain on the refractive index changes. Theoretical results including the important HH-LH band mixing effects are presented for the electrooptic effect. In particular, the contribution of the excitonic part is discussed and is found to dominate the electro-optic effect near the bandedge.
机译:目前正在利用众所周知的量子局限于纯粹的凝固效应(QCSE)以设计基于电场控制的光子的光电器件。 QCSE还负责强大的折射率与施加领域的激励谐振变化。这些变化可用于高速耦合器和波导中的开关。本文侧重于使用菌株来影响INXGA1-XAS / AL0.2GA0.8AS和IN0.53 +/- XGA0.47 [MNPLUS] XAS / INGAASP多量子孔中的激子共振。提出了实验结果,显示了压缩和拉伸应变对折射率变化的影响。提供了包括重要的HH-LH带混合效应的理论结果,用于电光效应。特别地,讨论了激发器部分的贡献,并发现并被发现占据了BandEdge附近的电光效应。

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