Exploring the Impact of Weak Measurements on Exciton-Exciton Interactions

F. Siyouri, Olivier Giraud, yassine hassouni
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Abstract

In our study of super quantum discord between two excitonic qubits inside a coupled semiconductor quantum dots system, our primary focus is to uncover the impact of weak measurement on its quantum characteristics. To achieve this, we analyze how varying the measurement strength x, affects this super quantum correlation in the presence of thermal effects. Additionally, we assess the effect of this variation on the system’s evolution against its associated quantum parameters; external electric fields, exciton-exciton dipole interaction energy and Förster interaction. Our findings indicate that adjusting x to smaller values effectively enhances super quantum correlation, making weak measurements act as a catalyst. This adjustment ensures its robustness against thermal effects while preserving the non-classical attributes of system. Furthermore, our study unveils that the effect of weak measurements on this latter surpasses the quantum effects associated with the system. Indeed, manipulating the parameter x allows weak measurement to function as a versatile tool for modulating quantum characteristics and controlling exciton-exciton interactions within the coupled semiconductor quantum dots system.
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探索弱测量对激子-激子相互作用的影响
在我们对耦合半导体量子点系统内两个激元量子比特之间的超量子不和的研究中,我们的主要重点是揭示弱测量对其量子特性的影响。为此,我们分析了在存在热效应的情况下,改变测量强度 x 如何影响这种超量子相关性。此外,我们还根据相关量子参数(外部电场、激子-激子偶极相互作用能量和佛斯特相互作用)评估了这种变化对系统演化的影响。我们的研究结果表明,将 x 调整到较小值可有效增强超量子相关性,使弱测量起到催化作用。这种调整在保留系统非经典属性的同时,还确保了其对热效应的稳健性。此外,我们的研究还发现,弱测量对后者的影响超过了与系统相关的量子效应。事实上,操纵参数 x 可以让弱测量成为一种多功能工具,用于调节量子特性和控制耦合半导体量子点系统内的激子-激子相互作用。
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