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混合半导体量子点-金属纳米粒子系统中的费诺效应与量子纠缠

Fano Effect and Quantum Entanglement in Hybrid Semiconductor Quantum Dot-Metal Nanoparticle System.

作者信息

He Yong, Zhu Ka-Di

机构信息

School of Mathematics and Physics, Changzhou University, Changzhou 213164, China.

Key Laboratory of Artificial Structures and Quantum Control (Ministry of Education), Department of Physics, Shanghai Jiao Tong University, 800 Dong Chuan Road, Shanghai 200240, China.

出版信息

Sensors (Basel). 2017 Jun 20;17(6):1445. doi: 10.3390/s17061445.

Abstract

In this paper, we review the investigation for the light-matter interaction between surface plasmon field in metal nanoparticle (MNP) and the excitons in semiconductor quantum dots (SQDs) in hybrid SQD-MNP system under the full quantum description. The exciton-plasmon interaction gives rise to the modified decay rate and the exciton energy shift which are related to the exciton energy by using a quantum transformation method. We illustrate the responses of the hybrid SQD-MNP system to external field, and reveal Fano effect shown in the absorption spectrum. We demonstrate quantum entanglement between two SQD mediated by surface plasmon field. In the absence of a laser field, concurrence of quantum entanglement will disappear after a few ns. If the laser field is present, the steady states appear, so that quantum entanglement produced will reach a steady-state entanglement. Because one of all optical pathways to induce Fano effect refers to the generation of quantum entangled states, It is shown that the concurrence of quantum entanglement can be obtained by observation for Fano effect. In a hybrid system including two MNP and a SQD, because the two Fano quantum interference processes share a segment of all optical pathways, there is correlation between the Fano effects of the two MNP. The investigations for the light-matter interaction in hybrid SQD-MNP system can pave the way for the development of the optical processing devices and quantum information based on the exciton-plasmon interaction.

摘要

在本文中,我们在全量子描述下回顾了对混合半导体量子点-金属纳米粒子(SQD-MNP)系统中金属纳米粒子(MNP)表面等离子体激元场与半导体量子点(SQD)中的激子之间光与物质相互作用的研究。通过量子变换方法,激子-等离子体激元相互作用导致了与激子能量相关的修正衰减率和激子能量移位。我们阐述了混合SQD-MNP系统对外场的响应,并揭示了吸收光谱中呈现的法诺效应。我们证明了由表面等离子体激元场介导的两个SQD之间的量子纠缠。在没有激光场的情况下,量子纠缠的并发在几纳秒后会消失。如果存在激光场,则会出现稳态,从而使产生的量子纠缠达到稳态纠缠。由于诱导法诺效应的所有光学途径之一涉及量子纠缠态的产生,结果表明可以通过观察法诺效应来获得量子纠缠的并发。在包含两个MNP和一个SQD的混合系统中,由于两个法诺量子干涉过程共享所有光学途径的一部分,因此两个MNP的法诺效应之间存在相关性。对混合SQD-MNP系统中光与物质相互作用的研究可为基于激子-等离子体激元相互作用的光学处理器件和量子信息的发展铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98e0/5492473/b50361d5e413/sensors-17-01445-g001.jpg

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