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Nonlinear optical properties of semiconductor double quantum wires coupled to a quantum-sized metal nanoparticle

机译:耦合到量子化金属纳米粒子的半导体双量子线的非线性光学性能

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We theoretically investigate linear and nonlinear optical absorption coefficients (OACs) and refractive index changes (RICs) of two quantum wires (QWs) separated by a quantum-sized metal nanoparticle (MNP) using a density matrix method and dielectric quantum theory. The exciton-plasmon coupling and the dipole-dipole interaction (DDI) between the two QWs are taken into account. We find that the magnitudes of the linear and nonlinear OACs (RICs) from the QWs are enhanced by one order of magnitude, in contrast to the case without a MNP, due to the exciton-plasmon coupling and the DDI between the two QWs. The quantum size effect in a MNP induces a pronounced enhancement in the magnitudes of the linear and nonlinear OACs (RICs) with the increase of the MNP radius. Furthermore, the optical responses can be further strengthened via increasing the MNP radius or decreasing the radius and gap of the QWs, owing to the enhanced exciton-plasmon coupling and the DDI between the two QWs. Moreover, the magnitudes of the total OACs (RICs) are reduced by increasing the optical intensity, along with a splitting effect of the OACs under strong optical intensity. Our results provide the possibility of designing the hybrid nanostructures with large nonlinearity for applications in nano-devices such as optical switches and amplifiers. (C) 2020 Optical Society of America
机译:理论上,通过密度矩阵法和介电量子理论和介电量子理论,从理论上研究了由量子大小的金属纳米粒子(MNP)分离的两个量子线(QW)的线性和非线性光学吸收系数(OAC)和折射率变化(RIC)。考虑两个QWS之间的激子 - 等离子体耦合和偶极子 - 偶极相互作用(DDI)。我们发现,由于兴奋 - 等离子体耦合和两个QW之间的DDI,与没有MNP的情况相比,线性和非线性OAC(RICS)的幅度从QW的幅度增强。随着MNP半径的增加,MNP中的量子尺寸效应在线性和非线性OAC(RICS)的大小中引起显着增强。此外,由于增强的激子 - 等离子体耦合和两个QW之间的DDI,可以通过增加MNP半径或降低QWS的半径和间隙来进一步强化光学响应。此外,通过增加光强度,通过增加光学强度的分裂效果来减少总OACS(RICS)的大小。我们的结果提供了在纳米器件中设计具有大型非线性的混合纳米结构,以便在纳米器件如光开关和放大器中。 (c)2020美国光学学会

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