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Array of Nanoparticles Coupling With Quantum-Dot: Lattice Plasmon Quantum Features

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Date

2018

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Publisher

Elsevier Science Bv

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Green Open Access

No

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Abstract

In this study, we analyze the interaction of lattice plasmon with quantum-dot in order to mainly examine the quantum features of the lattice plasmon containing the photonic/plasmonic properties. Despite optical properties of the localized plasmon, the lattice plasmon severely depends on the array geometry, which may influence its quantum features such as uncertainty and the second-order correlation function. To investigate this interaction, we consider a closed system containing an array of the plasmonic nanoparticles and quantum-dot. We analyze this system with full quantum theory by which the array electric far field is quantized and the strength coupling of the quantum-dot array is analytically calculated. Moreover, the system's dynamics are evaluated and studied via the Heisenberg-Langevin equations to attain the system optical modes. We also analytically examine the Purcell factor, which shows the effect of the lattice plasmon on the quantum-dot spontaneous emission. Finally, the lattice plasmon uncertainty and its time evolution of the second-order correlation function at different spatial points are examined. These parameters are dramatically affected by the retarded field effect of the array nanoparticles. We found a severe quantum fluctuation at points where the lattice plasmon occurs, suggesting that the lattice plasmon photons are correlated.

Description

Salmanogli, Ahmad/0000-0002-3587-5582; Gecim, Selcuk/0000-0002-8774-7048

Keywords

Quantum Theory, Plasmonic, Lattice Plasmon, Second-Order Correlation Function, Purcell Factor, Quantum-Dot

Fields of Science

0103 physical sciences, 02 engineering and technology, 0210 nano-technology, 01 natural sciences

Citation

Salmanoğli, A., Geçim, H.S. (2018). Array of nanoparticles coupling with quantum-dot: Lattice plasmon quantum features. Physica E-Low-Dimensional Systems&Nanostructures, 100, 54-62. http://dx.doi.org/10.1016/j.physe.2018.03.006

WoS Q

Q2

Scopus Q

Q1
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OpenCitations Citation Count
6

Source

Physica E: Low-dimensional Systems and Nanostructures

Volume

100

Issue

Start Page

54

End Page

62
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Scopus : 6

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Mendeley Readers : 5

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6

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6

checked on Feb 23, 2026

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4

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0.34099112

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