Silver Nanoparticle Chains for Ultra-Long-Range Plasmonic Waveguides for Nd3+ Fluorescence

被引:2
作者
Fernandez-Martinez, Javier [1 ,2 ]
Carretero-Palacios, Sol [1 ,2 ]
Molina, Pablo [1 ,2 ]
Bravo-Abad, Jorge [3 ,4 ]
Ramirez, Mariola O. [1 ,2 ,4 ]
Bausa, Luisa E. [1 ,2 ,4 ]
机构
[1] Univ Autonoma Madrid, Dept Fis Mat, E-28049 Madrid, Spain
[2] Univ Autonoma Madrid, Inst Ciencia Mat Nicolas Cabrera, E-28049 Madrid, Spain
[3] Univ Autonoma Madrid, Dept Fis Teor Mat Condensada, E-28049 Madrid, Spain
[4] Univ Autonoma Madrid, Condensed Matter Phys Ctr IFIMAC, E-28049 Madrid, Spain
关键词
silver nanoparticles; linear chains; plasmonic waveguiding; nanophotonics; rare earth ions; energy propagation; ELECTROMAGNETIC ENERGY-TRANSPORT; LINEAR-CHAINS; OPTICAL GAIN; ENHANCEMENT; PROPAGATION; LINBO3; OPERATION; ION; ER;
D O I
10.3390/nano12234296
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Plasmonic waveguides have been shown to be a promising approach to confine and transport electromagnetic energy beyond the diffraction limit. However, ohmic losses generally prevent their integration at micrometric or millimetric scales. Here, we present a gain-compensated plasmonic waveguide based on the integration of linear chains of Ag nanoparticles on an optically active Nd3+-doped solid-state gain medium. By means of dual confocal fluorescence microscopy, we demonstrate long-range optical energy propagation due to the near-field coupling between the plasmonic nanostructures and the Nd3+ ions. The subwavelength fluorescence guiding is monitored at distances of around 100 mu m from the excitation source for two different emission ranges centered at around 900 nm and 1080 nm. In both cases, the guided fluorescence exhibits a strong polarization dependence, consistent with the polarization behavior of the plasmon resonance supported by the chain. The experimental results are interpreted through numerical simulations in quasi-infinite long chains, which corroborate the propagation features of the Ag nanoparticle chains at both excitation (lambda(exc) = 590 nm) and emission wavelengths. The obtained results exceed by an order of magnitude that of previous reports on electromagnetic energy transport using linear plasmonic chains. The work points out the potential of combining Ag nanoparticle chains with a small interparticle distance (similar to 2 nm) with rare-earth-based optical gain media as ultra-long-range waveguides with extreme light confinement. The results offer new perspectives for the design of integrated hybrid plasmonic- photonic circuits based on rare-earth-activated solid-state platforms.
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页数:11
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共 55 条
[1]   Ten years of spasers and plasmonic nanolasers [J].
Azzam, Shaimaa, I ;
Kildishev, Alexander, V ;
Ma, Ren-Min ;
Ning, Cun-Zheng ;
Oulton, Rupert ;
Shalaev, Vladimir M. ;
Stockman, Mark, I ;
Xu, Jia-Lu ;
Zhang, Xiang .
LIGHT-SCIENCE & APPLICATIONS, 2020, 9 (01)
[2]   Comparative Study of Light Guiding by Freestanding Linear Chains of Spherical Au and Si Nanoparticles [J].
Barabanenkov, Mikhail Yu. ;
Italyantsev, Aleksandr G. ;
Sapegin, Aleksandr A. .
PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS, 2020, 257 (09)
[3]   Surface plasmon amplification by stimulated emission of radiation: Quantum generation of coherent surface plasmons in nanosystems [J].
Bergman, DJ ;
Stockman, MI .
PHYSICAL REVIEW LETTERS, 2003, 90 (02) :4
[4]   Bulk periodic poled lithium niobate crystals doped with Er and Yb [J].
Bermúdez, V ;
Serrano, MD ;
Diéguez, E .
JOURNAL OF CRYSTAL GROWTH, 1999, 200 (1-2) :185-190
[5]   Long-Range Dipole-Dipole Interactions in a Plasmonic Lattice [J].
Boddeti, Ashwin K. ;
Guan, Jun ;
Sentz, Tyler ;
Juarez, Xitlali ;
Newman, Ward ;
Cortes, Cristian ;
Odom, Teri W. ;
Jacob, Zubin .
NANO LETTERS, 2022, 22 (01) :22-28
[6]   Lanthanide Luminescence for Biomedical Analyses and Imaging [J].
Buenzli, Jean-Claude G. .
CHEMICAL REVIEWS, 2010, 110 (05) :2729-2755
[7]   Spectroscopic investigation of Nd3+ ion in LiNbO3, MgO:LiNbO3 and LiTaO, single crystals relevant for laser applications [J].
Burlot, R ;
Moncorge, R ;
Manaa, H ;
Boulon, G ;
Guyot, Y ;
Sole, JG ;
CochetMuchy, D .
OPTICAL MATERIALS, 1996, 6 (04) :313-330
[8]   Dual-polarization-pump CW laser operation in Nd3+:LiNbO3 channel waveguides fabricated by reverse proton exchange [J].
Cantelar, E. ;
Lifante, G. ;
Cusso, F. ;
Domenech, M. ;
Busacca, A. ;
Cino, A. ;
Sanseverino, S. Riva .
OPTICAL MATERIALS, 2008, 30 (07) :1039-1043
[9]   Tm3+-doped Zn-diffused LiNbO3 channel waveguides [J].
Cantelar, E ;
Torchia, GA ;
Sanz-García, JA ;
Pernas, PL ;
Lifante, G ;
Cussó, F .
PHYSICA SCRIPTA, 2005, T118 :69-71
[10]   Plasmon-polariton transport in metal-nanoparticle chains embedded in a gain medium [J].
Citrin, DS .
OPTICS LETTERS, 2006, 31 (01) :98-100