Electrodeposited Negative Index Metamaterials with Visible and Near Infrared Response

被引:27
作者
Gomez-Castano, Mayte [1 ,2 ]
Garcia-Pomar, Juan Luis [1 ]
Perez, Luis Alberto [1 ]
Shanmugathasan, Sharvina [2 ]
Ravaine, Serge [2 ]
Mihi, Agustin [1 ]
机构
[1] Inst Mat Sci Barcelona ICMAB CSIC, UAB Campus, Bellaterra 08193, Spain
[2] Univ Bordeaux, CNRS, Ctr Rech Paul Pascal, UMR 5031, F-33600 Pessac, France
基金
欧洲研究理事会;
关键词
electrodeposition; metamaterials; nanoimprinting; negative-index; sensors; EXTRAORDINARY OPTICAL-TRANSMISSION; REFRACTIVE-INDEX;
D O I
10.1002/adom.202000865
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Negative index metamaterials have revolutionized the field of photonics because of their unconventional electromagnetic properties absent in naturally occurring materials. It remains a challenge however, to achieve strong negative refractive index at optical frequencies over large areas in a device compatible fashion. In this work, a scalable method for the straightforward production of fishnet-like negative index metamaterials combining soft nanoimprinting and electrodeposition is reported. In four simple steps, 2D arrays of pillars surrounded by metal-insulator-metal stacks made of gold and air gaps are created. The proper design of the geometrical features leads to negative indices from the visible to the near infrared, with values from -1.2 at 700 nm to -2.8 at 910 nm. The metamaterials are prepared on transparent conductive electrodes hence ready for device implementation. In addition, the nanostructures display high optical quality, which is corroborated with numerical simulations under normal and oblique incidence. As a proof of concept, the accessibility to the porosity of the metamaterial by studying the spectral changes produced when infiltrating different liquids through the metallic layers is demonstrated. The resonant wavelength increasing with the refractive index of the media makes the metamaterials potential platforms for both negative index structures and optical sensors.
引用
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页数:10
相关论文
共 47 条
[1]   TRANSPARENT CONDUCTING OXIDE FILMS FOR VARIOUS APPLICATIONS: A REVIEW [J].
Afre, Rakesh A. ;
Sharma, Nallin ;
Sharon, Maheshwar ;
Sharon, Madhuri .
REVIEWS ON ADVANCED MATERIALS SCIENCE, 2018, 53 (01) :79-89
[2]   Realization of broadband negative refraction in visible range using vertically stacked hyperbolic metamaterials [J].
Bang, Sanghun ;
So, Sunae ;
Rho, Junsuk .
SCIENTIFIC REPORTS, 2019, 9 (1)
[3]   Left-handed extraordinary optical transmission through a photonic crystal of subwavelength hole arrays [J].
Beruete, Miguel ;
Sorolla, Mario ;
Campillo, Igor .
OPTICS EXPRESS, 2006, 14 (12) :5445-5455
[4]  
Chanda D, 2011, NAT NANOTECHNOL, V6, P402, DOI [10.1038/NNANO.2011.82, 10.1038/nnano.2011.82]
[5]  
Chen XD, 2004, PHYS REV E, V70, DOI 10.1103/PhysRevE.70.016608
[6]   A review of gap-surface plasmon metasurfaces: fundamentals and applications [J].
Ding, Fei ;
Yang, Yuanqing ;
Deshpande, Rucha A. ;
Bozhevolnyi, Sergey I. .
NANOPHOTONICS, 2018, 7 (06) :1129-1156
[7]   Low-loss negative-index metamaterial at telecommunication wavelengths [J].
Dolling, Gunnar ;
Enkrich, Christian ;
Wegener, Martin ;
Soukoulis, Costas M. ;
Linden, Stefan .
OPTICS LETTERS, 2006, 31 (12) :1800-1802
[8]   Electrodeposition of gold thin films with controlled morphologies and their applications in electrocatalysis and SERS [J].
Elias, Jamil ;
Gizowska, Magdalena ;
Brodard, Pierre ;
Widmer, Roland ;
deHazan, Yoram ;
Graule, Thomas ;
Michler, Johann ;
Philippe, Laetitia .
NANOTECHNOLOGY, 2012, 23 (25)
[9]   A metamaterial for directive emission -: art. no. 213902 [J].
Enoch, S ;
Tayeb, G ;
Sabouroux, P ;
Guérin, N ;
Vincent, P .
PHYSICAL REVIEW LETTERS, 2002, 89 (21)
[10]   Nanoimprinting Techniques for Large-Area Three-Dimensional Negative Index Metamaterials with Operation in the Visible and Telecom Bands [J].
Gao, Li ;
Shigeta, Kazuki ;
Vazquez-Guardado, Abraham ;
Progler, Christopher J. ;
Bogart, Gregory R. ;
Rogers, John A. ;
Chanda, Debashis .
ACS NANO, 2014, 8 (06) :5535-5542