Controllable Patterning of Metallic Photonic Crystals for Waveguide–Plasmon Interaction

Author:

Lin Yuanhai12ORCID,Che Deqing12,Hao Wenjie12,Dong Yifei12,Guo Heng12,Wang Junsheng12,Zhang Xinping3ORCID

Affiliation:

1. Liaoning Key Laboratory of Marine Sensing and Intelligent Detection, Dalian Maritime University, Dalian 116026, China

2. Information Science and Technology College, Dalian Maritime University, Dalian 116026, China

3. Institute of Information Photonics Technology and College of Applied Sciences, Beijing University of Technology, Beijing 100124, China

Abstract

Waveguide–plasmon polaritons sustained in metallic photonic crystal slabs show fascinating properties, such as narrow bandwidth and ultrafast dynamics crucial for biosensing, light emitting, and ultrafast switching. However, the patterning of metallic photonic crystals using electron beam lithography is challenging in terms of high efficiency, large area coverage, and cost control. This paper describes a controllable patterning technique for the fabrication of an Ag grating structure on an indium–tin oxide (ITO) slab that enables strong photon–plasmon interaction to obtain waveguide–plasmon polaritons. The Ag grating consisting of self-assembled silver nanoparticles (NPs) exhibits polarization-independent properties for the excitation of the hybrid waveguide–plasmon mode. The Ag NP grating can also be annealed at high temperature to form a continuous nanoline grating that supports the hybrid waveguide–plasmon mode only under transverse magnetic (TM) polarization. We tuned the morphology and the periodicity of the Ag grating through the concentration of silver salt and the photoresist template, respectively, to manipulate the strong coupling between the plasmon and the waveguide modes of different orders.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Dalian high-level Talents Innovation Support Plan

Dalian key field innovation team

Liaoning Province “the open competition mechanism to select the best candidates” project

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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