Multidimensional manipulation of wave fields based on artificial microstructures

Journal Title: Opto-Electronic Advances - Year 2020, Vol 3, Issue 11

Abstract

Artificial microstructures, which allow us to control and change the properties of wave fields through changing the geometrical parameters and the arrangements of microstructures, have attracted plenty of attentions in the past few decades. Some artificial microstructure based research areas, such as metamaterials, metasurfaces and phononic topological insulators, have seen numerous novel applications and phenomena. The manipulation of different dimensions (phase, amplitude, frequency or polarization) of wave fields, particularly, can be easily achieved at subwavelength scales by metasurfaces. In this review, we focus on the recent developments of wave field manipulations based on artificial microstructures and classify some important applications from the viewpoint of different dimensional manipulations of wave fields. The development tendency of wave field manipulation from single-dimension to multidimensions provides a useful guide for researchers to realize miniaturized and integrated optical and acoustic devices.

Authors and Affiliations

Yuebian Zhang, Hui Liu, Hua Cheng*, Jianguo Tian, Shuqi Chen*

Keywords

Related Articles

Printing photovoltaics by electrospray

Solution processible photovoltaics (PV) are poised to play an important role in scalable manufacturing of low-cost solar cells. Electrospray is uniquely suited for fabricating PVs due to its several desirable characteris...

Demonstration of orbital angular momentum channel healing using a Fabry-Pérot cavity

Orbital angular momentum (OAM) mode division provides a promising solution to push past the already exhausted available degrees of freedom available in conventional optical communications. Nevertheless, the practical dep...

Nonlinear frequency conversion in optical nanoantennas and metasurfaces: materials evolution and fabrication

Nonlinear frequency conversion is one of the most fundamental processes in nonlinear optics. It has a wide range of applications in our daily lives, including novel light sources, sensing, and information processing. It...

Germanium-tin alloys: applications for optoelectronics in mid-infrared spectra

We summarize our work of the optoelectronic devices based on Germanium-tin (GeSn) alloys assisted with the Si3N4 liner stressor in mid-infrared (MIR) domains. The device characteristics are thoroughly analyzed by the str...

A review of crosstalk research for plasmonic waveguides

Plasmonic waveguides, as a competitive candidate, have been widely studied in rapid developing photonic integrated circuits (PICs) and optical interconnection fields. However, crosstalk between plasmonic waveguides is a...

Download PDF file
  • EP ID EP693134
  • DOI 10.29026/oea.2020.200002
  • Views 121
  • Downloads 0

How To Cite

Yuebian Zhang, Hui Liu, Hua Cheng*, Jianguo Tian, Shuqi Chen* (2020). Multidimensional manipulation of wave fields based on artificial microstructures. Opto-Electronic Advances, 3(11), -. https://europub.co.uk/articles/-A-693134