Experimental validation of group delay in a multi-window electromagnetically induced transparency metasurface

Author:

Chen Jing1ORCID,Breslavets Oleksiy A.2ORCID,Savin Yuri N.2ORCID,Kupriianov Anton S.3,Eremenko Zoya E.24ORCID,Tuz Vladimir R.15ORCID

Affiliation:

1. State Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, International Center of Future Science, Jilin University 1 , 2699 Qianjin Street, Changchun 130012, China

2. Department of Acoustic and Electromagnetic Spectroscopy, O. Ya. Usikov Institute for Radiophysics and Electronics of the National Academy of Sciences of Ukraine 2 , 61085 Kharkiv, Ukraine

3. College of Physics, International Center of Future Science, Jilin University 3 , 2699 Qianjin St., Changchun 130012, China

4. Leibniz Institute for Solid State and Materials Research 4 , Helmholtzstraße 20, 01069 Dresden, Germany

5. School of Radiophysics, Biomedical Electronics and Computer Systems, V. N. Karazin Kharkiv National University 5 , 4, Svobody Square, Kharkiv 61022, Ukraine

Abstract

Metasurface analogs of electromagnetically induced transparency (EIT) are attracting sustaining attention due to their ability to maintain transparency windows accompanied by extreme dispersion of propagating waves, which are important for slow light devices and highly sensitive optical sensors. In this paper, we study theoretically, numerically, and experimentally the conditions for the existence of multi-band transparency windows in the metasurface supported by the interaction of dipole modes in an asymmetric unit cell. The unit cell is composed of a single bright resonator and several dark resonators made in the form of rectangular metal patches. The manifestation of EIT is studied for different metasurface configurations by varying the number and positions of resonators used within the unit cell. To validate the slow-down effect caused by EIT, a prototype of the metasurface is fabricated and tested, providing a measurement of the group delay and bandwidth-delay product features. The obtained results clearly confirm the presence of four EIT-like transparency windows in the metasurface transmission spectra originating from the coupling between either quasi-TE or quasi-TM modes of the resonators.

Funder

Alexander von Humboldt-Stiftung

Publisher

AIP Publishing

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