Showing posts with label one-dimensional photonic crystals. Show all posts
Showing posts with label one-dimensional photonic crystals. Show all posts

Saturday, November 2, 2019

Abstract-Tunable narrow terahertz absorption of one-dimensional photonic crystals embedded with Dirac semimetal-dielectric defect layers



Qin Wang and Liwei Zhang

https://www.osapublishing.org/ao/abstract.cfm?uri=ao-58-31-8486

The absorption characteristics of one-dimensional photonic crystals embedded with Dirac semimetal-dielectric defect layers are studied using the transfer matrix method. Numerical results show that our proposed structure can realize near-perfect narrow absorption for its strong field localization effects. The absorption frequency is tunable by adjusting the Fermi energy of the Dirac semimetal, temperature, permittivity of the dielectric, and the structural parameters. Moreover, double or multiple absorption channels can be achieved by changing the structure. Furthermore, the absorption performance is wide-angle and insensitive to polarization of the incident wave. Such properties exhibit potential value in designing selective absorbers and thermal detectors.
© 2019 Optical Society of America

Thursday, May 30, 2019

Abstract-Tunable defect modes of one-dimensional photonic crystals containing a Dirac semimetal-based metamaterial defect layer



Qin Wang, Xinliang Wang, Liwei Zhang, Yongqiang Wang, Wentao Qiao, Xu Han, Xiaolin Cai, and Weiyang Yu

https://www.osapublishing.org/ao/abstract.cfm?uri=ao-58-1-94&origin=search

The transmission properties of one-dimensional photonic crystals (PCs) containing a metamaterial (MM) defect layer are investigated using the transfer matrix method. The MM is composed of alternating layers of a dielectric material and a Dirac semimetal (DS) material. Numerical results show that the defective PCs possess a tunable defect mode, which is significantly dependent on the Fermi level of the DS as well as the structural parameters of the MM defect layer. The defect mode properties under different incident angles for TE and TM polarizations are also studied. Such defective structures have potential applications in tunable filters and sensors in terahertz regions.
© 2018 Optical Society of America