scholarly journals All-dielectric metasurface for wavefront control at terahertz frequencies

Author(s):  
Raghu Dharmavarapu ◽  
Shanti Bhattacharya ◽  
Saulius Juodkazis ◽  
Soon Hock Ng
Nanophotonics ◽  
2021 ◽  
Vol 10 (2) ◽  
pp. 1295-1307
Author(s):  
Yulin Wang ◽  
Zhanghua Han ◽  
Yong Du ◽  
Jianyuan Qin

Abstract Toroidal dipole (TD) with weak coupling to the electromagnetic fields offers tremendous potential for advanced design of photonic devices. However, the excitation of high quality (Q) factor TD resonances in these devices is challenging. Here, we investigate ultrahigh-Q factor TD resonances at terahertz frequencies arising from a distortion of symmetry-protected bound states in the continuum (BIC) in all-dielectric metasurface consisting of an array of high-index tetramer clusters. By elaborately arranging the cylinders forming an asymmetric cluster, two distinct TD resonances governed by BIC are excited and identified. One is distinguished as intracluster TD mode that occurs in the interior of tetramer cluster, and the other one is intercluster TD mode that arises from the two neighboring clusters. Such TD resonances can be turned into ultrahigh-Q leaky resonances by controlling the asymmetry of cluster. The low-loss TD resonances with extremely narrow linewidth are very sensitive to the change in the refractive index of the surrounding media, achieving ultrahigh sensitivity level of 489 GHz/RIU. These findings will open up an avenue to develop ultrasensitive photonic sensor in the terahertz regime.


Author(s):  
A. Sayanskiy ◽  
M. Odit ◽  
V. Asadchy ◽  
P. Kapitanova ◽  
P. Belov

2020 ◽  
Vol 14 (6) ◽  
pp. 411-416
Author(s):  
Nurul Awadah Nadiah Binti Suhaimi ◽  
Izaddeen Kabir Yakasai ◽  
Emeroylariffion Abas ◽  
Shubi Kaijage ◽  
Feroza Begum

2021 ◽  
pp. 126902
Author(s):  
L.A. Finney ◽  
J. Lin ◽  
P.J. Skrodzki ◽  
M. Burger ◽  
J. Nees ◽  
...  

2021 ◽  
Vol 53 (8) ◽  
Author(s):  
Chuang Yang ◽  
Jian Wang ◽  
Cheng Yang

AbstractIn this paper, the characteristics of the transmission coefficient (S$$_{21}$$ 21 ) measured in free-space at terahertz frequencies are analyzed. The analysis results are used to estimate the permittivity of the material under test, and the estimated permittivity is adopted as an initial-value for the iterative algorithm to extract the complex permittivity of the material from the S$$_{21}$$ 21 . The iterative extraction technique based on the estimation is efficient, while the iterative extraction technique without the estimation is inefficient. Various known materials in the literature are used to validate the technique in the terahertz band.


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