structure array
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2021 ◽  
Author(s):  
Xingsong Su ◽  
Yunsong Qiu ◽  
Mengkang Yu ◽  
GuangSu Shao ◽  
Hongbo Sun ◽  
...  

2021 ◽  
Vol 2093 (1) ◽  
pp. 012029
Author(s):  
Shijie Yue ◽  
Guoping Hu ◽  
Chenghong Zhan ◽  
Yule Zhang ◽  
Mingming Zhu

Abstract Aiming at the problem of the small aperture of the traditional MIMO radar with virtual degrees of freedom, this paper designs a high degree of freedom space-limited MIMO radar. Both the transmitting and receiving elements of this radar adopt a sparse array structure. Array composition, the receiving array element is composed of a single array element and a uniform linear array. The number of virtual array elements can be realized by using array elements. Compared with the traditional sparse array MIMO radar with the same number of elements, the designed space-limited sparse array MIMO radar has a larger aperture. Experimental simulations verify the superiority of the space-limited MIMO radar angle estimation.


Author(s):  
Payel Ghosh ◽  
Sarad Subhra Bhakat ◽  
Arnab Panda ◽  
Rajorshi Bandyopadhyay ◽  
Rajib Chakraborty

2020 ◽  
Vol 10 (8) ◽  
pp. 2713 ◽  
Author(s):  
Kui Wen ◽  
Zhaojian Zhang ◽  
Xinpeng Jiang ◽  
Jie He ◽  
Junbo Yang

The electromagnetic spectrum includes the frequency range (spectrum) of electromagnetic radiation and its corresponding wavelength and energy. Due to the unique properties of different frequency ranges of the electromagnetic spectrum, a series of functional devices working in each frequency rang have been proposed. Here, we propose a periodic subwavelength hoof-shaped structure array, which contains a variety of geometric configurations, including U-shaped and rectangle structures. The results show that the enhanced optical transmission (EOT) effect of the surface plasmon excited by the hoof-shaped structure is highly sensitive to the polarization of the incident light, which leads to the peak’s location shift and the amplitude intensity variety of transmission peaks of U-shaped structure in the case of coupling based on the surface plasmon of rectangle structure. In addition, take advantage of the EOT effect realized in the periodic hoof-shaped structure array, we propose a multifunctional plasmon optical device in the infrared range. By adjusting the polarization angle of the incident light, the functions of the optical splitter in the near-infrared range and the optical switch in the mid-infrared range are realized. Moreover, with the changes of the polarization angle, different proportions of optical intensities split are realized. The device has theoretically confirmed the feasibility of designing multifunctional integrated devices through a hoof-shaped-based metamaterial nanostructure, which provides a broad prospect for the extensive use of multiple physical mechanisms in the future to achieve numerous functions in simple nanostructures.


RSC Advances ◽  
2020 ◽  
Vol 10 (63) ◽  
pp. 38220-38226
Author(s):  
Xue-fang Hu ◽  
Chang-gui Lu ◽  
Quan Wang ◽  
Jing-kun Xu ◽  
Yi-ping Cui

A template-assisted wet etching method for the preparation of perovskite micro-structure array is proposed. This method has a superiority of flexible graph design, controllable size and high precision.


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