DNA implementation for optical waveguide as a switchable transmission line and memristor

被引:15
作者
Ebrahimi, Sepideh [1 ]
Sabbaghi-Nadooshan, Reza [2 ]
Tavakoli, Mohammad Bagher [1 ]
机构
[1] Islamic Azad Univ, Dept Elect Engn, Arak Branch, Niayesh Bldg,Emam Hasan Blvd,POB 38135-567, Tehran, Arak, Iran
[2] Islamic Azad Univ, Dept Elect Engn, Cent Tehran Branch, Tehran, Iran
关键词
Plasmonic; Sub wavelength; DNA; Waveguide; Switchable; Memristor; SURFACE-PLASMON-POLARITONS; SPLIT RING-RESONATOR;
D O I
10.1007/s11082-018-1462-8
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In this paper, an optical waveguide has been developed based on the (Deoxyribonucleic acid) DNA core as a multi-slab structure by switching characteristic at 300 THz. We show that how the DNA with various electrical characteristics can be considered as a reconfigurable material which is placed between two optical metal layers. Therefore, we can control the current and voltage density values based on the divergence of the DNA types as an optical switch. Moreover, we can select the Au and Ag for the metal coat. In this research, we demonstrate that the Ag/DNA/Ag and Au/DNA/Ag have better performance in switching qualification than Au/DNA/Au model as a conventional structure. This DNA core waveguide has a switchable feature which cannot be found at any conventional plasmonic waveguide. The FDTD time domain is used for simulating the waveguide and the current density is considered as an ON/OFF switch. We carry out parametric studies for the physical dimensions of the waveguide and illustrate that how we can improve the switching characteristic. Moreover, we have checked the coupling effect between the transmission lines and defined the figure of merit for switching quality. This structure can be considered as an optical memristor and optical "YES" gate which couldn't be obtained by other graphene waveguide while it became feasible based on DNA switching feature.
引用
收藏
页数:13
相关论文
共 33 条
[21]   Mid-infrared active graphene nanoribbon plasmonic waveguide devices [J].
Ooi, Kelvin J. A. ;
Chu, Hong Son ;
Ang, Lay Kee ;
Bai, Ping .
JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS, 2013, 30 (12) :3111-3116
[22]  
Park SJ, 2002, SCIENCE, V295, P1503, DOI 10.1126/science.1067003
[23]   A reproducible write-(read)n-erase and multilevel bio-memristor based on DNA molecule [J].
Qin, Shuchao ;
Dong, Ruixin ;
Yan, Xunling ;
Du, Qianqian .
ORGANIC ELECTRONICS, 2015, 22 :147-153
[24]   Transparent and flexible write-once-read-many (WORM) memory device based on egg albumen [J].
Qu, Bo ;
Lin, Qianru ;
Wan, Tao ;
Du, Haiwei ;
Chen, Nan ;
Lin, Xi ;
Chu, Dewei .
JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2017, 50 (31)
[25]   Investigation of multilayer planar hybrid plasmonic waveguide and bends [J].
Sharma, P. ;
Kumar, V. D. .
ELECTRONICS LETTERS, 2016, 52 (09) :732-733
[26]   Corrugated-enhanced second harmonic generation in metal-insulator-metal plasmonic waveguides [J].
Soltani, Mohamadreza .
OPTICAL AND QUANTUM ELECTRONICS, 2017, 49 (07)
[27]   An organic nonvolatile resistive switching memory device fabricated with natural pectin from fruit peel [J].
Sun, Bai ;
Zhang, Xin ;
Zhou, Guangdong ;
Li, Pingyuan ;
Zhang, Yong ;
Wang, Hongyan ;
Xia, Yudong ;
Zhao, Yong .
ORGANIC ELECTRONICS, 2017, 42 :181-186
[28]   Sub-nanosecond switching of a tantalum oxide memristor [J].
Torrezan, Antonio C. ;
Strachan, John Paul ;
Medeiros-Ribeiro, Gilberto ;
Williams, R. Stanley .
NANOTECHNOLOGY, 2011, 22 (48)
[29]   DNA in the Material World: Electrical Properties and Nano-Applications [J].
Triberis, Georgios P. ;
Dimakogianni, Margarita .
RECENT PATENTS ON NANOTECHNOLOGY, 2009, 3 (02) :135-153
[30]   Tunable surface plasmon-polaritons in a gyroelectric slab sandwiched between two graphene layers [J].
Xu, Guoding ;
Cao, Ming ;
Liu, Chang ;
Sun, Jian ;
Pan, Tao .
OPTICS COMMUNICATIONS, 2016, 366 :112-118