DocumentCode :
717982
Title :
Kerr nonlinear all-optical switches based on asymmetric plasmonic T-shaped single slit
Author :
Ahadi, S. ; Granpayeh, N.
Author_Institution :
Center of Excellence in Electromagn., K. N. Toosi Univ. of Technol., Tehran, Iran
fYear :
2015
fDate :
10-14 May 2015
Firstpage :
343
Lastpage :
347
Abstract :
All-optical switches are considered as a key element in the optical communication systems networks. In this article, the performance of a compact switch, based on asymmetric plasmonic T-shaped single slit structure, coated with Kerr nonlinear dielectric, is analyzed and simulated by the finite-difference time-domain (FDTD) numerical method. In the structure of this plasmonic switch, by utilizing a Fabry-Perot resonance effect, the light-matter interaction length is increased and the sensitivity of the switch to the environment refractive index variations is strengthened. Furthermore, the excitation and modulation processes of the surface plasmon polaritons (SPPs) occur in a single structure which results in a remarkable reduction of the total size of the device. The switching is caused by the Kerr nonlinear self-phase modulation (SPM) effect. The extinction ratio of this all-optical bidirectional switch is higher than 6dB. This compact structure may be used in the photonic integrated circuits, (PICs).
Keywords :
Fabry-Perot resonators; finite difference time-domain analysis; integrated optics; nonlinear optics; optical Kerr effect; optical communication; optical modulation; photonic switching systems; plasmonics; polaritons; refractive index; surface plasmons; FDTD numerical method; Fabry-Perot resonance effect; Kerr nonlinear all-optical switches; Kerr nonlinear dielectric; Kerr nonlinear self-phase modulation effect; PIC; SPM effect; SPP; all-optical bidirectional switch; asymmetric plasmonic T-shaped single slit structure; compact switch; environment refractive index variations; excitation processes; finite-difference time-domain numerical method; light-matter interaction length; modulation processes; optical communication systems networks; photonic integrated circuits; plasmonic switch; surface plasmon polaritons; Conferences; Decision support systems; Electrical engineering; Hafnium; All-optical plasmonic switch; Kerr nonlinear effect; Self-phase modulation; Surface plasmon polaritons;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electrical Engineering (ICEE), 2015 23rd Iranian Conference on
Conference_Location :
Tehran
Print_ISBN :
978-1-4799-1971-0
Type :
conf
DOI :
10.1109/IranianCEE.2015.7146237
Filename :
7146237
Link To Document :
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