T-SHAPED CIRCULATOR BASED ON A TWO-DIMENSIONAL PHOTONIC CRYSTAL WITH A SQUARE LATTICE
20180120598 · 2018-05-03
Inventors
- Victor DMITRIEV (Guamá, Belém - Pará, BR)
- Gianni Masaki Tanaka PORTELA (Guamá, Belém - Pará, BR)
- Leno Rodrigues MARTINS (Guamá, Belém - Pará, BR)
Cpc classification
B82Y20/00
PERFORMING OPERATIONS; TRANSPORTING
G02B6/1225
PHYSICS
G02F1/0955
PHYSICS
International classification
Abstract
A two-dimensional photonic crystal formed composed of a square lattice of dielectric rods immersed in air, in which are inserted, in a controlled manner, defects that originate three waveguides and one resonant cavity. The cavity is formed of a ferrite cylinder with magneto-optical properties, and by two dielectric cylinders located near to the ferrite cylinder. It has the function of transmitting electromagnetic signals in a desired direction (clockwise or counterclockwise), defined by the sign of an external DC magnetic field H.sub.0.
Claims
1. A T-shaped circulator device based on a two-dimensional photonic crystal with square lattice, the device comprising a two-dimensional photonic crystal in which are inserted three waveguides and a resonant cavity and it performs the transmission of electromagnetic signals in a given direction (clockwise or counterclockwise), with the direction being determined by the sign of an external DC magnetic field applied to the device.
2. The T-shaped circulator device based on a two-dimensional photonic crystal with square lattice according to claim 1, wherein the resonant cavity has a simplified structure, formed by a ferrite cylinder and two cylinders near the dielectric ferrite with enlarged diameters when compared to other cylinders that make up the photonic crystal.
3. The T-shaped circulator device based on a two-dimensional photonic crystal with square lattice according to claim 1, wherein when operating at a normalized central frequency a/2c=0.3499, insertion losses are lower than 0.05 dB, while the bandwidth, set to 100 GHz, is equal to 620 MHz for excitation at port 1, 680 MHz for excitation at port 2, and 730 MHz for excitation at the port 3, at the level 15 dB of isolation curves.
4. The T-shaped circulator device based on a two-dimensional photonic crystal with square lattice according to claim 2, wherein when operating at a normalized central frequency a/2c=0.3499, insertion losses are lower than 0.05 dB, while the bandwidth, set to 100 GHz, is equal to 620 MHz for excitation at port 1, 680 MHz for excitation at port 2, and 730 MHz for excitation at the port 3, at the level 15 dB of isolation curves.
Description
[0042] When the excitation is applied at port 1 (associated with the waveguide 101), it occurs the signal transmission from this port to port 3 (associated with the waveguide 103), with isolation of port 2 (associated with the waveguide 102) due to the special alignment of the dipole mode, as can be seen in
[0043] In the cases illustrated in
[0044] In order to obtain a higher bandwidth, adjustments were made in the central structure of the device, which can be seen in
[0045] The device's frequency response is shown in