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We analyze the charateristics of birefringence and coulpling at the two communication windows by using the finite element method.
It is worth noting that its working wavelength covers 1310 nm and 1550 nm, which are two important communication windows.
This paper investigates the structure, operation and simulation of Optical Waveguide for Optical Demultiplexer (DEMUX) at three optical communication windows.
A polarization filter is designed at two communication windows of 1310 and 1550 nm based on microstructured optical fiber.
Array of micro ring resonators based optical photodetectors is introduced and evaluated in this paper to operate in optical communication windows for broad band situation.
Considering the relatively short duration of the communication windows needed this is not an issue and sufficient time will be available to recharge the batteries.
Similar(49)
These structures have high transmission efficiency over a large bandwidth in third communication window.
Backward dropping efficiency of 96% and forward dropping efficiency up to 98% can be achieved in third communication window.
This range is relatively stable as the higher CAM generation rates compensate the lower communication window tpass while passing.
The results show that the structure has high transmission efficiency in the third communication window (wavelength 1550 nm), can split pass band electromagnetic waves equally.
The negative extinction coefficient of GaAs layer facilitates the amplification of the incident optical radiation at 1550 nm within the communication window.
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