Dispersion flattened (DF) fibers are required for wide-band WDM systems. The DF fibers designed in the past have dispersion in the range of 2.0-3.0 ps/km-nm. In this letter, we define a generalized refractive index profile that can be characterized by few controlling parameters. An optimum refractive index profile is obtained by minimizing the maximum dispersion over the wavelength range of 1300-1600 nm with respect to profile parameters. The designed fiber gives dispersion less than 1.0 ps/km-nm over 1350-1590 nm wavelength range. Sensitivity of the dispersion performance to the profile parameters is also discussed.IEE
We present theoretical calculations for chromatic dispersion, splice loss, macrobending loss and mic...
We present theoretical calculations for chromatic dispersion, splice loss, macrobending loss and mic...
We present theoretical calculations for chromatic dispersion, splice loss, macrobending loss and mic...
Pulse spreading in multimode optical fibres is caused primarily by a) transit-time differences which...
Includes bibliographical references (leaves 99-100)The broadening of light pulses, called dispersion...
In this paper, we analyze and propose an optimum index profile which can give a larger core effectiv...
A simple step-index with depressed-cladding single-mode fluoride fibre gives excellent dispersion fl...
A simple step-index with depressed-cladding single-mode fluoride fibre gives excellent dispersion fl...
We report a model of microstructured nonzero dispersion shifted fiber (NZ-DSF) suitable for use in a...
A simple step-index with depressed-cladding single-mode fluoride fibre gives excellent dispersion fl...
An analysis of chromatic dispersion in single-mode fluoride fibers is presented. It is shown that it...
Accommodation of many channels in dense wavelength division multiplexing networks raises the average...
An analysis of chromatic dispersion in single-mode fluoride fibers is presented. It is shown that it...
An analysis of chromatic dispersion in single-mode fluoride fibers is presented. It is shown that it...
An analysis of chromatic dispersion in single-mode fluoride fibers is presented. It is shown that it...
We present theoretical calculations for chromatic dispersion, splice loss, macrobending loss and mic...
We present theoretical calculations for chromatic dispersion, splice loss, macrobending loss and mic...
We present theoretical calculations for chromatic dispersion, splice loss, macrobending loss and mic...
Pulse spreading in multimode optical fibres is caused primarily by a) transit-time differences which...
Includes bibliographical references (leaves 99-100)The broadening of light pulses, called dispersion...
In this paper, we analyze and propose an optimum index profile which can give a larger core effectiv...
A simple step-index with depressed-cladding single-mode fluoride fibre gives excellent dispersion fl...
A simple step-index with depressed-cladding single-mode fluoride fibre gives excellent dispersion fl...
We report a model of microstructured nonzero dispersion shifted fiber (NZ-DSF) suitable for use in a...
A simple step-index with depressed-cladding single-mode fluoride fibre gives excellent dispersion fl...
An analysis of chromatic dispersion in single-mode fluoride fibers is presented. It is shown that it...
Accommodation of many channels in dense wavelength division multiplexing networks raises the average...
An analysis of chromatic dispersion in single-mode fluoride fibers is presented. It is shown that it...
An analysis of chromatic dispersion in single-mode fluoride fibers is presented. It is shown that it...
An analysis of chromatic dispersion in single-mode fluoride fibers is presented. It is shown that it...
We present theoretical calculations for chromatic dispersion, splice loss, macrobending loss and mic...
We present theoretical calculations for chromatic dispersion, splice loss, macrobending loss and mic...
We present theoretical calculations for chromatic dispersion, splice loss, macrobending loss and mic...