Space Division Multiplexing presents new impairments such as mode-dependent loss and. Differential mode dispersion, challenging to measure conventional processes. We discuss the feasibility of spatially diverse swept wavelength interferometry and digital holography techniques capable of measuring these characteristics, obtaining transfer matrices of devices.</p
We propose to use digital holography to characterize long multi-mode fiber links. A four segment 26....
Space-division multiplexing technology is an attractive candidate for overcoming a potential future ...
Digital holography is a device characterization technique that provides the full optical field, both...
Space Division Multiplexing presents new impairments such as mode-dependent loss and. Differential m...
This project shows the need for accurate characterization of different fibers and optical components...
The growth in data traffic coupled with trends in internet use will result in a requirement for inte...
To satisfy the ever-increasing demands for high speed networks, the spatial dimension is exploited t...
The concepts of spatial-division multiplexing (SDM) technology were first proposed in the telecommun...
Part A: Spatial Mode-Division Multiplexing: As the capacity limits of single-mode optical fibre are ...
Component characterization is fundamental for understanding the limits of optical devices, sub-syste...
Space-division multiplexing (SDM) using multi-core fibers (MCFs) and few-mode fibers (FMFs) was prop...
Space-division multiplexing (SDM) promises orders of magnitude increase in singlefiber transmission ...
We propose to use digital holography to characterize long multi-mode fiber links. A four segment 26....
Improving widely applied techniques will only yield modest transmission capacity gain. Spatial divis...
Off-axis digital holography is used to analyse the impact of fibre tapping infew mode fibres. Mode d...
We propose to use digital holography to characterize long multi-mode fiber links. A four segment 26....
Space-division multiplexing technology is an attractive candidate for overcoming a potential future ...
Digital holography is a device characterization technique that provides the full optical field, both...
Space Division Multiplexing presents new impairments such as mode-dependent loss and. Differential m...
This project shows the need for accurate characterization of different fibers and optical components...
The growth in data traffic coupled with trends in internet use will result in a requirement for inte...
To satisfy the ever-increasing demands for high speed networks, the spatial dimension is exploited t...
The concepts of spatial-division multiplexing (SDM) technology were first proposed in the telecommun...
Part A: Spatial Mode-Division Multiplexing: As the capacity limits of single-mode optical fibre are ...
Component characterization is fundamental for understanding the limits of optical devices, sub-syste...
Space-division multiplexing (SDM) using multi-core fibers (MCFs) and few-mode fibers (FMFs) was prop...
Space-division multiplexing (SDM) promises orders of magnitude increase in singlefiber transmission ...
We propose to use digital holography to characterize long multi-mode fiber links. A four segment 26....
Improving widely applied techniques will only yield modest transmission capacity gain. Spatial divis...
Off-axis digital holography is used to analyse the impact of fibre tapping infew mode fibres. Mode d...
We propose to use digital holography to characterize long multi-mode fiber links. A four segment 26....
Space-division multiplexing technology is an attractive candidate for overcoming a potential future ...
Digital holography is a device characterization technique that provides the full optical field, both...