We present a simple few-mode fiber design as a promising platform to implement tunable sampled true-time delay lines for radiofrequency signal processing. To the best of our knowledge, this is the first few-mode fiber ever reported featuring evenly spaced incremental dispersion values, which is an essential characteristic required for tunable operation of microwave photonics applications. The performance of the designed five-sample true-time delay line is theoretically validated in the context of microwave signal filtering, demonstrating free spectral range continuous tunability from 12.4 up to 57 GHz
The fibre-optic microwave photonic link has become one of the basic building blocks for microwave ph...
One of the key functionalities in microwave photonics is to be able to define controllable time dela...
Most existing microwave photonic transversal filters are implemented in the incoherent regime using ...
We present a novel double-clad step-index few-mode fiber that operates as a five-sampled tunable tru...
[EN] We present a simple few-mode fiber design as a promising platform to implement tunable sampled ...
We propose, for the first time to our knowledge, tunable true time delay line operation for radiofre...
We propose and experimentally demonstrate distributed microwave photonics signal processing over a f...
Space-division multiplexing optical fibers can provide not only parallel channel transmission but al...
We report, for the first time to our knowledge, distributed radiofrequency signal processing built u...
A novel design of a tunable True-Time delay line (TTDL) based on a multicore Photonic Crystal Fiber ...
[EN] We experimentally demonstrate a novel technique to process broadband microwave signals, using a...
We report the implementation of tunable microwave signal processing based on sampled true time delay...
[EN] We propose and experimentally demonstrate distributed radiofrequency signal on a few-mode-fibre...
We review the introduction of the space dimension into fiber-based technologies to implement compact...
Copyright © Cambridge University Press and the European Microwave Association 2015. We present a tap...
The fibre-optic microwave photonic link has become one of the basic building blocks for microwave ph...
One of the key functionalities in microwave photonics is to be able to define controllable time dela...
Most existing microwave photonic transversal filters are implemented in the incoherent regime using ...
We present a novel double-clad step-index few-mode fiber that operates as a five-sampled tunable tru...
[EN] We present a simple few-mode fiber design as a promising platform to implement tunable sampled ...
We propose, for the first time to our knowledge, tunable true time delay line operation for radiofre...
We propose and experimentally demonstrate distributed microwave photonics signal processing over a f...
Space-division multiplexing optical fibers can provide not only parallel channel transmission but al...
We report, for the first time to our knowledge, distributed radiofrequency signal processing built u...
A novel design of a tunable True-Time delay line (TTDL) based on a multicore Photonic Crystal Fiber ...
[EN] We experimentally demonstrate a novel technique to process broadband microwave signals, using a...
We report the implementation of tunable microwave signal processing based on sampled true time delay...
[EN] We propose and experimentally demonstrate distributed radiofrequency signal on a few-mode-fibre...
We review the introduction of the space dimension into fiber-based technologies to implement compact...
Copyright © Cambridge University Press and the European Microwave Association 2015. We present a tap...
The fibre-optic microwave photonic link has become one of the basic building blocks for microwave ph...
One of the key functionalities in microwave photonics is to be able to define controllable time dela...
Most existing microwave photonic transversal filters are implemented in the incoherent regime using ...