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Massimiliano Salsi

Researcher at Juniper Networks

Publications -  90
Citations -  2044

Massimiliano Salsi is an academic researcher from Juniper Networks. The author has contributed to research in topics: Wavelength-division multiplexing & Transmission (telecommunications). The author has an hindex of 24, co-authored 90 publications receiving 1980 citations. Previous affiliations of Massimiliano Salsi include University of Parma & Bell Labs.

Papers
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Journal ArticleDOI

Two mode transmission at 2x100Gb/s, over 40km-long prototype few-mode fiber, using LCOS-based programmable mode multiplexer and demultiplexer

TL;DR: A novel optical transmission system based on a programmable liquid crystal on silicon panel, a prototype few-mode fiber, and a 4×4 multiple input multiple output algorithm processing the information of two polarization diversity coherent receivers to experimentally demonstrate the possibility of mode division multiplexing.
Journal ArticleDOI

Mode-Division Multiplexing of 2 $\,\times\,$ 100 Gb/s Channels Using an LCOS-Based Spatial Modulator

TL;DR: In this paper, the authors demonstrate one of the first experiments of optical transmission based on mode-division multiplexing over a few-mode optical fiber using a programmable liquid crystal on silicon panel.
Proceedings ArticleDOI

Transmission at 2×100Gb/s, over two modes of 40km-long prototype few-mode fiber, using LCOS-based mode multiplexer and demultiplexer

TL;DR: In this paper, two 100Gb/s PDMQPSK data streams over two different modes of a 40km-long prototype few-mode fiber were transmitted with an LCOS-based mode multiplexer/demultiplexer and 4×4 MIMO algorithm in a coherent receiver.
Proceedings ArticleDOI

40km transmission of five mode division multiplexed data streams at 100Gb/s with low MIMO-DSP complexity

TL;DR: Mode-division multiplexing is demonstrated over five modes for the first time over 40km few-mode fiber, demultiplexed, and successfully recovered.
Journal ArticleDOI

Linear Fiber Impairments Mitigation of 40-Gbit/s Polarization-Multiplexed QPSK by Digital Processing in a Coherent Receiver

TL;DR: In this article, the tolerances to narrow optical filtering, chromatic dispersion, and polarization mode dispersion are investigated with coherent detection of 10-Gbaud quadrature phase shift keying (QPSK) with and without polarization division multiplexing.