activity
20162021
most citedA simple approach to the quantum theory of nonlinear fiber optics

2 citations · 2 across the 3 of their papers we have counts for

collaborators

6 papers

eess.SP2021

Linear Channel Estimation Based on a Low-Bandwidth Observation Channel with Unknown Response

Juan I. Bonetti, James Kunst, Damián A. Morero +1

We propose a novel system identification technique, based on a least-mean square algorithm, allowing for the estimation of a linear channel by using an unknown-response measurement…

eess.SP2019

First Transmission of a 12D Format Across 3 Coupled Spatial Modes of a 3-Core Coupled-Core Fiber at a Spectral Efficiency of 4 bits/s/Hz

René-Jean Essiambre, Roland Ryf, Sjoerd van der Heide +10

We demonstrate the first transmission of a new twelve-dimensional modulation format over a three-core coupled-core multicore fiber. The format occupies a single time slot spread ac…

quant-ph20192 cited

A simple approach to the quantum theory of nonlinear fiber optics

J. Bonetti, A. D. Sánchez, S. M. Hernandez +1

We put forth an approach to obtain a quantum master equation for the propagation of light in nonlinear fiber optics by relying on simple quantum pictures of the processes (linear a…

quant-ph2018

A frequency-coded QKD scheme with an extension to qu-quarts

J. Bonetti, S. M. Hernandez, D. F. Grosz

We propose a novel scheme to implement the BB84 quantum key distribution (QKD) protocol in optical fibers based on a quantum frequency-translation (QFT) process. Unlike conventiona…

physics.optics2016

Low-power Mid-IR Supercontinuum and Rogue Wave Generation in Chalcogenide Waveguides

Santiago M. Hernandez, Pablo I. Fierens, Juan Bonetti +1

We present numerical results of supercontinuum (SC) generation in the mid-IR spectral region, specifically addressing the molecular fingerprint window ranging from 2.5 to 25 um. By…

physics.optics2016

On the effect of self-steepening in modulation instability

Santiago M. Hernandez, Pablo I. Fierens, Juan Bonetti +1

We revisit the problem of modulation instability (MI) in optical fibers, including higher-order dispersion terms, self-steepening, and Raman response. We derive expressions for the…