关注
Nicolás Linale
Nicolás Linale
ICFO – The Institute of Photonic Sciences
在 icfo.eu 的电子邮件经过验证
标题
引用次数
引用次数
年份
Modified nonlinear Schrödinger equation for frequency-dependent nonlinear profiles of arbitrary sign
J Bonetti, N Linale, AD Sánchez, SM Hernandez, PI Fierens, DF Grosz
JOSA B 36 (11), 3139-3144, 2019
312019
Photon-conserving generalized nonlinear Schrödinger equation for frequency-dependent nonlinearities
J Bonetti, N Linale, AD Sánchez, SM Hernandez, PI Fierens, DF Grosz
JOSA B 37 (2), 445-450, 2020
272020
Modulation instability in waveguides with an arbitrary frequency-dependent nonlinear coefficient
N Linale, J Bonetti, AD Sánchez, S Hernandez, PI Fierens, DF Grosz
Optics letters 45 (9), 2498-2501, 2020
192020
Measuring self-steepening with the photon-conserving nonlinear Schrödinger equation
N Linale, PI Fierens, J Bonetti, AD Sánchez, SM Hernandez, DF Grosz
Optics letters 45 (16), 4535-4538, 2020
172020
Soliton solutions and self-steepening in the photon-conserving nonlinear Schrödinger equation
SM Hernández, J Bonetti, N Linale, DF Grosz, PI Fierens
Waves in Random and Complex Media 32 (5), 2533-2549, 2022
152022
Model for frequency-dependent nonlinear propagation in 2D-decorated nanowires
N Linale, J Bonetti, AD Sánchez, PI Fierens, DF Grosz
IEEE Journal of Quantum Electronics 57 (4), 1-8, 2021
142021
Modulation instability in waveguides doped with anisotropic nanoparticles
AD Sánchez, N Linale, J Bonetti, DF Grosz
Optics Letters 45 (11), 3119-3122, 2020
142020
Equation for modeling two-photon absorption in nonlinear waveguides
N Linale, J Bonetti, A Sparapani, AD Sánchez, DF Grosz
JOSA B 37 (6), 1906-1910, 2020
112020
A generic model for the study of supercontinuum generation in graphene-covered nanowires
N Linale, PI Fierens, N Vermeulen, DF Grosz
Journal of Physics: Photonics 4 (1), 015001, 2021
92021
Simple method for estimating the fractional Raman contribution
AD Sánchez, N Linale, J Bonetti, SM Hernández, PI Fierens, G Brambilla, ...
Optics Letters 44 (3), 538-541, 2019
72019
Temporal reflection and refraction in the presence of a zero-nonlinearity wavelength
AC Sparapani, J Bonetti, N Linale, SM Hernandez, PI Fierens, DF Grosz
Optics Letters 48 (2), 339-342, 2023
62023
Dispersive waves and radiation trapping in optical fibers with a zero-nonlinearity wavelength
SM Hernandez, A Sparapani, N Linale, J Bonetti, DF Grosz, PI Fierens
Waves in Random and Complex Media, 1-15, 2022
62022
All-optical pulse-train generation through the temporal analogue of a laser
A Sparapani, G Fernández, AD Sánchez, J Bonetti, N Linale, DF Grosz
Optical Fiber Technology 68, 102785, 2022
62022
A direct method for the simultaneous estimation of self-steepening and the fractional Raman contribution in fiber optics
N Linale, J Bonetti, PI Fierens, SM Hernandez, DF Grosz
IEEE Journal of Quantum Electronics 57 (3), 1-7, 2021
62021
Revisiting soliton dynamics in fiber optics under strict photon-number conservation
N Linale, PI Fierens, DF Grosz
IEEE Journal of Quantum Electronics 57 (2), 1-8, 2020
62020
Simple model for the nonlinear optical response of dimer-doped waveguides
AD Sánchez, N Linale, DF Grosz
Journal of the Optical Society of America B 38 (1), 17-23, 2020
62020
Narrowband and ultra-wideband modulation instability in nonlinear metamaterial waveguides
N Linale, PI Fierens, SM Hernandez, J Bonetti, DF Grosz
JOSA B 37 (11), 3194-3199, 2020
42020
Probing higher-order nonlinearities with ultrashort solitons
N Linale, D Grosz, PI Fierens
32020
A proposal for linear and nonlinear discrete and distributed sensing of mechanical strain with graphene-decorated optical fibers
G Fernández, AC Sparapani, N Linale, JC Benitez, DF Grosz
Optical Fiber Technology 73, 103046, 2022
22022
Heralded single-photon sources based on 2D-decorated nanowires
J Bonetti, N Linale, DF Grosz
Physics Letters A 432, 128018, 2022
22022
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