Temporal dynamics of light-written waveguides in unbiased liquid crystals

Kuvaus

The control of light by light is one of the main aims in modern photonics. In this context, a fundamental cornerstone is the realization of light-written waveguides in real time, resulting in all-optical reconfigurability of communication networks. Light-written waveguides are often associated with spatial solitons, that is, non-diffracting waves due to a nonlinear self-focusing effect in the harmonic regime. From an applicative point of view, it is important to establish the temporal dynamics for the formation of such light-written guides. Here we investigate theoretically the temporal dynamics in nematic liquid crystals (NLCs), a material where spatial solitons can be induced using CW lasers with few milliWatts power. We fully address the role of the spatial walk-off and the longitudinal nonlocality in the waveguide formation. We show that, for powers large enough to induce light self-steering, the beam undergoes several fluctuations before reaching the stationary regime, in turn leading to a much longer formation time for the light-written waveguide.
Näytä enemmän

Julkaisuvuosi

2018

Aineiston tyyppi

Tekijät

Alessandro Alberucci - Tekijä

Raouf Barboza - Tekijä

Tuntematon organisaatio

Stefan Nolte - Tekijä

figshare - Julkaisija

Projekti

Muut tiedot

Tieteenalat

Fysiikka

Kieli

englanti

Saatavuus

Avoin

Lisenssi

Creative Commons Nimeä 4.0 Kansainvälinen (CC BY 4.0)

Avainsanat

Physical sciences

Asiasanat

Ajallinen kattavuus

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