Extending fibre nonlinear interference power modelling to account for general dual-polarisation 4D modulation formats
Gabriele Liga, Astrid Barreiro, Hami Rabbani, and Alex Alvarado

TL;DR
This paper extends existing fibre nonlinear interference power models to general dual-polarisation 4D modulation formats, accounting for complex cross-polarisation correlations, thus enabling better prediction and optimization of optical communication systems.
Contribution
It provides a comprehensive mathematical derivation to adapt NLI models for arbitrary dual-polarisation 4D formats, surpassing the limitations of previous PM-2D based models.
Findings
NLI power depends on high-order moments of each polarisation component.
Cross-polarisation correlations significantly influence NLI in 4D formats.
Extended model captures complex statistical dependencies in dual-polarisation 4D modulation.
Abstract
In optical communications, four-dimensional (4D) modulation formats encode information onto the quadrature components of two arbitrary orthogonal states of polarisation of the optical field. These formats have recently regained attention due their potential power efficiency, nonlinearity tolerance, and ultimately to their still unexplored shaping gains. As in the fibre-optic channel the shaping gain is closely related to the nonlinearity tolerance of a given modulation format, predicting the effect of nonlinearity is key to effectively optimise the transmitted constellation. Many analytical models available in the optical communication literature allow, within a first-order perturbation framework, the computation of the average power of the nonlinear interference (NLI) accumulated in coherent fibre-optic transmission systems. However, all current models only operate under the assumption…
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