Bright and dark solitons in a photonic nonlinear quantum walk: lessons from the continuum

Author:

Anglés-Castillo AndreuORCID,Pérez ArmandoORCID,Roldán EugenioORCID

Abstract

Abstract We propose a nonlinear quantum walk model inspired in a photonic implementation in which the polarization state of the light field plays the role of the coin-qubit. In particular, we take profit of the nonlinear polarization rotation occurring in optical media with Kerr nonlinearity, which allows to implement a nonlinear coin operator, one that depends on the state of the coin-qubit. We consider the space-time continuum limit of the evolution equation, which takes the form of a nonlinear Dirac equation. The analysis of this continuum limit allows us to gain some insight into the existence of different solitonic structures, such as bright and dark solitons. We illustrate several properties of these solitons with numerical calculations, including the effect on them of an additional phase simulating an external electric field.

Funder

QUANTUM SPAIN

QUANTUM ENIA

European Union’s Horizon 2020

CSIC Interdisciplinary Thematic Platform

Generalitat Valenciana

Ministerio de Ciencia e Innovación

Publisher

IOP Publishing

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