Active torques added to a turning flock model introduce non-reciprocity that enhances information transfer speed, which emerges as a function of angular velocity in the resulting non-reciprocal modified KdV equation with dissipation.
Spin-waves without spin-waves: A case for soliton propagation in starling flocks
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Information transfer enhanced by non-reciprocity in a model of turning flocks
Active torques added to a turning flock model introduce non-reciprocity that enhances information transfer speed, which emerges as a function of angular velocity in the resulting non-reciprocal modified KdV equation with dissipation.