On intersections of closed curves on surfaces

On intersections of closed curves on surfaces
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The problem on the minimal number (with respect to deformation) of intersection points of two closed curves on a surface is solved. Following the Nielsen approach, we define classes of intersection points and essential classes of intersection points, which “are preserved under deformation” and whose total number is called the Nielsen number. If each Nielsen class consists of a unique point and has a non-vanishing index after a suitable deformation of the pair of curves, one says that {\it the Wecken property holds}. We compute the minimal number of intersection points in terms of the Nielsen numbers and the Reidemeister numbers. In particular, we prove that the Wecken property does not hold for some pairs of closed curves. Moreover, all the non-vanishing indices of the Nielsen classes equal $\pm1$, while the non-vanishing Jezierski semi-indices equal 1. Similar questions are studied for the self-intersection problem of a curve on a surface.


💡 Research Summary

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The paper addresses the classical problem of determining the minimal number of intersection points of two closed curves on a surface, up to homotopy (deformation). Using Nielsen theory, the authors introduce the notion of Nielsen classes of intersection points and essential Nielsen classes—those whose index does not vanish. The total number of essential classes is the Nielsen number (NI


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