Searcharxiv⌕ Search

arXiv subjects

Masanori Amano

Publications and source records attributed to Masanori Amano.

3 recordsLinked to original sources

The surface of circumferences for Jenkins-Strebel differentials

There are some existence problems of Jenkins-Strebel differentials on a Riemann surface. The one of them is to find a Jenkins-Strebel differential whose characteristic ring domains have given positive numbers as their circumferences, for any fixed underlying Riemann surface and core curves of the ring domains. However, the solution may not exist for some given underlying surface, core curves, and positive numbers. In this paper, we investigate the existence of such the solutions. Our method is to use the surface of circumferences, which is determined by the extremal problem for Jenkins-Strebel differentials. We can see degenerations of the characteristic ring domains of Jenkins-Strebel differentials by the surface. Moreover, we also consider the behavior of the surface when the underlying Riemann surface varies.

math.CV↗

The asymptotic behavior of Teichmüller rays

In this paper, we consider the asymptotic behavior of two Teichmüller geodesic rays determined by Jenkins-Strebel differentials, and we obtain a generalization of a theorem in \cite{Amano14}. We also consider the infimum of the asymptotic distance in shifting base points of the rays along the geodesics. We show that the infimum is represented by two quantities. One is the detour metric between the end points of the rays on the Gardiner-Masur boundary of the Teichmüller space, and the other is the Teichmüller distance between the end points of the rays on the augmented Teichmüller space.

math.GT↗

On behavior of pairs of Teichmüller geodesic rays

In this paper, we obtain the explicit limit value of the Teichmüller distance between two Teichmüller geodesic rays which are determined by Jenkins-Strebel differentials having a common end point on the augmented Teichmüller space. Furthermore, we also obtain a condition under which these two rays are asymptotic. This is similar to a result of Farb and Masur.

math.GT↗