Growth of the Wang-Casati-Prosen counter in an integrable billiard

Author:

Hwang Zaijong1,Marx Christoph A.2,Seaward Joseph J.3,Jitomirskaya Svetlana4,Olshanii Maxim1

Affiliation:

1. University of Massachusetts Boston

2. Oberlin College

3. Sorbonne Paris North University

4. University of California, Irvine

Abstract

This work is motivated by an article by Wang, Casati, and Prosen [Phys. Rev. E vol. 89, 042918 (2014)] devoted to a study of ergodicity in two-dimensional irrational right-triangular billiards. Numerical results presented there suggest that these billiards are generally not ergodic. However, they become ergodic when the billiard angle is equal to \pi/2π/2 times a Liouvillian irrational, morally a class of irrational numbers which are well approximated by rationals. In particular, Wang et al. study a special integer counter that reflects the irrational contribution to the velocity orientation; they conjecture that this counter is localized in the generic case, but grows in the Liouvillian case. We propose a generalization of the Wang-Casati-Prosen counter: this generalization allows to include rational billiards into consideration. We show that in the case of a 45°\!\!:\!45°\!\!:\!90°45°:45°:90° billiard, the counter grows indefinitely, consistent with the Liouvillian scenario suggested by Wang et al.

Funder

Conseil Régional, Île-de-France

National Science Foundation

Simons Foundation

Publisher

Stichting SciPost

Subject

General Physics and Astronomy

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