Stability of splay states in globally coupled rotators
arXiv:0903.1867 · doi:10.1103/PhysRevE.80.036209
Abstract
The stability of dynamical states characterized by a uniform firing rate ({\it splay states}) is analyzed in a network of globally pulse-coupled rotators (neurons) subject to a generic velocity field. In particular, we analyse short-wavelength modes that were known to be marginally stable in the infinite limit and show that the corresponding Floquet exponent scale as . Moreover, we find that the sign, and thereby the stability, of this spectral component is determined by the sign of the average derivative of the velocity field. For leaky-integrate-and-fire neurons, an analytic expression for the whole spectrum is obtained. In the intermediate case of continuous velocity fields, the Floquet exponents scale faster than (namely, as ) and we even find strictly neutral directions in a wider class than the sinusoidal velocity fields considered by Watanabe and Strogatz in {\it Physica D 74 (1994) 197-253}.
7.7 pages - 16 Figures - Submitted to Physical Review E