Abstract
We employ low-energy electron microscopy to study the kinetics of thermal etching, or sublimation, of Cr(001) at 1100K. Atomic layers are removed from the surface by spontaneous nucleation and growth of two-dimensional vacancy islands, by rotation of spiral steps, and by island decay. The growth rates of vacancy islands and the rotation frequencies of double spirals are measured as a function of temperature, and the results are correlated with activation barriers of surface processes. Mass transport between the surface and bulk is shown to be unimportant. © 2006 The American Physical Society.