Amar Jacques G, Semaan Mikhael
Department of Physics & Astronomy, University of Toledo, Toledo, Ohio 43606, USA.
Department of Physics & Astronomy, California State University, Long Beach, Long Beach, California 90840, USA.
Phys Rev E. 2016 Jun;93(6):062805. doi: 10.1103/PhysRevE.93.062805. Epub 2016 Jun 29.
While most studies of submonolayer island nucleation and growth have been based on the assumption of ordinary monomer diffusion corresponding to diffusion exponent μ=1, in some cases either subdiffusive (μ<1) or superdiffusive (μ>1) behavior may occur. Here we present general expressions for the exponents describing the flux dependence of the island and monomer densities as a function of the critical island size i, substrate dimension d, island fractal dimension d_{f}, and diffusion exponent μ, where 0≤μ≤2. Our results are compared with kinetic Monte Carlo simulations for the case of irreversible island growth (i=1) with 0≤μ≤2 and d=2 as well as simulation results for d=1, 3, and 4, and excellent agreement is found.