Abstract
We study the rate of activated motion over multiple barriers, in particular the correlated double jump of an adatom diffusing on a missing-row reconstructed platinum (110) surface. We develop a transition path theory, showing that the activation energy is given by the minimum-energy trajectory which succeeds in the double jump. We explicitly calculate this trajectory within an effective-medium molecular dynamics simulation. A cusp in the acceptance region leads to a √T prefactor for the activated rate of double jumps. Theory and numerical results agree. © 1997 The American Physical Society.
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CITATION STYLE
Jacobsen, J., Jacobsen, K. W., & Sethna, J. P. (1997). Rate theory for correlated processes: Double jumps in adatom diffusion. Physical Review Letters, 79(15), 2843–2846. https://doi.org/10.1103/PhysRevLett.79.2843
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