Modeling Island-Growth Capture Zone Distributions (CZD) with the Generalized Wigner Distribution (GWD): New Developments in Theory and Experiment
ORAL
Abstract
Earlier we showed [PRL 99, 226102 (2007)] that the CZD in growth could be well described by $P(s)=a s^\beta \exp(-bs^2)$, where $s$ is the CZ area divided by its average value. Painstaking simulations by Amar's [PRE 79, 011602 (2009)] and Evans's [PRL 104, 149601 (2010)] groups showed inadequacies in our mean field Fokker-Planck argument relating $\beta$ to the critical nucleus size. We refine our derivation to retrieve their $\beta \approx i + 2$ [PRL 104, 149602 (2010)]. We discuss applications of this formula and methodology to experiments on Ge/Si(001) and on various organics on SiO$_2$, as well as to kinetic Monte Carlo studies homoepitaxial growth on Cu(100) with codeposited impurities of different sorts. In contrast to theory, there can be significant changes to $\beta$ with coverage. Some experiments also show temperature dependence.
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Authors
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Alberto Pimpinelli
U. Maryland
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T.L. Einstein
U. of Maryland, U. Maryland, University of Maryland, College Park, Materials Research Science and Engineering Center and Center for Nanophysics and Advanced Materials, Department of Physics, University of Maryland, University of Maryland, U. of Maryland, College Park
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Diego Gonzalez
U. Maryland, University of Maryland
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Rajesh Sathiyanarayanan
U. Maryland
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Ajmi BH. Hamouda
U. Maryland