中文

Self Consistent Expansion for the Molecular Beam Epitaxy Equation

材料科学 2008-04-21 v2 统计力学

摘要

Motivated by a controversy over the correct results derived from the dynamic renormalization group (DRG) analysis of the non linear molecular beam epitaxy (MBE) equation, a self-consistent expansion (SCE) for the non linear MBE theory is considered. The scaling exponents are obtained for spatially correlated noise of the general form D(rr,tt)=2D0rr2ρdδ(tt)D({\vec r - \vec r',t - t'}) = 2D_0 | {\vec r - \vec r'} |^{2\rho - d} \delta ({t - t'}). I find a lower critical dimension dc(ρ)=4+2ρd_c (\rho) = 4 + 2\rho , above, which the linear MBE solution appears. Below the lower critical dimension a r-dependent strong-coupling solution is found. These results help to resolve the controversy over the correct exponents that describe non linear MBE, using a reliable method that proved itself in the past by predicting reasonable results for the Kardar-Parisi-Zhang (KPZ) system, where DRG failed to do so.

引用

@article{arxiv.cond-mat/0107153,
  title  = {Self Consistent Expansion for the Molecular Beam Epitaxy Equation},
  author = {Eytan Katzav},
  journal= {arXiv preprint arXiv:cond-mat/0107153},
  year   = {2008}
}

备注

16 pages