English

Theoretical study of structure and energetics of gold clusters with the EAM method

Mesoscale and Nanoscale Physics 2007-05-23 v1

Abstract

Using the Embedded Atom Method as developed by Voter and Chen in combination with the {\it variable metric/quasi-Newton} and our own {\it Aufbau/Abbau} methods, we have identified the three most stable isomers of AuN_N clusters with NN up to 150. For the first time clusters with tetrahedral symmetry are found to form the ground states of Au17_{17} and Au34_{34}. The Au54_{54} {\it icosahedron} without a central atom and the Au146_{146} {\it decahedron} are found to be particularly stable, whereas the highly symmetric second and third Mackay icosahedra that could have been obtained for NN = 55 and 147, respectively, do not correspond to the particularly stable structures. The three lowest-lying isomers of Au55_{55} and Au147_{147} are low-symmetrical structures. Various structural and energetic properties are analysed, such as stability function, occurrence of magic-sized clusters, construction of icosahedral and {\it fcc} shells, and cluster growth.

Keywords

Cite

@article{arxiv.cond-mat/0604044,
  title  = {Theoretical study of structure and energetics of gold clusters with the EAM method},
  author = {Denitsa Alamanova and Valeri G. Grigoryan and Michael Springborg},
  journal= {arXiv preprint arXiv:cond-mat/0604044},
  year   = {2007}
}

Comments

To appear in Z. Phys. Chem