English

An Improved Descriptor of Cluster Stability. Application to Small Carbon Clusters

Chemical Physics 2019-04-26 v1 Materials Science Atomic and Molecular Clusters

Abstract

The mass spectra of gas-phase clusters in cluster beams have a rich structure where the relative heights of the peaks compared to peaks corresponding to clusters of neighbor sizes reveal the stability of the clusters as a function of the size NN. In an analysis of the published mass spectrum of carbon clusters cations CN+C_N^{+} with NN\leq16 we have employed the most common descriptor of cluster stability, which is based on comparing the total energy of the cluster of size NN with the averaged energies of clusters with sizes NN+1 and NN-1. Those energies have been obtained from density functional calculations. The comparison between the stability function and the mass spectrum leaves some experimental features unexplained; in particular, the correlation with the detailed variation of the height of the mass peaks as a function of size NN is not satisfactory. We then propose a novel stability descriptor which improves matters substantially, in particular the correlation with the detailed variation of the height of the mass peaks. The new stability index is based on comparing the atom-evaporation energy of the cluster of size NN with the averaged atom-evaporation energies of clusters with sizes NN+1 and NN-1. The substantial improvement achieved is attributed to the fact that evaporation energies are quantities directly connected with the processes controllig the cluster abundances in the beam.

Keywords

Cite

@article{arxiv.1904.11317,
  title  = {An Improved Descriptor of Cluster Stability. Application to Small Carbon Clusters},
  author = {Jose I. Martinez and Julio A. Alonso},
  journal= {arXiv preprint arXiv:1904.11317},
  year   = {2019}
}

Comments

Reproduced by permission of the PCCP Owner Societies