Electron diffraction data on structural transformations in free clucters of argon
Spartak I. Kovalenko, Oleksandr G. Danylchenko, Vladimir N. Samovarov
Abstract
An electron diffraction technique is used to study the structure of clusters formed in an isentropically expanding supersonic argon jet. The formation of the hcp phase with increasing cluster size is reliably detected for the first time. Observations are made for mean cluster sizes N in the range from 1x103 to 8x104 atoms/cluster. An analysis of the shape of the diffraction peaks is carried out. It is found that in the range N <= 2x103 atoms/cluster, where the clusters are icosahedral, the profiles of the diffraction peaks are well approximated by a Lorentzian. For fcc clusters with N >= 3x103 atoms/cluster a better approximation is the standard Gaussian function. In the case N >= 1x104 atoms/cluster one observes peaks of the hcp phase in addition to the fcc peaks. The intensity of the hcp peaks increases with increasing cluster size, and for N = 8x104 atoms/cluster, the (110), (101), (103), and (202) peaks, characteristic only for the hcp phase, are clearly registered in addition to the fcc peaks. A possible mechanism for the formation of the hcp structure in Ar clusters is proposed.
Create a lesson
Related papers
What is superatom?
Zhigang Wang
Size characterization of neutral rare-gas clusters based on time-resolved polarization anisotropy measurements
Arne Morlok, Grzegorz Kowzan, Yilin Li et al.
Lithium Borohydride (LiBH4): An Innovative Material for Neutron Radiation Shielding
Mohammadreza Lotfalian, Mitra Athari Allaf, Masoud Mansouri
Signatures of a bilayer structure in the photoelectron spectrum of B80-
Yi-Sha Chen, Jing-Jing Guo, Peng-Bo Liu et al.
Nonadiabatic Dynamics and Rotational Coupling in HeH+ Dissociative Recombination and Resonant Ion-Pair Formation
Sifiso Musa Nkambule, Malibongwe Tsabedze, Oscar N. Mabuza et al.
Rainbow RABBITT as a Probe of Coherent Rabi Dynamics
Vladislav V. Serov, Anatoli S. Kheifets