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Vladimir N. Samovarov

Publications and source records attributed to Vladimir N. Samovarov.

2 recordsLinked to original sources

Electron diffraction data on structural transformations in free clucters of argon

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 1x10^3 to 8x10^4 atoms/cluster. An analysis of the shape of the diffraction peaks is carried out. It is found that in the range N <= 2x10^3 atoms/cluster, where the clusters are icosahedral, the profiles of the diffraction peaks are well approximated by a Lorentzian. For fcc clusters with N >= 3x10^3 atoms/cluster a better approximation is the standard Gaussian function. In the case N >= 1x10^4 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 = 8x10^4 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.

physics.atm-clus↗

Antiferromagnetic correlations in superconducting YBa2Cu3O6+x samples as seen from optical absorption data; Comparison with the results of neutron and muon experiments

Correlation in temperature behavior of the optical, neutron, and muon experimental data is established for YBa2Cu3O6+x in both the pseudogap state at Tc<T<T* and the superconducting state at T<Tc. We have showed that our absorption spectra measured in the vicinity of the optical gap are very sensitive to the development of antiferromagnetic fluctuations and to the formation of a stripe structure. The inelastic neutron scattering and zero-field muon spin relaxation data analyzed in this paper were taken from the measurements made by Dai et al. and Sonier et al., respectively. Comparative analysis of the independent results could be very helpful in understanding the interrelation of superconductivity and antiferromagnetism in cuprate superconductors.

cond-mat.supr-con↗