Molecular beam deflection experiments on mixed clusters

2001 ◽  
Vol 16 (1) ◽  
pp. 365-368 ◽  
Author(s):  
I. Compagnon ◽  
R. Antoine ◽  
D. Rayane ◽  
Ph. Dugourd ◽  
M. Broyer
1996 ◽  
Vol 03 (01) ◽  
pp. 429-434 ◽  
Author(s):  
I.M.L. BILLAS ◽  
A. CHÂTELAIN ◽  
W.A. de HEER

Molecular beam deflection measurements of small iron, cobalt, and nickel clusters show how magnetism develops as the cluster size is increased from several tens to several hundreds of atoms for temperatures from 80 and 1000 K. Cluster magnetization is found to be superparamagnetic for rotationally warm clusters, where it follows the Langevin function. The magnetization of rotationally cold clusters is anomalous: it is strongly reduced and nonlinear with the applied field. For superparamagnetic clusters, the magnetic moments can be determined from the magnetization. We find that ferromagnetism occurs even for the smallest sizes: for clusters with less than about 30 atoms the magnetic moments are atom-like and as the size is increased up to 700 atoms they approach the bulk limit, with oscillations probably caused by surface-induced spin-density waves. The trends are explained in a magnetic shell model. The magnetic properties of iron cluster show anomalies, suggesting that a high moment to low moment crystallographic phase transition in Fe clusters occurs at relatively low temperatures.


2003 ◽  
Vol 75 (20) ◽  
pp. 5512-5516 ◽  
Author(s):  
Rodolphe Antoine ◽  
Isabelle Compagnon ◽  
Driss Rayane ◽  
Michel Broyer ◽  
Philippe Dugourd ◽  
...  

2006 ◽  
Vol 423 (1-3) ◽  
pp. 13-16 ◽  
Author(s):  
Ph. Dugourd ◽  
R. Antoine ◽  
M. Abd El Rahim ◽  
D. Rayane ◽  
M. Broyer ◽  
...  

2006 ◽  
Vol 110 (33) ◽  
pp. 10006-10011 ◽  
Author(s):  
R. Antoine ◽  
M. Abd El Rahim ◽  
M. Broyer ◽  
D. Rayane ◽  
Ph. Dugourd

2009 ◽  
Author(s):  
Rodolphe Antoine ◽  
Driss Rayane ◽  
Michel Broyer ◽  
Philippe Dugourd ◽  
George Maroulis ◽  
...  

Author(s):  
Thomas M. Fuchs ◽  
Rolf Schäfer

Electron spin coherence is probed for the superatomic cluster AlSn12 in a molecular beam deflection experiment. Nuclear spins diminish electron spin coherence which is discussed within spin dynamics on avoided level crossings.


1995 ◽  
Vol 50 (4-5) ◽  
pp. 445-452 ◽  
Author(s):  
R. Schäfer ◽  
J. Woenckhaus ◽  
J. A. Becker ◽  
F. Hensel

The static electric polarizabilities a of silicon clusters with up to 60 atoms have been measured employing a mass selective molecular beam deflection method. The polarizability per atom αN = α/N of the SiN-clusters has been investigated for Si11 and the size ranges N = 14-28, 22-34, 28-44, 34-50, 41 -58, and 42-68. The results show that the polarizability per atom decreases from N = 11 until a minimum at N≥28 is reached. The polarizability per atom increases for N > 28, passes through a maximum at N≈36 and finally converges between N≈50-70 against the value αN =1.9Å3. If the model of a homogeneous dielectric sphere is applied to the larger clusters one calculates that the value αN =1.9Å3 corresponds to a dielectric constant of ε = 3.2. This value is significantly smaller than the dielectric constant of bulk silicon εb = 11.8. The present paper focuses on the maximum in the polarizability at N≈36. This effect is discussed with special emphasis to recent Car-Parinello calculations which have predicted cage-like silicon structures that enclose a core of several highly coordinated atoms. This structure suggests an improved dielectric sphere model where the core is represented by a smaller sphere with its own dielectric constant εc. It is shown within this model that the observed maximum in polarizability is due to a significant enhancement of the core dielectric constant to a value of εc ≈50. This enhancement is related by means of a simple model to the effect that silicon becomes metallic under high pressure


1996 ◽  
Vol 03 (01) ◽  
pp. 371-375 ◽  
Author(s):  
J. WOENCKHAUS ◽  
R. SCHÄFER ◽  
J.A. BECKER

Average static electric polarizabilities of small and middle silicon-cluster size ranges have been measured employing a mass-selective molecular beam deflection method. The largest studied clusters contained N=60 atoms of silicon. The polarizabilities of the semiconductor clusters are compared to the results obtained for metal clusters. Especially, the measurements of the midsized semiconductor clusters Si30–Si45 are discussed with regard to the predicted spherical cage-like structures which have been recently by Röthlisberger et al.1 The results for the larger clusters are analyzed in terms of recent experiments of photoluminescence of small silicon nanocrystallites.2


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