P. Herzog
University of Bonn
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Featured researches published by P. Herzog.
European Physical Journal A | 1983
P. Herzog; H. Walitzki; K. Freitag; H. Hildebrand; K. Schlösser
Abstract205,207Po have keen implanted with an isotope separator on-line into cold host matrices of Fe, Ni, Zn and Be. Nuclear magnetic resonance of oriented207Po has been observed in Fe and Ni, of205Po in Fe. The resonance frequencies for zero external field aren
Nuclear Physics | 1993
B. Ackermann; H. Baltzer; C. Ensel; K. Freitag; V. Grafen; C. Günther; P. Herzog; J. Manns; M. Marten-Tölle; U. Müller; J. Prinz; I. Romanski; R. Tolle; J. deBoer; N. Gollwitzer; H.J. Maier
Hyperfine Interactions | 1990
R. Eder; I. Berkers; D. E. Brown; I. S. Grand; E. Hagn; P. Harding; R. Hassani; P. Herzog; B. Kastelein; A. Knipper; G. Marguier; M. Massao; S. Ohya; H. Postma; J. Prinz; C. Richard-Serre; I. Romanski; K. Schlösser; N. J. Stone; W Vanderpoorten; J Vanhaverbeke; L. Vanneste; T. Wölfle; E. Zech
begin{gathered} v_L (^{207} Pounderline {Fe} ) = 575.08(20)MHz hfill v_L (^{207} Pounderline {Ni} ) = 160.1(8)MHz hfill v_L (^{205} Pounderline {Fe} ) = 551.7(8)MHz. hfill end{gathered}
Hyperfine Interactions | 1985
P. Herzog
European Physical Journal B | 1986
P. Herzog; U. Dämmrich; K. Freitag; C. D. Herrmann; K. Schlösser
n From the dependence of the resonance frequency on external magnetic field theg-factor of207Po was derived asn
Hyperfine Interactions | 1977
P. Herzog; H. R. Folle; E. Bodenstedt
Hyperfine Interactions | 1980
P. Herzog
g(^{207} Po) = + 0.31(22).
Hyperfine Interactions | 1988
K. Schlösser; I. Berkes; E. Hagn; P. Herzog; Tapio Niinikoski; H. Postma; C. Richard-Serre; J. Rikovska; N. J. Stone; L. Vanneste; E. Zech; Nicole
Nuclear Instruments & Methods in Physics Research Section B-beam Interactions With Materials and Atoms | 1987
P. Herzog; U. Dämmrich; K. Freitag; B. Prillwitz; J. Prinz; K. Schlösser
n Using this value the magnetic hyperfine fields of Po in Fe and Ni were obtained asn
Hyperfine Interactions | 1983
P. Herzog; K. Freitag; C. D. Herrmann; K. Schlösser