Institut für Physik
FB 08 - Physik, Mathematik und Informatik / Johannes Gutenberg-Universität Mainz
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Kretzschmar, Martin
Octupolar excitation of ion motion in a Penning trap: A theoretical studyInternational Journal of Mass Spectrometry. Bd. 357. Elsevier BV 2014 S. 1 - 21
Tullney, K.; Allmendinger, F.; Burghoff, M. et al.
Constraints on Spin-Dependent Short-Range Interaction between NucleonsPhysical review letters. Bd. 111. College Park, Md.: APS 2013 100801
Sturm, Sven; Wagner, Anke; Kretzschmar, Martin et al.
g-factor measurement of hydrogenlike 28Si13+ as a challenge to QED calculationsPhysical Review A. Bd. 87. H. 3. American Physical Society (APS) 2013 S. 1 - 5
Kretzschmar, Martin
The interconversion of the radial motional modes of an ion in a Penning trap mass spectrometer by 4n-polar external radio frequency fields (n= 1,2,3,4)Annalen der Physik. Bd. 525. H. 8-9. Wiley 2013 S. 688 - 706
Kretzschmar, Martin
Theoretical investigations of different excitation modes for Penning trap mass spectrometryInternational Journal of Mass Spectrometry. Bd. 349-350. Elsevier BV 2013 S. 227 - 239
Rosenbusch, Marco; Blaum, Klaus; Borgmann, Christopher et al.
Buffer-gas-free mass-selective ion centering in Penning traps by simultaneous dipolar excitation of magnetron motion and quadrupolar excitation for interconversion between magnetron and cyclotron motionInternational Journal of Mass Spectrometry. Bd. 325-327. Elsevier BV 2012 S. 51 - 57
Kretzschmar, Martin
Model calculation of amplitudes for FT-ICR ion detection in a cylindrical Penning trapApplied Physics B. Bd. 107. H. 4. Springer Nature 2012 S. 1007 - 1017
Heck, Michael; Blaum, Klaus; Cakirli, R. Burcu et al.
One- and two-pulse quadrupolar excitation schemes of the ion motion in a Penning trap investigated with FT-ICR detectionApplied Physics B. Bd. 107. H. 4. Springer Nature 2012 S. 1019 - 1029
Salhi, Z; Grossmann, T; Gueldner, M et al.
Recycling of 3He from lung magnetic resonance imagingMAGNETIC RESONANCE IN MEDICINE. Bd. 67. H. 6. 2012 S. 1758-1763
Kretzschmar, Martin
Theory of simultaneous dipole and quadrupole excitation of the ion motion in a Penning trapInternational Journal of Mass Spectrometry. Bd. 325-327. Elsevier BV 2012 S. 30 - 44