Uni Hamburg Fachbereich Physik
Logo MFM, SPM-Group, Institute of Applied Physics, Hamburg

Publications

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19961997199819992001200220032004200520062009
2010
 
Real space visualization of thermal fluctuations in a triangular flux line lattice
A. Schwarz, M. Liebmann, U. H. Pi, and R. Wiesendanger,
New J. Phys. 12 033022 (2010)
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1996199719981999200120022003200420052006
2009
2010
 
Towards an understanding of the atomic scale magnetic contrast formation in NC-AFM: a tip material dependent MExFM study on Ni
A. Schwarz, U. Kaiser, and R. Wiesendanger,
Nanotechnology 20 264017 (2009)
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199619971998199920012002200320042005
2006
20092010
 
Visualizing the flux distribution of superconductors in external magnetic fields by magnetic force microscopy
U. H. Pi, Z. G. Khim, D. H. Kim, A. Schwarz, M. Liebmann, and R. Wiesendanger,
Phys. Rev. B 73 144505 (2006)
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Observation of the flux-antiflux boundary propagation during magnetization reversal in Bi2Sr2CaCu2O8+δ crystal with single vortex resolution
A. Schwarz, M. Liebmann, R. Wiesendanger, U. H. Pi, Z. G. Khim, and D. H. Kim,
Appl. Phys. Lett. 88 012507 (2006)
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19961997199819992001200220032004
2005
200620092010
 
Magnetization reversal of a structurally disordered manganite thin film with perpendicular anisotropy
M. Liebmann, A. Schwarz, U. Kaiser, R. Wiesendanger, D.-W. Kim, and T. W. Noh,
Phys. Rev. B 71 104431 (2005)
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Growth and Magnetism of Fe on Cr(001): A Spin-Polarized Scanning Tunneling Spectroscopy and Magnetic Force Microscopy Study
M. Bode, R. Ravlic, M. Kleiber, and R. Wiesendanger,
Appl. Phys. A 80 907 (2005)
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Barkhausen noise visualized in real space
A. Schwarz and M. Liebmann,
Proceedings of SPIE 5843 52 (2005)
 (not online available)
1996199719981999200120022003
2004
2005200620092010
 
Dynamic force spectroscopy across an individual strongly pinned Vortex in a Bi2Sr2CaCu2O8+δ single crystal.
U. H. Pi, Z. G. Khim, D. H. Kim, A. Schwarz, M. Liebmann, and R. Wiesendanger,
Appl. Phys. Lett. 85 5307 (2004)
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Direct observation of the vortices trapped in stacking fault dislocations of Bi2Sr2CaCu2O8 by a low-temperature magnetic force microscope.
U. H. Pi, Z. G. Khim, D. H. Kim, A. Schwarz, M. Liebmann, and R. Wiesendanger,
Phys. Rev. B 69 94518 (2004)
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Visualization of the Barkhausen Effect by Magnetic Force Microscopy.
A. Schwarz, M. Liebmann, U. Kaiser, R. Wiesendanger, T. W. Noh, and D. W. Kim,
Phys. Rev. Lett. 92 77206 (2004)
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Tilted magnetization of a La0.7Sr0.3MnO3/LaAlO3 (001) thin film
M. Liebmann, U. Kaiser, A. Schwarz, R. Wiesendanger, U. H. Pi, T. W. Noh, Z. G. Khim, and D. W. Kim,
J. Magn. Magn. Mater. 280 51 (2004)
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199619971998199920012002
2003
20042005200620092010
 
Vortex dynamics in Bi2Sr2CaCu2O8 single crystals with low density columnar defects studied by magnetic force microscopy.
U. H. Pi, D. H. Kim, Z. G. Khim, U. Kaiser, M. Liebmann, A. Schwarz, and R. Wiesendanger,
Proc. Int. Conf. Physics and Chemistry of Molecular and Oxide Superconductors, J. Low Temp. Phys. 131 993 (2003)
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Domain nucleation and growth of La0.7Ca0.3Mn0.3-δ /LaAlO3 films studied by low temperature MFM.
M. Liebmann, U. Kaiser, A. Schwarz, R. Wiesendanger, U. H. Pi, T. W. Noh, Z. G. Khim and D.-W. Kim,
J. Appl. Phys. 93 8319 (2003)
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19961997199819992001
2002
200320042005200620092010
 
A low-temperature ultrahigh vacuum scanning force microscope with a split-coil magnet.
M. Liebmann, A. Schwarz, S. M. Langkat, and R. Wiesendanger,
Rev. Sci. Instr. 73 3508 (2002)
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1996199719981999
2001
2002200320042005200620092010
 
Investigation of the swelling of human skin cells in liquid media by tapping mode scanning force microscopy.
T. Richter, J.Müller, U. D. Schwarz, R.Wepf, and R. Wiesendanger,
Appl. Phys. A 72 125 (2001)
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Simulation of Non-contact atomic force microscopy images of Xenon(111)
H. Hölscher, W. Allers, U. D. Schwarz, A. Schwarz, and R. Wiesendanger,
Appl. Phys. A 72 S35 (2001)
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199619971998
1999
20012002200320042005200620092010
 
Simultaneous observation of atomic step and domain wall structure of ultrathin Co films by magnetic force microscopy
M. Dreyer, M. Kleiber and R. Wiesendanger,
Appl. Phys. A 69 359 (1999)
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Composition driven change of magnetic anisotropy of ultrathin Co/Au (111) films studied by magnetic force microscopy under ultrahigh vacuum
M. Dreyer, M. Kleiber, A. Wadas, and R. Wiesendanger,
Phys. Rev. B 59 4273 (1999)
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19961997
1998
199920012002200320042005200620092010
 
Magnetization switching of submicrometer Co dots induced by a magnetic force microscope tip
M. Kleiber, F. Kümmerlen , M. Löhndorf, A.Wadas, D. Weiss, R.Wiesendanger,
Phys. Rev. B 58 5563 (1998)
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Local magnetization switching of submicrometer Co dots induced by a magnetic force microscope tip
M. Kleiber, F. Kümmerlen, M. Löhndorf, A. Wadas, D. Weiss, and R. Wiesendanger,
Phys. Rev. B 58 5563 (1998)
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Investigation of micromagnetism and magnetizatic reversal of Ni nanoparticles using a magnetic force microscope
A.A. Bukharaev, D.V. Ovchinnikov, N.I. Nurgazizov, E.F. Kukovitskii, M. Kleiber, and R. Wiesendanger,
Physics of the Solid State 40 1163 (1998)
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Vertical polarization of quantum magnets in high density arrays of nickel dots with small height-to-diameter ratio
G. Meier, M. Kleiber, D. Grundler, D. Heitmann and ,R. Wiesendanger,
Appl. Phys. Lett. 72 2168 (1998)
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Ultrahigh vacuum magnetic force microscopy of the domain structure of ultrathin Co films
M. Dreyer, M. Löhndorf, A. Wadas, and R. Wiesendanger,
Appl. Phys. A 66 1209 (1998)
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Thickness-dependent magnetic domain structures of ultrathin Co/Au(111) films studied by means of magnetic force microscopy in ultrahigh vacuum
A. Wadas, M. Dreyer, M. Kleiber, and R. Wiesendanger,
Appl. Phys. A 66 465 (1998)
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Origin of the ferroelectric domain contrast observed in lateral force microscopy
H. Bluhm, U.D. Schwarz, and R. Wiesendanger,
Phys. Rev. B 57 161 (1998)
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Reibung auf der Nanometerskala - Nanotribilogie mit dem Rasterkraftmikroskop
U. D. Schwarz and H. Hölscher,
Phys. Bl. 54 1127 (1998)
 (not online available)
 
Micromagnetic properties and magnetization reversal of Ni nanoparticles studied by magnetic force microscopy
A.A. Bukharaev, D.V. Ovchinnikov, N.I. Nurgazizov, E.F. Kukovitskii, M. Kleiber, and R. Wiesendanger,
Proc. 6th Int. Symp. Nanostructures: Physics and Technology, St. Petersburg, Russia 428 (1998)
 (not online available)
 
Magnetic force microscopy of Ni nanoparticles formed by coalescence method
A.A. Bukharaev, D.V. Ovchinnikov, N.I. Nurgazizov, E.F. Kukovitskii, M. Kleiber, and R. Wiesendanger,
Scanning 20 3 (1998)
 (not online available)
1996
1997
1998199920012002200320042005200620092010
 
Quantitative analysis of the frictional properties of carbon compounds at low loads using friction force spectroscopy
U.D. Schwarz, O. Zwörner, P. Köster, and R. Wiesendanger,
Phys. Rev. B 56 6987 (1997)
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The frictional properties of mica and germanium sulfide investigated by means of friction force spectroscopy
U.D. Schwarz, O. Zwörner, P. Köster, and R. Wiesendanger,
Phys. Rev. B 56 6997 (1997)
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Stick-slip movement of a scanned tip on a graphite surface in scanning force microscopy
H. Hölscher, U.D. Schwarz, O. Zwörner, and R. Wiesendanger,
Z. Phys. B. 104 295 (1997)
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Preparation of probe tips with well-defined spherical apexes for scanning force spectroscopy
U.D. Schwarz, O. Zwörner, P. Köster, and R. Wiesendanger,
J. Vac. Sci. & Tech. B 15 1527 (1997)
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Magnetostatic interaction studied by force microscopy in ultrahigh vacuum
A. Wadas, M. Dreyer, M. Löhndorf, and R. Wiesendanger,
Appl. Phys. A 64 353 (1997)
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Novel writing using magnetic force microscopy in ultrahigh vacuum
A. Wadas, M. Dreyer, M. Löhndorf, and R. Wiesendanger,
IEEE Trans. Magn. 33 4050 (1997)
 (not online available)

1996
19971998199920012002200320042005200620092010
 
Structure of cross-tie wall in thin Co films resolved by magnetic force microscopy
M. Löhndorf, A. Wadas, H.A.M. van den Berg, and R. Wiesendanger,
Appl. Phys. Lett. 68 3635 (1996)
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