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Contents
- 1
-
K. J. Strnat, G. Hoffer, J. Oson, and W. Ostertag, ``A family of cobalt-based
permanent magnet materials,'' J. Appl. Phys., vol. 38, pp. 1001-1002,
1967.
- 2
-
D. Niarchos, R. Harris, D. Givord, C. Christodoulou, O. Gutfleisch, S. Kobe,
M. Coey, J. Fidler, C. Tattam, M. Grönefeld, and G. Martinek, ``HITEMAG -
novel permanent magnets for high temperature applications.'' Project no.
GRD1-1999-11125,
URL: http://www.tcd.ie/Physics/Magnetism/Hitemag/ , 2000.
- 3
-
M. Sagawa, S. Fujimura, N. Togawa, H. Yamamoto, and Y. Matsuura, ``New material
for permanent magnets on a base of nd and fe,'' J. Appl. Phys.,
vol. 55, pp. 2083-2087, 1984.
- 4
-
J. J. Croat, J. F. Herbst, R. W. Lee, and F. E. Pinkerton, ``Pr-Fe and
Nd-Fe-based materials: A new class of high-performance permanent
magnets,'' J. Appl. Phys., vol. 55, no. 6, pp. 2078-2082, 1984.
- 5
-
G. C. Hadjipanayis, R. C. Hazelton, and K. R. Lawless, ``Cobalt-free permanent
magnet materials based on iron-rare-earth alloys,'' J. Appl. Phys.,
vol. 55, no. 6, pp. 2073-2077, 1984.
- 6
-
S. Sasaki, J. Fidler, and M. Sagawa, ``High performance sintered magnets made
by new RIP from SC alloys,'' in Proc. XI. Int. Symp. on Magnetic
Anisotropy and Coercivity in Rare Earth Transition Metal Alloys (H. Kaneko,
M. Homma, and M. Okada, eds.), pp. 109-118, The Japan Institute of Metals,
2000.
- 7
-
R. Comerford, ``Magnetic storage: The medium that wouldn't die,'' IEEE
Spectrum, vol. 37, pp. 36-39, Dec. 2000.
- 8
-
S. R. Das, ``Coming soon: Terabit hard disk drives,'' IEEE Spectrum,
vol. 40, pp. 19-21, Feb. 2003.
- 9
-
C. H. Möller, O. Kronenwerth, D. Grundler, W. Hansen, C. Heyn, and
D. Heitmann, ``Extraordinary magnetoresistance effect in a microstructured
metal-semiconductor hybrid structure,'' Appl. Phys. Lett., vol. 80,
no. 21, pp. 3988-3990, 2002.
- 10
-
S. Tehrani, B. Engel, J. M. Slaughter, E. Chen, M. DeHerrera, M. Durlam,
P. Naji, R. Whig, J. Janesky, and J. Calder, ``Recent developments in
magnetic tunnel junction mram,'' IEEE Trans. Magn., vol. 36, no. 5,
pp. 2752-2757, 2000.
- 11
-
J. Zhu, Y. Zheng, and G. A. Prinz, ``Ultrahigh density vertical
magnetoresistive random access memory,'' J. Appl. Phys., vol. 87,
pp. 6668-6673, May 2000.
- 12
-
G. C. Hadjipanayis, W. Tang, Y. Zhang, S. T. Chui, J. F. Liu, C. Chen, and
H. Kronmüller, ``High temperature 2:17 magnets: Relationship of magnetic
properties to microstructure and processing,'' IEEE Trans. Magn.,
vol. 36, no. 5, pp. 3382-3387, 2000.
- 13
-
J. Fidler and T. Schrefl, ``Micromagnetic modelling - the current state of the
art,'' J. Phys. D: Appl. Phys., vol. 33, pp. R135-R156, 2000.
- 14
-
T. R. Koehler and D. R. Fredkin, ``Finite element methods for micromagnetics,''
IEEE Trans. Magn., vol. 28, pp. 1239-1244, March 1992.
- 15
-
J. Alberty, C. Carstensen, and S. A. Funken, ``Remarks around 50 lines of
MATLAB: Short finite element implementation,'' Numerical
Algorithms, vol. 20, pp. 117-137, 1999.
- 16
-
J. Bey, ``Tetrahedral grid refinement,'' Computing, vol. 55,
pp. 355-378, 1995.
- 17
-
J. G. Zhu, ``Micromagnetic modelling: theory and application in magnetic thin
films,'' MRS Bulletin, vol. 20, pp. 49-54, 1995.
- 18
-
P. G. Ciarlet, The Finite Element Method for Elliptic Problems.
Amsterdam, New York, Oxford: North-Holland, 1978.
- 19
-
M. Corporation, ``MSC.Patran home page,'' 2002.
URL: http://www.mscsoftware.com/products/ .
- 20
-
R. Ribó, M. A. de Riera Pasenau, and E. Escolano, ``GiD home page,'' 2002.
International Center For Numerical Methods in Engineering (CIMNE),
URL: http://gid.cimne.upc.es.
- 21
-
A. Hubert and R. Schäfer, Magnetic Domains.
Berlin: Springer, 1998.
- 22
-
V. D. Tsiantos, D. Suess, W. Scholz, T. Schrefl, and J. Fidler, ``The effect of
the cell size in langevin micromagnetic simulations,'' J. Magn. Magn.
Mater., vol. 242-245, pp. 999-1001, 2002.
- 23
-
W. Rave, K. Ramstöck, and A. Hubert, ``Corners and nucleation in
micromagnetics,'' J. Magn. Magn. Mater., vol. 183, pp. 329-333, 1998.
- 24
-
C. Carstensen and F. Funken, ``Coupling of nonconforming finite elements and
boundary elements II: A posteriori estimates and adaptive
mesh-refinement,'' Computing, vol. 62, no. 3, pp. 243-259, 1999.
- 25
-
K. M. Tako, T. Schrefl, M. A. Wongsam, and R. W. Chantrell, ``Finite element
micromagnetic simulations with adaptive mesh refinement,'' J. Appl.
Phys., vol. 81, no. 8, pp. 4082-4084, 1997.
- 26
-
R. Hertel and H. Kronmüller, ``Adaptive finite element mesh refinement
techniques in 3D micromagnetic modeling,'' IEEE Trans. Magn.,
vol. 34, pp. 3922-3930, November 1998.
- 27
-
W. Scholz, T. Schrefl, and J. Fidler, ``Mesh refinement in FE-micromagnetics
for multi-domain NdFeB particles,'' J. Magn. Magn. Mater.,
vol. 196-197, pp. 933-934, 1999.
- 28
-
H. Forster, T. Schrefl, D. Suess, W. Scholz, V. Tsiantos, R. Dittrich, and
J. Fidler, ``Domain wall motion in nano-wires using moving grids,'' J.
Appl. Phys., vol. 91, pp. 6914-6919, 2002.
- 29
-
H. Forster, Reversal modes in mesoscopic structures.
Dissertation, TU Wien, 2003.
- 30
-
A. Aharoni, ``Magnetostatic energy calculation,'' IEEE Trans. Magn.,
vol. 27, no. 4, pp. 3539-3547, 1991.
- 31
-
Q. Chen and A. Konrad, ``A review of finite element boundary techniqes for
static and quasi-static electromagnetic field problems,'' IEEE Trans.
Magn., vol. 33, pp. 663-676, 1996.
- 32
-
B. Streibl, ``Dynamische mikromagnetische Simulation von MAG
Standardproblemen,'' Diplomarbeit, TU Wien, 1998.
- 33
-
W. F. Brown, Micromagnetics.
New York: Interscience, 1963.
- 34
-
A. Aharoni, Introduction to the Theory of Ferromagnetism.
Monographs on Physics, Oxford University Press, 1996.
- 35
-
L. Berger, ``Emission of spin waves by a magnetic multilayer traversed by a
current,'' Phys. Rev. B, vol. 54, no. 13, pp. 9353-9358, 1996.
- 36
-
S. Ingvarsson, L. Ritchie, X. Y. Liu, G. Xiao, J. C. Slonczewski, P. L.
Trouilloud, and R. H. Koch, ``Role of electron scattering in the
magnetization relaxation of thin NiFe films,'' Phys.
Rev. B, vol. 66, p. 214416, 2002.
- 37
-
K. Capelle and B. L. Gyorffy, ``Exploring dynamical magnetism with
time-dependent density-functional theory: From spin fluctuations to gilbert
damping,'' Europhys. Lett., vol. 61, no. 3, pp. 354-360, 2003.
- 38
-
T. Gilbert Armour Research Foundation, Report No. 11, 1955.
- 39
-
T. L. Gilbert, ``A Lagrangian formulation of gyromagnetic equation of the
magnetization field,'' Phys. Rev., vol. 100, p. 1243, 1955.
- 40
-
C. W. Gardiner, Handbook of stochastic methods: for physics, chemistry and
the natural sciences.
Springer, 2nd ed., 1996.
- 41
-
D. R. Fredkin and T. R. Koehler, ``Hybrid method for computing demagnetizing
fields,'' IEEE Trans. Magn., vol. 26, no. 2, pp. 415-417, 1990.
- 42
-
T. R. Koehler, ``Hybrid FEM-BEM method for fast micromagnetic calculations,''
Physica B: Condensed Matter, vol. 233, no. 4, pp. 302-307, 1997.
- 43
-
D. A. Lindholm, ``Three-dimensional magnetostatic fields from point-matched
integral equations with linearly varying scalar sources,'' IEEE Trans.
Magn., vol. MAG-20, pp. 2025-2032, September 1984.
- 44
-
D. Süss, ``Mikromagnetische Simulation der Keimbildung in SE Magneten,''
Diplomarbeit, TU Wien, 1999.
- 45
-
D. Süss, T. Schrefl, and J. Fidler, ``Micromagnetic simulation of high energy
density permanent magnets,'' IEEE Trans. Magn., vol. 36, no. 5,
pp. 3282-3284, 2000.
- 46
-
S. Benson, L. C. McInnes, J. J. Moré, and J. Sarich, ``TAO home page,''
2001.
URL: http://www-unix.mcs.anl.gov/tao/.
- 47
-
S. Benson and J. J. Moré, ``A limited memory variable metric method for bound
constrained minimization,'' Tech. Rep. ANL-95/11 - Revision 2.1.3, Argonne
National Laboratory, 2002.
- 48
-
G. D. Byrne and A. C. Hindmarsh, ``PVODE home page,'' 2002.
URL: http://www.llnl.gov/CASC/PVODE/.
- 49
-
G. D. Byrne and A. C. Hindmarsh, ``PVODE, an ODE solver for parallel
computers,'' Int. J. High Perf. Comput. Appl., vol. 13, no. 4,
pp. 354-365, 1999.
- 50
-
S. D. Cohen and A. C. Hindmarsh, ``CVODE user guide.'' Lawrence Livermore
National Laboratory report UCRL-MA-118618, 1994.
- 51
-
S. D. Cohen and A. C. Hindmarsh, ``CVODE, a Stiff/Nonstiff ODE Solver in C,''
Computers in Physics, vol. 10, no. 2, pp. 138-143, 1996.
- 52
-
P. N. Brown and A. C. Hindmarsh, ``Reduced storage matrix methods in stiff
ODE systems,'' J. Appl. Math. and Comp., vol. 31, pp. 40-91, 1989.
- 53
-
D. Suess, V. Tsiantos, T. Schrefl, J. Fidler, W. Scholz, H. Forster,
R. Dittrich, and J. J. Miles, ``Time resolved micromagnetics using a
preconditioned finite element method,'' J. Magn. Magn. Mater.,
vol. 248, pp. 298-311, 2002.
- 54
-
A. C. Hindmarsh and L. R. Petzold, ``Algorithms and software for ordinary
differential equations and differential-algebraic equations,'' Computers
in Physics, vol. 9, pp. 34-41, 148-155, 1995.
- 55
-
G. Henkelman and H. Jónsson, ``Improved tangent estimate in the nudged
elastic band method for finding minimum energy paths and saddle points,''
J. Chem. Phys., vol. 113, pp. 9978-9985, 2000.
- 56
-
R. Dittrich, T. Schrefl, D. Suess, W. Scholz, H. Forster, and J. Fidler, ``A
path method for finding energy barriers and minimum energy paths in complex
micromagnetic systems,'' J. Magn. Magn. Mater., vol. 250, pp. 12-19,
2002.
- 57
-
R. Dittrich.
Dissertation, TU Wien, 2003.
- 58
-
S. Balay, K. Buschelman, W. D. Gropp, D. Kaushik, M. Knepley, L. C. McInnes,
B. F. Smith, and H. Zhang, ``PETSc home page,'' 2001.
URL: http://www.mcs.anl.gov/petsc/.
- 59
-
J. Dongarra, ``BLAS,'' 2002.
URL: http://www.netlib.org/blas/.
- 60
-
E. Anderson, Z. Bai, C. Bischof, S. Blackford, J. Demmel, J. Dongarra,
J. Du Croz, A. Greenbaum, S. Hammarling, A. McKenney, and D. Sorensen,
``LAPACK,'' 2002.
URL: http://www.netlib.org/lapack/.
- 61
-
J. Dongarra, J. Bunch, C. Moler, and P. Stewart, ``LINPACK,'' 2002.
URL: http://www.netlib.org/linpack/.
- 62
-
M. committee, ``MPI home page,'' 2002.
URL: http://www-unix.mcs.anl.gov/mpi/.
- 63
-
W. Gropp and E. Lusk, ``MPICH home page,'' 2002.
URL: http://www-unix.mcs.anl.gov/mpi/mpich/.
- 64
-
G. Karypis, ``METIS home page,'' 2002.
URL: http://www-users.cs.umn.edu/tex2html_wrap_inline$$karypis/metis/.
- 65
-
J. Gailly and M. Adler, ``zlib home page,'' 2002.
URL: http://www.gzip.org/zlib/.
- 66
-
G. Randers-Pehrson, ``libpng home page,'' 2002.
URL: http://www.libpng.org/pub/png/libpng.html.
- 67
-
G. Karypis and V. Kumar, ``Multilevel k-way partitioning scheme for irregular
graphs,'' Journal of Parallel and Distributed Computing, vol. 48,
no. 1, pp. 96-129, 1998.
- 68
-
Multilevel algorithms for multi-constraint graph partitioning, IEEE
Computer Society Press, 1998.
- 69
-
J. G. Lewis, ``Implementation of the gibbs-poole-stockmeyer and gibbs-king
algorithms,'' ACM Transactions on Mathematical Software, vol. 8, no. 2,
pp. 180-189, 1982.
- 70
-
P. Bastian, ``Load balancing for adaptive multigrid methods,'' SIAM
Journal on Scientific Computing, vol. 19, no. 4, pp. 1303-1321, 1998.
- 71
-
P. Bastian, K. Birken, K. Johannsen, S. Lang, N. Neuss, H. Rentz-Reichert, and
C. Wieners, ``UG home page,'' 2003.
URL: http://cox.iwr.uni-heidelberg.de/~ug/.
- 72
-
P. Bastian, K. Birken, K. Johannsen, S. Lang, N. Neuss, H. Rentz-Reichert, and
C. Wieners, ``UG - A flexible software toolbox for solving partial
differential equations,'' Computing and Visualization in Science,
vol. 1, pp. 27-40, 1997.
- 73
-
K. Birken, ``DDD home page,'' 1997.
URL: http://cox.iwr.uni-heidelberg.de/~ddd/.
- 74
-
E. P. Mücke, I. A. Saias, and B. Zhu, ``Fast randomized point location
without preprocessing in two- and three-dimensional delaunay
triangulations,'' Computational Geometry, vol. 12, pp. 63-83, 1999.
- 75
-
Advanced Visual Systems, ``UCD file format,'' 2002.
URL: http://help.avs.com/Express/doc/help/reference/dvmac/UCD_Form.htm.
- 76
-
Advanced Visual Systems, ``AVS home page,'' 2002.
URL: http://www.avs.com.
- 77
-
Kubota Graphics Technologies Inc., ``MicroAVS home page,'' 2002.
URL: http://www.kgt.co.jp/index_e.html.
- 78
-
G. Haase, Parallelisierung numerischer Algorithmen für partielle
Differentialgleichungen.
Stuttgart, Leipzig: Teubner, 1999.
- 79
-
W. Scholz, T. Schrefl, and J. Fidler, ``Aufbau eines geschützten Subnetzes
im TUNET,'' ZIDline, Informationen des zentralen Informatikdienstes der
TU Wien, pp. 29-37, June 2001.
- 80
-
K.-D. Durst, H. Kronmüller, and W. Ervens, ``Investigations of the magnetic
properties and demagnetization processes of an extremely high coercive
Sm(Co,Cu,Fe,Zr) permanent magnet I. Determination of intrinsic
magnetic material parameters,'' phys. stat. sol. (a), vol. 108,
pp. 403-416, 1988.
- 81
-
K. J. Strnat, ``Rare earth-cobalt permanent magnets,'' in Ferromagnetic
Materials (E. P. Wohlfarth and K. H. J. Buschow, eds.), vol. 4,
pp. 131-209, North-Holland, 1988.
- 82
-
K. D. Durst and H. Kronmüller, ``Magnetic hardening mechanisms in sintered
Nd-Fe-B and Sm(Co,Cu,Fe,Zr) permanent magnets,'' in Proceedings of the Eighth International Workshop on Rare-Earth Magnets and
their Applications and the Fourth International Symposium on Magnetic
Anisotropy and Coercivity in Rare Earth-Transition Metal Alloys (K. J.
Strnat, ed.), pp. 725-735, Univ. Dayton, Dayton, OH, USA, 1985.
- 83
-
H. Kronmüller, ``Nucleation and propagation of reversed domain in
RE-Co-magnets,'' in Proceedings of the 6th International Workshop on
Rare Eart-Cobalt Permanent Magnets and their Applications and 3rd
International Symposium on Magnetic Anisotropy and Coercivity in Rare
Earth-Transition Metal Alloys (J. Fidler, ed.), pp. 555-565, Tech. Univ.
Vienna, Vienna, Austria, 1985.
- 84
-
J. D. Livingston and D. L. Martin, ``Microstructure of aged (Co,Cu,Fe)Sm
magnets,'' J. Appl. Phys., vol. 48, pp. 1350-1354, 1977.
- 85
-
R. K. Mishra, G. Thomas, T. Yoneyama, A. Fukuno, and T. Ojima, ``Microstructure
and properties of step aged rare earth alloy magnets,'' J. Appl. Phys.,
vol. 52, pp. 2517-2519, 1981.
- 86
-
J. Fidler and P. Skalicky, ``Microstructure of precipitation hardened cobalt
rare earth permanent magnets,'' J. Magn. Magn. Mater., vol. 27,
pp. 127-134, 1982.
- 87
-
J. Fidler, ``Coercivity of precipitation hardened cobalt rare earth 17:2
permanent magnets,'' J. Magn. Magn. Mater., vol. 30, pp. 58-70, 1982.
- 88
-
W. Tang, Y. Zhang, A. M. Gabay, M. F. de Campos, and G. C. Hadjipanayis,
``Anomalous temperature dependence of coercivity in rare earth cobalt
magnets,'' J. Magn. Magn. Mater., vol. 242-245, pp. 1335-1337, 2002.
- 89
-
T. Matthias, J. Fidler, G. Zehetner, T. Schrefl, D. Schobinger, and
G. Martinek, ``TEM-analysis of Sm(Co,Fe,Cu,Zr) magnets for high
temperature applications,'' J. Magn. Magn. Mater., vol. 242-245,
pp. 1353-1355, 2002.
- 90
-
T. Schrefl, Numerical Simulation of Magnetization Reversal Processes in
Hard Magnetic Materials.
Dissertation, TU Wien, 1993.
- 91
-
H. Kronmüller and D. Goll, ``Micromagnetic theory of the pinning of domain
walls at phase boundaries,'' Physica B: Condensed Matter, vol. 319,
pp. 122-126, 2002.
- 92
-
E. D. Torre and C. M. Perlov, ``A one-dimensional model for wall motion
coercivity in magneto-optic media,'' J. Appl. Phys., vol. 69,
pp. 4596-4598, April 1991.
- 93
-
W. Tang, A. M. Gabay, Y. Zhang, G. C. Hadjipanayis, and H. Kronmüller,
``Temperature dependence of coercivity and magnetization reversal mechanism
in Sm(CoFeCuZr) magnets,'' IEEE Trans. Magn., vol. 37, pp. 2515-2517, 2001.
- 94
-
E. Lectard, C. H. Allibert, and R. Ballou, ``Saturation magnetization and
anisotropy fields in the Sm(CoCu),'' J. Appl. Phys.,
vol. 75, pp. 6277-6279, May 1994.
- 95
-
A. Aharoni, ``Domain wall pinning at planar defects,'' J. Appl. Phys.,
vol. 58, pp. 2677-2680, October 1985.
- 96
-
B. Streibl, J. Fidler, and T. Schrefl, ``Domain wall pinning in high
temperature Sm(Co,Fe,Cu,Zr) magnets,'' J. Appl. Phys.,
vol. 87, no. 9, pp. 4765-4767, 2000.
- 97
-
E. Estevez-Rams, TEM study of the correlation between microstructure and
magnetic properties of novel hard and soft magnetic materials.
Dissertation, TU Wien, 1996.
- 98
-
R. Skomski, ``Domain-wall curvature and coercivity in pinning type Sm-Co
magnets,'' J. Appl. Phys., vol. 81, pp. 5627-5629, April 1997.
- 99
-
D. Weller, A. Moser, L. Folks, M. E. Best, W. Lee, M. F. Toney, M. Schwickert,
J.-U. Thiele, and M. F. Doerner, ``High K materials approach to 100
Gbits/in,'' IEEE Trans. Magn., vol. 36, pp. 10-15, 2000.
- 100
-
T. Shima, K. Takanashi, Y. K. Takahashi, and K. Hono, ``Preparation and
magnetic properties of highly coercive FePt films,'' Appl. Phys.
Lett., vol. 81, pp. 1050-1052, 2002.
- 101
-
B. Bian, D. E. Laughlin, K. Sato, and Y. Hirotsu, ``Fabrication and
nanostructure of oriented FePt particles,'' J. Appl. Phys., vol. 87,
pp. 6962-6964, 2000.
- 102
-
T. Klemmer, D. Hoydick, H. Okumura, B. Zhang, and W. A. Soffa, ``Magnetic
hardening and coercivity mechanisms in L1 ordered FePd
ferromagnets,'' Scripta Metallurgica et Materialia, vol. 33, no. 10/11,
pp. 1793-1805, 1995.
- 103
-
P. Candeloro, A. Gerardino, E. Di Fabrizio, S. Cabrini, G. Giannini,
L. Mastrogiacomo, M. Ciria, R. C. O'Handley, G. Gubbiotti, and G. Carlotti,
``Patterned magnetic permally nickel films: Fabrication by electron beam
and x-ray lithographic techniques,'' Jpn. J. Appl. Phys., vol. 41,
pp. 5149-5152, August 2002.
- 104
-
C. A. Ross, ``Patterned magnetic recording media,'' Annu. Rev. Mater.
Res., vol. 31, pp. 203-235, 2000.
- 105
-
C. A. Ross, M. Hwang, M. Shima, J. Y. Cheng, M. Farhoud, T. A. Savas, H. I.
Smith, W. Schwarzacher, F. M. Ross, M. Redjdal, and F. B. Humphrey,
``Micromagnetic behavior of electrodeposited cylinder arrays,'' Phys.
Rev. B, vol. 65, p. 144417, 2002.
- 106
-
R. P. Cowburn, ``Property variation with shape in magnetic nanoelements,'' J. Phys. D: Appl. Phys., vol. 33, pp. R1-R16, 2000.
- 107
-
T. Shinjo, T. Okuno, R. Hassdorf, K. Shigeto, and T. Ono, ``Magnetic vortex
core observation in circular dots of permalloy,'' Science, vol. 289,
pp. 930-932, 2000.
- 108
-
A. Wachowiak, J. Wiebe, M. Bode, O. Pietzsch, M. Morgenstern, and
R. Wiesendanger, ``Direct observation of internal spin structure of magnetic
vortex cores,'' Science, vol. 298, pp. 577-580, 2002.
- 109
-
M. Schneider, H. Hoffmann, and J. Zweck, ``Magnetization reversal of thin
submicron elliptical permalloy elements,'' J. Magn. Magn. Mater.,
vol. 257, pp. 1-10, 2003.
- 110
-
R. P. Cowburn, D. K. Koltsov, A. O. Adeyeye, M. E. Welland, and D. M. Tricker,
``Single-domain circular nanomagnets,'' Phys. Rev. Lett., vol. 83,
pp. 1042-1045, August 1999.
- 111
-
G. Gubbiotti, G. Carlotti, F. Nizzoli, R. Zivieri, T. Okuna, and T. Shinjo,
``Magnetic properties of submicron circular permalloy dots,'' IEEE
Trans. Magn., vol. 38, pp. 2532-2534, September 2002.
- 112
-
V. Novosad, M. Grimsditch, K. Y. Guslienko, P. Vavassori, Y. Otani, and S. D.
Bader, ``Spin excitations of magnetic vortices in ferromagnetic nanodots,''
Phys. Rev. B, vol. 66, p. 052407, 2002.
- 113
-
N. A. Usov and S. E. Peschany, ``Magnetization curling in a fine cylindrical
particle,'' J. Magn. Magn. Mater., vol. 118, pp. L290-L294, 1993.
- 114
-
N. A. Usov and S. E. Peschany Fiz. Met. Metalloved (transl.: The Physics
of Metals and Metallography), vol. 12, pp. 13-24, 1994.
- 115
-
T. M. Hengstmann, D. Grundler, C. Heyn, and D. Heitmann, ``Stray-field
investigation in permalloy nanodisks,'' J. Appl. Phys., vol. 90,
pp. 6542-6544, December 2001.
- 116
-
K. Y. Guslienko, V. Novosad, Y. Otani, H. Shima, and K. Fukamichi, ``Field
evolution of magnetic vortex state in ferromagnetic disks,'' Appl. Phys.
Lett., vol. 78, pp. 3848-3850, June 2001.
- 117
-
K. Y. Guslienko, V. Novosad, Y. Otani, H. Shima, and K. Fukamichi,
``Magnetization reversal due to vortex nucleation, displacement, and
annihilation in submicron ferromagnetic dot arrays,'' Phys. Rev. B,
vol. 65, p. 024414, 2002.
- 118
-
M. Schneider, H. Hoffmann, and J. Zweck, ``Lorentz microscopy of circular
ferromagnetic permalloy nanodisks,'' Appl. Phys. Lett., vol. 77,
pp. 2909-2911, October 2000.
- 119
-
A. Fernandez and C. J. Cerjan, ``Nucleation and annihilation of magnetic
vortices in submicron-scale Co dots,'' J. Appl. Phys., vol. 87,
pp. 1395-1401, February 2000.
- 120
-
V. Novosad, K. Y. Guslienko, H. Shima, Y. Otani, K. Fukamichi, N. Kikuchi,
O. Kitakami, and Y. Shimada, ``Nucleation and annihilation of magnetic
vortices in sub-micron permalloy dots,'' IEEE Trans. Magn., vol. 37,
no. 4, pp. 2088-2090, 2001.
- 121
-
A. Aharoni, ``Upper bound to a single-domain behavior of a ferromagnetic
cylinder,'' J. Appl. Phys., vol. 68, pp. 2892-2900, September 1990.
- 122
-
K. L. Metlov and K. Y. Guslienko, ``Stability of magnetic vortex in soft
magnetic nano-sized circular cylinder,'' J. Magn. Magn. Mater.,
vol. 242-245, pp. 1015-1017, 2002.
- 123
-
J. d'Albuquerque e Castro, D. Altbir, J. C. Retamal, and P. Vargas, ``Scaling
approach to the magnetic phase diagram of nanosized systems,'' Phys.
Rev. Lett., vol. 88, p. 237202, May 2002.
- 124
-
M. Hehn, K. Ounadjela, J.-P. Bucher, F. Rousseaux, D. Decanini, B. Bartenlian,
and C. Chappert, ``Nanoscale magnetic domains in mesoscopic magnets,'' Science, vol. 272, pp. 1782-1785, 1996.
- 125
-
G. A. Prinz, ``Magnetoelectronics,'' Science, vol. 282, pp. 1660-1663,
1998.
- 126
-
A. Lyberatos, G. Ju, R. J. M. van de Veerdonk, and D. Weller, ``Micromagnetic
study of subnanosecond magnetic switching in perpendicular multilayers,''
J. Appl. Phys., vol. 91, pp. 2236-2242, February 2002.
- 127
-
O. Chubykalo, J. D. Hannay, M. Wongsam, R. W. Chantrell, and J. M. Gonzalez,
``Langevin dynamic simulation of spin waves in a micromagnetic model,'' Phys. Rev. B, vol. 65, p. 184428, 2002.
- 128
-
W. K. Hiebert, A. Stankiewicz, and M. R. Freeman, ``Direct observation of
magnetic relaxation in a small permalloy disk by time-resolved scanning
Kerr microscopy,'' Phys. Rev. Lett., vol. 79, pp. 1134-1137, August
1997.
- 129
-
Y. Acremann, C. H. Back, M. Buess, O. Portmann, A. Vaterlaus, D. Pescia, and
H. Melchior, ``Imaging precessional motion of the magnetization vector,''
Science, vol. 290, pp. 492-495, October 2000.
- 130
-
K. Y. Guslienko, B. A. Ivanov, V. Novosad, Y. Otani, H. Shima, and
K. Fukamichi, ``Eigenfrequencies of vortex state excitations in magnetic
submicron-size disks,'' J. Appl. Phys., vol. 91, pp. 8037-8039, May
2002.
- 131
-
K. Y. Guslienko and A. N. Slavin, ``Spin-waves in cylindrical magnetic dot
arrays with in-plane magnetization,'' J. Appl. Phys., vol. 87,
pp. 6337-6339, May 2000.
- 132
-
J. P. Park, P. Eames, D. M. Engebretson, J. Berezovsky, and P. A. Crowell,
``Imaging of spin dynamics in closure domain and vortex structures,'' Phys. Rev. B, vol. 67, p. 020403R, 2003.
- 133
-
W. H. Press, S. A. Teukolsky, W. T. Vetterling, and B. P. Flannery, Numerical Recipes in Fortran 77: The Art of Scientific Computing.
Cambridge University Press, 1997.
- 134
-
K. J. Kirk, J. N. Chapman, and C. D. W. Wilkinson, ``Lorentz microscopy of
small magnetic structures,'' J. Appl. Phys., vol. 85, pp. 5237-5242,
April 1999.
- 135
-
D. Süss, T. Schrefl, J. Fidler, and J. N. Chapman, ``Micromagnetic simulation
of the long range interaction between NiFe nano-elements using the
BE-method,'' J. Magn. Magn. Mater., vol. 196-197, pp. 617-619, 1999.
- 136
-
Y. B. Xu, C. A. F. Vaz, A. Hirohata, C. C. Yao, W. Y. Lee, J. A. C. Bland,
F. Rousseaux, E. Cambril, and H. Launois, ``Domain wall trapping probed by
magnetoresistance and magnetic force microscopy in submicron ferromagnetic
wire structures,'' J. Appl. Phys., vol. 85, pp. 6178-6180, April 1999.
- 137
-
U. Ruediger, J. Yu, S. Zhang, A. D. Kent, and S. S. P. Parkin, ``Negative
domain wall contribution to the resistivity of microfabricated Fe wires,''
Phys. Rev. Lett., vol. 80, pp. 5639-5642, June 1998.
- 138
-
V. Tsiantos, T. Schrefl, W. Scholz, H. Forster, D. Suess, R. Dittrich, and
J. Fidler, ``Thermal fluctuations in magnetic sensor elements,'' J.
Sensors and Actuators.
in press.
- 139
-
S. Batra, M. Covington, T. M. Crawford, B. Crue, P. A. A. van der Heijden,
J. Jayashankar, E. C. Johns, M. Kryder, K. Minor, R. Rottmayer, U. Tran, and
J. West, ``A perpendicular write head design for high-density recording,''
IEEE Trans. Magn., vol. 38, pp. 157-162, January 2002.
- 140
-
J. J. Dongarra, J. D. Croz, S. Hammarling, and R. J. Hanson, ``An extended set
of FORTRAN Basic Linear Algebra Subprograms,'' ACM Transactions on
Mathematical Software, vol. 14, pp. 1-17, Mar. 1988.
See also [144].
- 141
-
C. L. Lawson, R. J. Hanson, D. R. Kincaid, and F. T. Krogh, ``Basic Linear
Algebra Subprograms for Fortran usage,'' ACM Transactions on
Mathematical Software, vol. 5, pp. 308-323, Sept. 1979.
- 142
-
A. C. Hindmarsh, ``Alan Hindmarsh's home page,'' 2002.
URL: http://www.llnl.gov/CASC/people/hindmarsh/.
- 143
-
S. D. Cohen and A. C. Hindmarsh, ``CVODE page at netlib,'' 2002.
URL: http://www.netlib.org/ode/cvode.tar.gz.
- 144
-
J. J. Dongarra, J. D. Croz, S. Hammarling, and R. J. Hanson, ``Corrigenda:
``An extended set of FORTRAN Basic Linear Algebra Subprograms'','' ACM Transactions on Mathematical Software, vol. 14, pp. 399-399, Dec.
1988.
See [140].
Subsections
Werner Scholz
2003-06-08