438
Index
Magneto-crystalline anisotropy, 99, 226,
228, 234, 236, 404, 405, 411, 416,
425, 426
Magneto-diffusion, 396
Magneto-optical sensing, 128
Magneto-optics, 127
Magneto-plasmonics, 107–109, 112–118,
120–122, 124–129
Magnetoferritin, 291
Magnetosomes, 159–175
Magnetospirillum gryphiswaldense, 161,
163
Magnetotactic bacteria, 159–161, 163–165,
169, 175
Magnetotaxis, 160, 161
Manipulation, 296, 297
Mesoscopic model, 39, 42, 43, 45, 54, 57, 60
Metastability, 9, 17
Metastable, 231, 233–235
Metropolis algorithm, 42, 50, 57
Micellar approach, 190, 194, 198
Mie model, 109
Minor loops, 145, 146
Missing-wedge, 259, 262
Mn-oxide, 280
Monte Carlo simulation, 6, 7, 14, 18, 32, 40–
42, 45, 46, 50, 55–57, 59, 137, 139,
149, 156, 193, 208–211
Multifunctionality, 156
Multifunctional materials, 107, 129
Multilayers, 93, 114, 129, 196, 231, 419
Multimodal imaging, 120
Multiple twinned, 225
Multivariable Analysis (MVA), 268, 270,
272, 273, 276
N
Nanoalloys, 122
Nano-biotechnology, 313, 315
Nanocomposite, 65, 79, 81, 82, 293–295,
298, 406–410, 412, 414–430
Nanograins, 143, 144, 146, 148, 156
Nanomagnetism, 3, 4, 9, 21, 175
Nanoparticles, 182, 185–194, 196–198,
200–203, 206, 207, 247–251, 409–
417, 420–423, 425–428
Nanoparticles assembly, 49
Nanoparticles morphology, 42, 54
Nanoplate, 421, 423
Nanorod, 404, 421, 423
Néel-Brown model, 7, 9, 34
Néel model for surface anisotropy, 22, 24,
32
Nickel (Ni), 221, 225, 234–236
NiO, 233
NIR, 110, 111, 119, 120, 126
NMRi, 118, 120
Nonmagnetic matrices, 294
O
Orbital magnetic moment, 241, 243, 244,
248
Organometallic approach, 183, 190, 191,
211
Oxidation, 229–232
Oxide shell, 220, 224, 226, 229
P
Paramagnetism, 201, 370
Particle size distributions, 71, 73, 75
PCA, 258, 269, 270, 273, 276–278, 280
Permanent magnet, 404, 406, 408, 410, 419,
427
Phase transitions, 68, 71
Photoacoustic imaging, 120
Photo-thermia, 120, 127
Plant pathogens, 303, 306, 322
Plasmon-enhanced magneto-optical effect,
121, 125
Plasmonic nanoparticles, 112–114
R
Radon-transform, 258, 266
Random anisotropy, 53
Random assemblies, 39, 41, 47, 48, 50, 60
Recoil loop, 429
Redox reactions, 384–386, 394
Red shift, 112, 114
Reflection High Energy Electron Diffraction
(RHEED), 227, 233
Rejuvenation, 65, 69, 71
Relaxation rate, 12, 14, 31, 33
Relaxation time, 4, 7, 34
Remanence, 405, 406, 408, 425, 429
Renewable energy, 382
Resonance frequency, 287–289
Reversal mechanisms, 22
Rigid coupling, 99, 101
S
Saturation field, 18
Saturation magnetization, 43–45, 51, 54, 55,
57
Scaling laws, 19, 20, 32
Index
Magneto-crystalline anisotropy, 99, 226,
228, 234, 236, 404, 405, 411, 416,
425, 426
Magneto-diffusion, 396
Magneto-optical sensing, 128
Magneto-optics, 127
Magneto-plasmonics, 107–109, 112–118,
120–122, 124–129
Magnetoferritin, 291
Magnetosomes, 159–175
Magnetospirillum gryphiswaldense, 161,
163
Magnetotactic bacteria, 159–161, 163–165,
169, 175
Magnetotaxis, 160, 161
Manipulation, 296, 297
Mesoscopic model, 39, 42, 43, 45, 54, 57, 60
Metastability, 9, 17
Metastable, 231, 233–235
Metropolis algorithm, 42, 50, 57
Micellar approach, 190, 194, 198
Mie model, 109
Minor loops, 145, 146
Missing-wedge, 259, 262
Mn-oxide, 280
Monte Carlo simulation, 6, 7, 14, 18, 32, 40–
42, 45, 46, 50, 55–57, 59, 137, 139,
149, 156, 193, 208–211
Multifunctionality, 156
Multifunctional materials, 107, 129
Multilayers, 93, 114, 129, 196, 231, 419
Multimodal imaging, 120
Multiple twinned, 225
Multivariable Analysis (MVA), 268, 270,
272, 273, 276
N
Nanoalloys, 122
Nano-biotechnology, 313, 315
Nanocomposite, 65, 79, 81, 82, 293–295,
298, 406–410, 412, 414–430
Nanograins, 143, 144, 146, 148, 156
Nanomagnetism, 3, 4, 9, 21, 175
Nanoparticles, 182, 185–194, 196–198,
200–203, 206, 207, 247–251, 409–
417, 420–423, 425–428
Nanoparticles assembly, 49
Nanoparticles morphology, 42, 54
Nanoplate, 421, 423
Nanorod, 404, 421, 423
Néel-Brown model, 7, 9, 34
Néel model for surface anisotropy, 22, 24,
32
Nickel (Ni), 221, 225, 234–236
NiO, 233
NIR, 110, 111, 119, 120, 126
NMRi, 118, 120
Nonmagnetic matrices, 294
O
Orbital magnetic moment, 241, 243, 244,
248
Organometallic approach, 183, 190, 191,
211
Oxidation, 229–232
Oxide shell, 220, 224, 226, 229
P
Paramagnetism, 201, 370
Particle size distributions, 71, 73, 75
PCA, 258, 269, 270, 273, 276–278, 280
Permanent magnet, 404, 406, 408, 410, 419,
427
Phase transitions, 68, 71
Photoacoustic imaging, 120
Photo-thermia, 120, 127
Plant pathogens, 303, 306, 322
Plasmon-enhanced magneto-optical effect,
121, 125
Plasmonic nanoparticles, 112–114
R
Radon-transform, 258, 266
Random anisotropy, 53
Random assemblies, 39, 41, 47, 48, 50, 60
Recoil loop, 429
Redox reactions, 384–386, 394
Red shift, 112, 114
Reflection High Energy Electron Diffraction
(RHEED), 227, 233
Rejuvenation, 65, 69, 71
Relaxation rate, 12, 14, 31, 33
Relaxation time, 4, 7, 34
Remanence, 405, 406, 408, 425, 429
Renewable energy, 382
Resonance frequency, 287–289
Reversal mechanisms, 22
Rigid coupling, 99, 101
S
Saturation field, 18
Saturation magnetization, 43–45, 51, 54, 55,
57
Scaling laws, 19, 20, 32
