<ul><li>Foreword, Committees and Contributors</li><li>Chapter 1: Theory Research and Numerical Simulation</li><li>Anomalous Temperature and Field Behaviors of Magnetization in Cubic Lattice Frustrated Ferromagnets</li><li>Coarsening in Critical Dynamics of 2D XY-Model</li><li>Green's Function of Magnetoelastic Waves</li><li>Spin Excitations in Chiral Model of Graphene</li><li>Low-Temperature Spin Fluctuations beyond Spin Waves</li><li>Spin Fluctuations in Disordered Metallic Ferrimagnetic Alloys</li><li>The Investigation of Critical Properties of the Transition from Modulated Phase into Paramagnetic Phase</li><li>Adsorption and Magnetic Properties of Ultrathin Fe and Ni Alloy Films with an Inhomogeneous Magnetization Distribution</li><li>Edge Rotational Magnons in Magnonic Crystals</li><li>Finite Size Effects in Magnetic Multilayers Induced by Interaction with the Substrate</li><li>Green's Functions of Spin and Electromagnetic Waves in the Sinusoidal Superlattice</li><li>Resonant Dynamics of the Domain Walls in Multilayer Ferromagnetic Structure</li><li>Peierls "Washboard" Controls Dynamics of the Domain Walls in Molecular Ferrimagnets</li><li>Micromagnetic Calculation of Neel Domain Wall Structure</li><li>Micro Grid Frame of Electroless Deposited Co-P Magnetic Tubes</li><li>Canted Spiral Magnetic Order in Layered Systems</li><li>Second Order Precession in the Plate with Cubic Anisotropy and Magnetoelastic Properties</li><li>Influence of Quenched Nonmagnetic Impurities on Phase Transitions in Two-Dimensional 3-State Antiferromagnetic Potts Model on Triangular Lattice</li><li>Autoresonant Excitation of Spin Wave "Dark" Solitons</li><li>Phase Transitions in Frustrated Ising Antiferromagnet on a Body-Centered Cubic Lattice with Next-Nearest Neighbor Interactions</li><li>Chapter 2: Magnetic Semiconductors and Oxides</li><li>Ferromagnetism in GaAs/InAs/GaAs Quantum Dot Layer Delta-Doped with Mn</li><li>Galvanomagnetic and Magnetic Properties of Pb<sub>1-y</sub>Sc<sub>y</sub>Te</li><li>Magneto-Optical Evidence for Intrinsic Ferromagnetism in (Ga,Mn)As Layers Grown by Pulsed Laser Deposition</li><li>Effect of Mn Doping on Magnetic and Dielectric Properties of Bi<sub>2</sub>Sn<sub>2</sub>O<sub>7</sub></li><li>Anomalous Hall Effect in 2D DMS</li><li>Magnetism of Bismuth(III) Oxide-Based Compounds</li><li>Magneto-Electronic Phase Separation in La<sub>0.7</sub>Sr<sub>0.3</sub>MnO<sub>3</sub> with Metallic Behavior in Paramagnetic Region</li><li>Manifestation of Donor Hybridized Electron States in Magnetism of Nickel Impurities in Mercury Selenide Crystals</li><li>Relaxation Attenuation of Ultrasound by the Jahn-Teller Centers in ZnSe:Cr in High Magnetic Fields</li><li>Role of Magnetic Subsystems to Form a Complex Magnetic Structure Mn<sub>2</sub>GeO<sub>4</sub> Single Crystals</li><li>Spin-Lattice Coupling and Peculiarities of Magnetic Behavior of Ferrimagnetic Ludwigites Mn<sub>0.5</sub><sup>2+</sup>M<sub>1.5</sub><sup>2+</sup>Mn<sup>3+</sup>BO<sub>5</sub>(M=Cu, Ni)</li><li>Synthesis and Magnetic Properties of ?-Cu<sub>3</sub>Fe<sub>4</sub>(VO<sub>4</sub>)<sub>6</sub> Single Crystals</li><li>Giant Magnetothermopower in Sm<sub>0.55</sub>Sr<sub>0.45</sub>MnO<sub>3</sub> Manganite</li><li>Peculiarities of Elastic Properties of RE Cobaltites RBaCo<sub>4</sub>O<sub>7</sub> (R = Dy - Er, Y) at Magnetic Phase Transitions</li><li>Femtosecond Photo-Induced Phenomena in Multiferroic Hexagonal Manganite YMnO<sub>3</sub></li><li>Magnetooptical Properties of Hg<sub>1-x</sub>Cd<sub>x</sub>Cr<sub>2</sub>Se<sub>4</sub> Solid Solutions<sub></sub></li><li>Influence of Different Interlayers on the Electrical and Magnetic Properties of Multilayered Structures Based on (Co<sub>4</sub><sub>1</sub>Fe<sub>39</sub>B<sub>20</sub>)<sub>33.9</sub>(SiO<sub>2</sub>)<sub>66.1</sub> Composite</li><li>Two Sources of Paramagnetic Curie-Type Contribution to the Normal State Magnetic Susceptibility of HTSC YBa<sub>2</sub>Cu<sub>3</sub>O<sub>6+?</sub></li><li>Investigation of Hydrothermally Synthesized Greigite Magnetic Properties</li><li>Electron Doped CaMnO<sub>3</sub>: Mn-Site Substitution versus Ca-Site Substitution</li><li>Temperature Dependence of Electronic and Magnetic Properties of (DOEO)<sub>4</sub>[HgBr<sub>4</sub>]?TCE Single Crystals</li><li>Chapter 3: Magnetic Alloys and Magnetocaloric Effect</li><li>Annealing Influence on the Exchange-Bias and Magnetostructural Properties in the Ni<sub>50.0</sub>Mn<sub>36.5</sub>Sn<sub>13.5</sub> Ribbon-Shape Alloy</li><li>Direct and Inverse Magnetocaloric Effect in Ni<sub>1.81</sub>Mn<sub>1.64</sub>In<sub>0.55</sub> Multifunctional Heusler Alloy</li><li>First Principles Investigations of Structural and Magnetic Properties of Fe-Ni-Mn-Al Heusler Alloys</li><li>Heat Pumping Scheme Based on Inducement of the F-AF Transition in FeRh by Pressure</li><li>Influence of Rapid Quenching on Magnetocaloric Effect of Y<sub>2</sub>(Fe,Mn)<sub>17</sub> Intermetallic Compounds</li><li>Magnetic and Magneto-Optical Research of Ni<sub>43.7</sub>Mn<sub>43.6</sub>In<sub>12.7</sub> Ribbons</li><li>Magnetic Phase Transitions and Magnetocaloric Effect in R<sub>2</sub>Fe<sub>17</sub> (R = Y, Tb, Er)</li><li>Magnetocaloric and Magnetoelastic Properties of the Gd<sub>5</sub>Si<sub>2</sub>Ge<sub>2</sub> with Small Indium Substitutions in p-Sublattice</li><li>Magnetocaloric Effect and Frustrations in One-Dimensional Magnets</li><li>Magnetocaloric Effect of Gadolinium at Adiabatic and Quasi-Isothermal Conditions in High Magnetic Fields</li><li>Magnetocaloric Properties of Cold Rolled Gd<sub>100-x</sub>Zr<sub>x</sub><sub></sub>(x = 0, 1, 2, 3) Intermetallic Alloys</li><li>Magneto-Optical Study of Martensitic Transition in Ni<sub>45</sub>Mn<sub>36.7</sub>In<sub>13.3</sub>Co<sub>5 </sub>(at. %) Single Crystals</li><li>Structural and Magnetic Properties of Mn<sub>2</sub>NiZ (Z = Ga, In, Sn, Sb) Heusler Alloys from <i>Ab Initio</i> Calculations</li><li>Structure, Electrical and Magnetic Properties of Ni<sub>47-x</sub>Mn<sub>42+x</sub>In<sub>11</sub> (x=0, 1, 2) Based Heusler Alloys</li><li>The Influence of Cold Rolling on Magnetocaloric Properties of Gd<sub>100-x</sub>Y<sub>x</sub> (x = 0, 5, 10, 15) Alloys</li><li>The Magnetocaloric Effect and Magnetic Transitions in Hydride Compounds: GdNiH<sub>3.2</sub> and TbNiH<sub>3.4</sub></li><li>Untypical Temperature Dependence of the Magnetocaloric Effect in the Dy(Co<sub>1-x</sub>Fe<sub>x</sub>)<sub>2</sub> (x = 0.10; 0.15) Compounds</li><li>Monte Carlo Study of the Polycrystalline Ni<sub>2</sub>MnGa Heusler Alloy</li><li>Magnetic Properties of Rapidly Quenched Ribbons of Soft Magnetic Iron-Based Alloys after Annealing in Air and in Vacuum</li><li>Magnetic Properties and Magnetostriction of R<sub>2</sub>Fe<sub>17</sub>H<sub>3</sub><sub>+/-<i>x</i></sub> (R = Tb, Dy) Hydrides</li><li>Chapter 4: Magnetic Microwires</li><li>High Temperature Properties of CoFe/CoNi and Fe/CoNi Biphase Microwires</li><li>Manipulation of Magnetic Properties and Domain Wall Dynamics of Amorphous Ferromagnetic Co<sub>68.7</sub>Fe<sub>4</sub>Ni<sub>1</sub>B<sub>13</sub>Si<sub>11</sub>Mo<sub>2.3</sub> Microwire by Changing of Annealing Temperature</li><li>Pressure Effects on Transport Properties of (La<sub>0.85</sub>Sr<sub>0.</sub><sub>15</sub>)<sub>y</sub>MnO<sub>3</sub> Single Crystals</li><li>Structural and Magnetic Properties of Fe<sub>73,5</sub>Si<sub>13,5</sub>B<sub>9</sub>Nb<sub>3</sub>Cu<sub>1</sub> Microwires Produced by Modernized Ulitovsky-Taylor Method</li><li>Effect of Current Annealing on Domain Wall Dynamics in Bistable FeCoMoB Microwires</li><li>Influence of the Defects on Magnetic Properties of Glass-Coated Microwires</li><li>Chapter 5: Magnetic Soft Matter</li><li>About the Importance of Choosing Bidisperse Approximation for Describing Real-World Polydisperse Ferrofluids</li><li>Effects of a Superparamagnetic State of Particles of a Paraffin Based Magnetic Colloid</li><li>Influence of Rotation on the Magnetization of Dilute Suspensions of Magnetic Particles</li><li>Macroproperties of the Magnetic Systems with Anisotropic Microstructural Units</li><li>Magnetic Properties of Magnetic Hydrogels</li><li>Optical Properties of Aggregated Magnetic Fluid: Birefringence and Light Scattering</li><li>Structural Organization in Magnetic Fluids with Magnetized Aggregates in Rotating Magnetic Field</li><li>Structure Properties in a Bidisperse Ferrofluid in the Absence of an External Magnetic Field</li><li>The Study of the Mobility Coefficient for Chain Aggregates in Quasi-Two-Dimensional Samples of Magnetic Fluids</li><li>Thermodynamics of Bidisperse Ferrofluids in Zero External Magnetic Field: Theory and Simulations</li><li>Magnetic Fluid Bridge between Coaxial Cylinders with a Line Conductor in Case of Wetting</li><li>Heat Transfer in Boiling Magnetic Fluid in a Magnetic Field</li><li>The Influence of a Rotating Magnetic Field on the Sample with Magnetizable Materials near the Vessel Bottom</li><li>Chapter 6: Multiferroics</li><li>Magnetic Field Tunable Electromechanical Resonance Properties of Magnetoelectric Bilayer</li><li>Magnetoelectric Effect in Ferrite-Piezoelectric Dual-Phase Structure</li><li>Temperature Characteristics of Magnetoelectric Effect in Bilayer Ferromagnetic-Piezoelectric Structures</li><li>Magnetic Properties of Pr<sub>?</sub>Y<sub>1-x</sub>Fe<sub>3</sub>(BO<sub>3</sub>)<sub>4</sub></li><li>Universal Hysteresis Behavior of Double Perovskite Ba<sub>2-</sub><sub>x</sub>La<sub>x</sub>FeMoO<sub>6</sub></li><li>Magnetic and Magnetoelectric Properties of Sm<sub>1-x</sub>La<sub>x</sub>Fe<sub>3</sub>(BO<sub>3</sub>)<sub>4</sub> Single Crystals</li><li>Crystal and Magnetic State of Multiferroic Composites (x)MFe<sub>2</sub>O<sub>4</sub> + (1-x)BaTiO<sub>3</sub>, M = Ni, Co</li><li>Charge Ordering of Multiferroic LuFe<sub>2</sub>O<sub>4</sub>: Influence of Doping and Electric Field</li><li>Monte Carlo Modelling of Two Dimensional Multiferroics</li><li>The Correlations between Dynamic Interactions in Antiferromagnetic Multiferroics</li><li>Effect of Corona Treatment on Magnetic Properties of Nanoscaled Multiferroic Films BiFeO<sub>3</sub>, (BiLa)FeO<sub>3</sub> and (BiNd)FeO<sub>3</sub></li><li>Chapter 7: Spintronics and Magnetotransport</li><li>Hall Effect Induced by Spin-Wave Excitation in Metal/Ferromagnetic Insulator Bilayer</li><li>Spin-Injection Stimulated Radiation of Terahertz Waves in Magnetic Junctions ("Twaser" Action)</li><li>Anomalous Hall Effect in (Co<sub>41</sub>Fe<sub>39</sub>B<sub>20</sub>)<sub>x</sub>(Al-O)<sub>100-x</sub> Nanocomposites: Temperature Dependence</li><li>Numerical Simulation of Spin Torque Induced by Spin Hall Effect in CuPt/Fe Heterostructure</li><li>Structural, Magnetic and Electric Transport Properties for Co<sub>2</sub>FeAl<sub>0.5</sub>Si<sub>0.5</sub>/n-GaAs Junctions</li><li>Simultaneous Localization of Electrons in Different ?-Valleys in Ge/Si Quantum Dot Structures</li><li>Magnetoresistance and Magnetic Properties Ce<sub>x</sub>Mn<sub>1-x</sub>S</li><li>Magnetic and Magnetoresistance Properties of (Co/Ge)<sub>n</sub> Films</li><li>Enhancement of Exchange Bias in NiFe/IrM, IrMn/NiFe and NiFe/IrMn/NiFe Structures with Different Thickness of Antiferromagnetic Layer</li><li>Bifurcations in the Dynamical System for Three-Layered Magnetic Valve</li><li>Peculiarity of Solitary Deflection Waves Dynamics on the Domain Walls of Yttrium Orthoferrite</li><li>Ferromagnetic State of LaMnO<sub>3</sub> Interlayer in La<sub>0.7</sub>Sr<sub>0.3</sub>MnO<sub>3</sub>/LaMnO<sub>3</sub>/SrRuO<sub>3</sub> Heterostructures</li><li>The Influence of the Magnetic Field on Electrically Induced Domain Wall Motion</li><li>Peculiarities of Transport, Resonance and Optical Properties of the Anion-Substituted Manganese Chalcogenides</li><li>The Bias-Controlled Magnetoimpedance Effect in a MIS Structure</li><li>Anomalous Galvanomagnetic Effects due to Spontaneous Spin Polarization of Electrons in Crystal with Low Concentration of 3d-Transition Element Impurities</li><li>Chapter 8: High Frequency Properties</li><li>Bias Current Effect on Second Harmonic in Asymmetric Magnetoimpedance Response in Amorphous Microwires</li><li>High-Frequency Properties of Multilayer Systems Based on the (Co<sub>41</sub>Fe<sub>39</sub>B<sub>20</sub>)<sub>X</sub>(SiO<sub>2</sub>)<sub>100-X</sub> and (Co<sub>45</sub>Fe<sub>45</sub>Zr<sub>10</sub>)<sub>X</sub>(Al<sub>2</sub>O<sub>3</sub>)<sub>100-X</sub> Nanocomposites</li><li>Investigation of Nonlinear Dynamics of Magnetoelastic Oscillations in Normal Magnetized Ferrite Plate</li><li>Microwave Magnetic Induction Structure of the Surface Spin Wave in Ferrite Film</li><li>Hypersound Excitation in the Ferrite Plate by Impulse Magnetization Reversal</li><li>Concentration Dependences of Exchange Fields in Composite and Multilayer Thin Films</li><li>Study of the Torque Acting on the Magnetization during 90 degrees Pulsed Reversal Process in Ferrite-Garnet Films with In-Plane Anisotropy</li><li>Chapter 9: Nanostructures and Low Dimensional Magnetism</li><li>AC Magnetic Susceptibility Study in Co/Au Nanoparticles</li><li>Anisotropic Magnetoresistance and Weak Localization in Granular System Ni-MgO</li><li>Peculiarities of the Interface Forming in the "Nanocomposite-Bismuth Telluride" Multilayer System</li><li>Room Temperature Instability of Exchange Anisotropy in FeMn/FeCo System</li><li>Surface Modified Ni Nanoparticles Produced by the Electrical Explosion of Wire</li><li>Unidirectional Anisotropy in Nanostructures with Antiferromagnetic NiFeMn Layer</li><li>Temperature Behavior of Magnetization in Multiphase Co-P Powders in Unsaturated Regime</li><li>Spectral Ellipsometry of Cobalt-Ions Implanted Silicon Surface</li><li>Oxygen Effect on Magnetic Anisotropy Energy of Co Nanowires on Cu(210) Surface - An <i>Ab Initio</i> Study</li><li>New Iron(II) Complexes [Fe(HC(Pz)<sub>3</sub>)<sub>2</sub>]A<sub>2</sub> with Spin-Crossover</li><li>Magnetic Properties of Nanocomposites Metal-Carbon</li><li>Magnetic Resonance in CuCr<sub>2</sub>S<sub>4</sub> Nanoclusters and Nanocrystals</li><li>
<i>Ab Initio</i> Study of the Oxygen Effect on Magnetic Interactions within 3d Metal Nanowires on Vicinal Rh (553) Surface</li><li>Anisotropy in FeCo Nanoparticles, a First Step</li><li>Dependence of the Hysteresis Characteristics of Co-Au Core-Shell Nanoparticles on the Size of the Particles</li><li>Easy Axis Spin-Flop in ?-Phase In-Doped Iron (III) Oxide Nanowires</li><li>Electronic Properties and Stability of Silicon Nanoclusters Passivated by Hydrogen</li><li>FMR and Magnetic Properties of (CoFeB)<sub>m</sub>(SiO<sub>2</sub>)<sub>1</sub><sub>00</sub><sub>-m </sub>Nanocomposite</li><li>Fourfold Magnetic Anisotropy of CoPd Alloy, Obtained by Solid State Reactions in Epitaxal Pd/hcp-?o and Pd/fcc-Co Bilayers</li><li>Free-Standing 2D Silicon Nanocrystals Stabilized with Perfluorophenyl Ligands: Experiment and <i>Ab Initio</i> Research</li><li>Magnetic and Magnetotransport Properties of Fe-NbO System</li><li>Magnetic Anisotropy of Co-Nanostructures Embedded in Matrices with Different Pores Size and Morphology</li><li>Magnetic Clusters in Natural Ferro-Chromian Spinels</li><li>Structure and Magnetic Properties of FeNi/Ti Multilayered Films Grown by Magnetron Sputtering</li><li>Optical Second Harmonic Generation in Nanostructures with Inhomogeneous Magnetization</li><li>Magnetic and Magneto-Optical Properties of Magnetoplasmonic Crystals</li><li>Magneto-Optical Properties of Multilayer Nanostructures with Composite Magnetic Layers near Percolation Threshold</li><li>Magnetodeformational Anisotropy of FeGa/PU Hybrid Nanocomposite via Particle Concentration and Spatial Orientation</li><li>Nanocrystalline Soft Magnetic (Fe<sub>0.7</sub>Co<sub>0.3</sub>)<sub>88</sub>Hf<sub>2</sub>W<sub>2</sub>Mo<sub>2</sub>Zr<sub>1</sub>B<sub>4</sub>Cu<sub>1</sub> Alloy with Enhanced Thermal Stability of Magnetic Properties</li><li>A New Method of Intergrain Exchange Interaction Energy Determination in Nanostructured Alloys with Spontaneous Spin-Reorientation Transition</li><li>Components of Magnetic Anisotropy of Soft Magnetic Nanocrystalline Fe-Based Films</li><li>Effect of Secondary Decomposition on Coercivity of Fe-Co-Cr Alloys with 15% Co</li><li>The Suppression of Demagnetizing Field Heterogeneity in Ferromagnetic Powders</li><li>Magnetic and Magnetoresonance Studies of Composite Multilayer Films with Different Kinds of Interlayers</li><li>Chapter 10: Magnetic Thin Films</li><li>Influence of the Size Effect on Magnetic Susceptibility in Ultrathin Films</li><li>Spin Filtering on the MnSb Cluster Interface in GaSbMn Thin Films</li><li>Magnetic Properties of Co-B Nanostructures Prepared via Electroless Deposition</li><li>The Influence of Si on Magnetic and Magneto-Optical Properties of Co/Si/Co Thin-Film Systems</li><li>Surface Modification of Thin Iron Films in Aromatic Solvents at Ambient Conditions</li><li>A Simple Model for Investigation of the Pair Breaking Effect on the Parameters of HTS/FM Thin Films</li><li>Structural and Magnetic Properties of Ni<sub>50</sub>Mn<sub>35</sub>In<sub>15</sub> Thin Films</li><li>Structural and Transport Properties of Ni<sub>45</sub>Mn<sub>40</sub>In<sub>15</sub> Thin Films</li><li>Temperature Dependent Magnetic and Structural Properties of Co<sub>2</sub>(Fe, Ti)Ga Thin Films</li><li>Surface Properties of Nanoscale Iron Garnet Films</li><li>Ferromagnetic and Spin-Wave Resonance in Fe<sub>x</sub>Ni<sub>1-x</sub> (0
</li><li>Morphology and Magnetic Properties of Amorphous ??-P and Co-Ni-P Films</li><li>Magnetization Processes Study in the Implanted Garnet Films Using the Second-Harmonic Generation Effect</li><li>Thermoelectric Power of Gradient Fe<sub>x</sub>(Al<sub>2</sub>O<sub>3</sub>)<sub>100-x</sub> Composite Films</li><li>Influence of Annealing on the Surface Topography and Magnetic Properties of Thin Films of the FINEMET-Type Alloy</li><li>Magnetic Properties of NiFe and FeCuNbSiB Thin Films: Effect of Thickness on Static Permeability</li><li>Structural and Magnetic Properties of Annealed Vapor Deposited Co<sub>x</sub>Cr<sub>1-x</sub> Thin Films<sub></sub></li><li>Effect of Co Doping on the Galvanomagnetic Properties of ZnO Thin Films</li><li>Magnetic Properties of Amorphous Hydrogenated Carbon Thin Films Doped by Ni</li><li>Chapter 11: Magnetism and Superconductivity</li><li>On the Superconductivity of Planar Carbon Compounds</li><li>Anomalous Temperature Dependence of the Upper Critical Magnetic Field in Electron-Doped High-Temperature Superconductor</li><li>Copper Oxide Superconducting/Antiferromagnetic Interface</li><li>Current-Phase Relation of Superconductor-Ferromagnet-Superconductor Junctions with a Composite Interlayer</li><li>Magnetic Prehistory in the Heat Capacity of the Low-Temperature Superconductors</li><li>Role of Interface Transparency and Exchange Field in the Superconducting Triplet Spin-Valve Effect</li><li>Observation of Pinning Strengthening in "MgB<sub>2</sub> - CNT - ?-Fe" Nanocomposites Studied by Microwave Absorption Technique</li><li>Chapter 12: Magnetism in Biology and Medicine</li><li>Combined Photodynamic Thermochemotherapy of Glial Tumors Controlled by MRI and Electronic Sensor</li><li>Heating of Zn-Substituted Manganese Ferrite Magnetic Nanoparticles in Alternating Magnetic Field</li><li>Mo?ssbauer Study of Microbial Synthesis of Iron-Containing Nanoparticles</li><li>To the Theory of Hyperthermia Effect Induced by Magnetic Nanoparticles</li></ul>