Keywords: + 76.50. + g; 75.10.Jm; 75.70.Cn; 76.50.+g; 75.30.DsQuantum Green’s-function method; Resonance magnon density; Resonance frequency; Magnetic superlattice with damping
مقالات ISI + 76.50. + g (ترجمه نشده)
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Keywords: + 76.50. + g; 75.60.Jk; 75.75.+a; 76.50.+g
Stress tunable microwave absorption of ferromagnetic microwires for sensing applications
Keywords: + 76.50. + g; Low field absorption; Amorphous glass-coated microwires; Microwave75.50.Kj; 76.50.+g; 75.80.+q
Investigation of magnetic properties for oblique deposited granular films by magnetic field annealing
Keywords: + 76.50. + g; 61.46.Df; 68.55.J; 75.40.Gb; 75.70.Ak; 76.50.+g; Annealing; Magnetic thin films; Magnetic anisotropy; Damping coefficient; Magnetic sputtering;
Magnetic resonance and ferromagnetic behaviour in Fe-implanted SrTiO3
Keywords: + 76.50. + g; 62.23.Pq; 75.60.Ej; 76.50.+g; 85.40.Ry; 61.72.U-; A. Nanostructures; D. Crystal and ligand fields; E. Electron paramagnetic resonance;
Synthesis and magnetic behaviour of Mn:ZnO nanocrystalline powders
Keywords: + 76.50. + g; 75.50.Pp; 61.72.uj; 76.50.+g; 61.05.CpZnO: Mn; Nanoparticles; Ferromagnetism; XRD
Magnetic excitations in ferromagnetic semiconductors
Keywords: + 76.50. + g; 75.50.Pp; 76.50.+g; 75.70.âI; 75.30.Ds; 75.30.Gw; Ferromagnetic semiconductors; Spin wave resonance; Surface spin pinning; Magnetic anisotropy; Exchange stiffness constant;
Influence of grain growth on the high-frequency behaviour of ferromagnetic Fe–Co–(M)–N (M=Ta, Hf) nanocomposite films
Keywords: + 76.50. + g; 84.40.Az; 76.50.+g; 75.40.GbNanocrystalline ferromagnetic films; Ferromagnetic resonance; Frequency-dependent permeability; Damping mechanisms
Anisotropy and dynamic properties of Co2MnGe Heusler thin films
Keywords: + 76.50. + g; 76.50.+g; 75.30.Gw; 75.40.GbHeuslers thin films; Magnetic anisotropy; Spin waves; FMR
Antiferromagnetic Mn50Fe50 wire with large magnetostriction
Keywords: + 76.50. + g; 75.80.+q; 76.50.+g; 75.50.EeMagnetostriction; Mn–Fe wire; Fiber texture; Plastic deformation
High-temperature ferromagnetism in laser-deposited layers of silicon and germanium doped with manganese or iron impurities
Keywords: + 76.50. + g; 75.50.Pp; 71.55.Eq; 76.50.+g; 78.20.Ls; 72.20.MySupersaturated semiconductor; Ferromagnetism; Epitaxial film; Kerr effect; Anomalous Hall effect; Ferromagnetic resonance; 3d-impurity
Precessional frequency of ferromagnetic elements: Influence of magnetic domain width
Keywords: + 76.50. + g; 75.50.Cc; 75.79.−i; 76.50.+g; 76.60.Jx; 75.60.−dMagnetization dynamics; Spin precession; Soft-magnetic film; CoZrTa; Magnetic domain
The influence of Co doping on the dielectric, ferroelectric and ferromagnetic properties of Ba0.70Sr0.30TiO3 thin films
Keywords: + 76.50. + g; 77.80.âe; 77.22.Ch; 77.55.+f; 77.80.Bh; 76.50.+g; Sol-gel; Thin films; Dielectric properties; Ferroelectric; Ferromagnetism;
Carbon covered magnetic nickel nanoparticles embedded in PBT-PTMO polymer: Preparation and magnetic properties
Keywords: + 76.50. + g; 75.50.Tt; 75.75.+a; 76.50.+g; 82.35.NpNanoparticles, colloids and quantum structures; Polymers and organics
On the relation between the effective ferromagnetic resonance linewidth Δfeff and damping parameter αeff in ferromagnetic Fe–Co–Hf–N nanocomposite films
Keywords: + 76.50. + g; 84.40.Az; 76.50.+g; 75.40.GbFerromagnetic thin film; Uniaxial anisotropy; Ferromagnetic resonance linewidth; Damping parameter; Resonance line broadening
Preparation and FMR analysis of Co nanowires in alumina templates
Keywords: + 76.50. + g; 75.60.−d; 75.30.Gw; 76.50.+g; 75.60.−dCo Nanowires; Template synthesis; Magnetostatic interactions; Magnetic anisotropy; Ferromagnetic resonance (FMR)
Determination of anisotropy constants of protein encapsulated iron oxide nanoparticles by electron magnetic resonance
Keywords: + 76.50. + g; 76.50.+g; 75.75.+a; 75.30.GwElectron magnetic resonance; Magnetic nanoparticle; Anisotropy; Iron oxide; Ferritin
Contribution to analysis of Cu-substituted NiZn ferrites
Keywords: + 76.50. + g; 75.50.Gg; 75.60.Ej; 75.60.Jk; 76.50.+g; 76.60.EsCu-substituted ferrites; Magnetic properties; Magnetisation curves; Mössbauer spectra
Antiferroelectric spin wave resonance
Keywords: + 76.50. + g; 78.30.-j; 76.30.-v; 76.50.+g; 78.67.-n;
The electric and magnetic properties of Co and Fe films percept from the coexistence of ferromagnetic and microstrip resonance for a T-type microstrip
Keywords: + 76.50. + g; 75.70.-I; 76.50.+g; 73.43.QtMicrowave microstrip; Structure mode resonance; Ferromagnetic resonance; Magnetic Co and Fe films
New properties of magnon density in uniaxial anisotropic ferromagnet on the background of spin wave
Keywords: + 76.50. + g; 75.75.+a; 05.45.Yv; 76.50.+g; 73.21.Hb; Magnetic soliton; Spin wave; Magnon density; Darboux transformation;
A novel formulation for the numerical computation of magnetization modes in complex micromagnetic systems
Keywords: + 76.50. + g; 76.50.+g; 75.30.DsMicromagnetics; Oscillation modes; Landau–Lifshitz–Gilbert equation; Generalized eigenvalue problem; Finite difference and finite element micromagnetics
Dynamic response of magnetic nanoparticles arranged in a tubular shape
Keywords: + 76.50. + g; 76.50.+g; 75.75.+a; 75.50.Tt; 75.30.Gw; 75.47.Lx; Ferromagnetic resonance; Nanotubes; Nanomagnetism; Manganites;
Ferromagnetic resonance and magnetization in permalloy films with nanostructured antidot arrays of variable size
Keywords: + 76.50. + g; 76.50.+g; 75.70.−i; 75.75.+a; 75.30.Gw; 68.37.−d; 81.16.DnFerromagnetic resonance; Antidot films; Magnetic anisotropy; Spin wave
A new perturbation method for determining the broadband complex permeability of magnetic thin films
Keywords: + 76.50. + g; 84.40.Az; 76.50.+g; 75.40.Gb; Magnetic thin film; Perturbation method; Strip line technique; Broadband complex permeability;
Effect of Co doping on the magnetic properties of La0.85Ag0.15(Mn1−yCoy)O3
Keywords: + 76.50. + g; 75.30.Et; 75.47.Lx; 75.50.Ee; 76.50.+g; 75.50.Lk; 74.25.Ha; 75.30.C; 61.10.Nz(La, Ag)–(Mn, Co)–O; Mixed valency; Third harmonic ac susceptibility; Ferromagnetism; Spin-glass
Temporal and preparation effects in the magnetic nanoparticles of Apis mellifera body parts
Keywords: + 76.50. + g; 87.90.+y; 76.50.+g; 75.50.Gg; 61.46.DfMagnetic material; Conservation; Apis mellifera; FMR
Damping constant of Co/Pt multilayer thin-film media
Keywords: + 76.50. + g; 76.50.+g; 75.50.Ss; 75.70.CnFerromagnetic resonance; Damping constant; Co/Pt multilayer thin film
Mechanisms of enhancing magnetic properties of Zn1−xCoxO films prepared by the sol–gel method
Keywords: + 76.50. + g; 75.50.Pp; 75.60.−d; 76.50.+g; 75.70.−iA1. Point defects; A2. Growth from solutions; B1. Zinc compounds; B2. Magnetic materials; B2. Semiconducting II–VI materials
Ab initio prediction of half-metallic ferromagnetism in Zn(TM)O2 (TM=Cr, Mn, Fe, Co, Ni) compounds
Keywords: + 76.50. + g; 71.15.Nc; 71.20.Be; 71.15.Ap; 71.15.Mb; 75.30.Hx; 76.50.+g; 78.55.EtTotal energy and cohesive energy calculation; II–VI Semiconductor; Atomic sphere approximation (ASA); Local density approximation (LDA); Ferromagnetic; Transition metal; Magnetic impurity
Ferromagnetic resonance in an ensemble of nanoparticles with randomly distributed anisotropy axes
Keywords: + 76.50. + g; 75.30.Gw; 76.50.+g; 81.07.BcMagnetic nanoparticles; Ferromagnetic resonance; Anisotropy
Microwave absorption properties of the core/shell-type iron and nickel nanoparticles
Keywords: + 76.50. + g; 76.50.+g; 75.20.En; 61.46.+w; 75.30.GwIron and nickel nanoparticle; Core/shell structure; Microwave absorption property
Structural and magnetic properties of SrFe12O19 hexaferrite synthesized by a modified chemical co-precipitation method
Keywords: + 76.50. + g; 75.50.Gg; 75.50.Tt; 76.50.+g; 81.20.FwStrontium hexaferrite; Chemical co-precipitation method; Coercivity; Multi-domain
Effective chiral magnetic currents, topological magnetic charges, and microwave vortices in a cavity with an enclosed ferrite disk
Keywords: + 76.50. + g; 41.20.Jb; 76.50.+g; 78.20.Bh; 84.40.Az;
Order-disorder transformation in FePt nanoparticles studied by ferromagnetic resonance
Keywords: + 76.50. + g; 75.75.+a; 75.50.Tt; 75.50.Vv; 75.30.Gw; 75.50.Bb; 76.50.+g; FePt nanoparticles; High anisotropy L10 phase; Ferromagnetic resonance;
Synthesis and magnetic properties of off stoichiometric Laves phase Fe2Nb amorphous alloy
Keywords: + 76.50. + g; 74.25.Ha; 74.70.Ad; 75.50.Bb; 75.60.Ej; 76.50.+g; A. Disordered system; B. Mechanical alloying; C. X-ray diffraction; E. Ferromagnetic resonance (FMR);
Ferromagnetic resonance study of Pr0.5(Ca1âxSrx)0.5MnO3
Keywords: + 76.50. + g; 75.30.âm; 76.30.âv; 76.50.+g; ESR; Phases coexistence; Manganites;
Ferromagnetic resonance in magnetic nanoparticle assemblies
Keywords: + 76.50. + g; 76.50.+g; 75.75.+a; 75.50.−y; 36.40.CgMagnetic properties; Nanoparticles; Electron spin resonance
Magnetic semiconducting anatase TiO2âδ grown on (1 0 0) LaAlO3 having magnetic order up to 880 K
Keywords: + 76.50. + g; 75.50.Dd; 75.50.Pp; 77.55.+f; 85.70.Kh; 61.72.ây; 76.50.+g; 73.50.âh; 73.61.âr; 33.60.Fy; Ferromagnetic materials; Semiconductor magnetic; Titanium compounds; Thin films; Defects; Ferromagnetic resonance; Semiconductor transport; X-ray photoelectron
Phase and amplitude of element-specific moment precession in Ni81Fe19Ni81Fe19
Keywords: + 76.50. + g; 76.50.+g; 76.90.+d; 78.70.CKFerromagnetic alloy; Ferromagnetic resonance; Magnetization dynamics; Time-resolved XMCD
Spin-glass-like magnetic ordering in Zn substituted magnetite magnetic fluids
Keywords: + 76.50. + g; 76.50.+g; 75.50.mm; 75.50.Lk; Magnetic fluids; Electron spin resonance; Spin glass;
Determination of the Landau-Lifshitz damping parameter of composite magnetic fluids
Keywords: + 76.50. + g; 75.50.Mm; 75.40.Gb; 76.50.+g; Magnetic fluid; Complex magnetic susceptibility; Ferrimagnetic resonance;
An investigation of the microscopic and macroscopic properties of magnetic fluids
Keywords: + 76.50. + g; 75.50.Mm; 75.40.Gb; 76.50.+g; Magnetic fluid; Complex magnetic susceptibility; Ferrimagnetic resonance;
A non-integrated type noise suppressor incorporated with a highly resistive Co–Fe–Al–O thin film on a coplanar waveguide transmission line
Keywords: + 76.50. + g; 75.50.Bb; 76.50.+g; 84.40.Az; 85.70.Kh; 41.20.JbMagnetic thin film; Ferromagnetic resonance; Coplanar waveguide transmission line; Electromagnetic noise suppressor
Spin-wave resonance and magnetic anisotropy in FePt thin films
Keywords: + 76.50. + g; 76.50.+g; 75.30.Ds; 75.30.GwFMR; FePt thin films; SWR; Magnetic thin films
Electron magnetic resonance (EMR) in sonochemically prepared doped nano-manganites
Keywords: + 76.50. + g; 75.30.Kz; 76.50.Dd; 76.50.+g; Ferromagnetic and electron paramagnetic resonance; Doped bulk and nanometer sized CMR manganites;
Magnetic and magnetoresistivity properties of nanocrystalline Nd0.7Sr0.3MnO3
Keywords: + 76.50. + g; 75.47.Lx; 76.50.+g; 81.07.âb; 72.15.Rn; CMR material; Nanoparticles; Phase separation and hopping conduction;
Interaction of a nonlinear spin-wave and magnetic soliton in a uniaxial anisotropic ferromagnet
Keywords: + 76.50. + g; 75.75.+a; 05.45.Yv; 76.50.+g; 73.21.Hb; Magnetic soliton; Nonlinear spin-wave; Darboux transformation;
Slot resonator-based electromagnetic bandgap coplanar waveguide and its filter application
Keywords: + 76.50. + g; 76.50.+g; 71.15.Ap; 42.70.Qs; 52.25.MqSlot resonator; Electromagnetic bandgap; Coplanar waveguide; Bandstop filter
Ferromagnetic resonance studies on (Co40Fe40B20)x(SiO2)1−x granular magnetic films
Keywords: + 76.50. + g; 75.30.Gw; 76.50.+g; 76.30.FcMagnetic anisotropies; Ferromagnetic resonance; Granular magnetic films