Surface-Layer Ferromagnetism and Strong Surface Anisotropy in Ca_<1-x>La_xB_6(x=0.005) Evidenced by Ferromagnetic Resonance : Condensed Matter: Electronic Properties, etc.
スポンサーリンク
概要
- 論文の詳細を見る
In Ca_<1-x>La_xB_6 (x = 0.005) single crystals using 9.6 GHz microwave frequency at room temperature, we observed resonance lines which exhibit sample-shape dependence with respect to their resonance field, linewidth and numbers. A disk-shaped sample showed a single, symmetrical resonance line and a large lower-fleld shift. The resonance field of the disk sample was investigated in detail and exhibits cos^<-1>θ dependence, where θ is the angle between the disk plane and the external magnetic field. This finding leads to the conclusion that the spins are strongly forced to stay in the disk plane by an anisotropy field. The symmetrical resonance line originates from surface spins within the microwave skin depth in a metallic sample. At a higher angle e, the resonance line became antisymmetrical. At the microwave frequency of 24 GHz, the resonance line shape was also antisymmetrical even at θ=0. We conclude that spins in Ca_<0.995>La_<0.005>B_6 exist only within the surface layer of approximately 1.5m thick, and they feel strong surface magnetic anisotropy of an easy plane type.
- 社団法人日本物理学会の論文
- 2000-12-15
著者
-
KUNII Satoru
Department of Physics, Tohoku University
-
Kunii Satoru
Department Of Physics Graduate School Of Science Tohoku University
-
Kunii Satoru
Department Of Physics Faculity Of Science Tohoku University
関連論文
- Anomalous Spin Density Distribution in CeB_6
- High Field Magnetization of GdB_6
- Higher Harmonic Electron Spin Resonance of Eu^ in SmB_6
- Anomalous Magnetization of GdB_6 in High Magnetic Field
- Antiferro-Quadrupole Ordering of CeB_6 Studied by Resonant X-Ray Scattering
- Quadrupole-Strain Interaction in Rare Earth Hexaborides
- Magnetic Phase Diagrams of Kondo Compounds Ce_La_B_6 and Ce_La_B_6
- Low-Temperature Magnetization Study on the Phase IV Ordering in Ce_xLa_B_6 under [111] Uniaxial Pressures(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Interband Optical Spectra of Rare-Earth Hexaborides
- Thermopower of Ce_xRB_6(R=La, Pr and Nd)(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- Far-Infrared Transmission Spectra of SmB_6
- Photoemission, Inverse Photoemission and Optical Studies of Rare-Earth Hexaborides
- Magnetization Study of the Phase Diagram of Ce_xLa_B_6
- Magnetic Phase Diagram of Ce_xLa_B_6 Studied by Static Magnetization Measurement at Very Low Temperatures
- Unusual Enhancement of Magnetization by Pressure in the Antiferro-Quadrupole-Ordered Phase in CeB_6(Condensed matter: electronic structure and electrical, magnetic, and optical properties)
- Antiferro-Multipolar Short Range Order above the Antiferro-Quadrupolar Ordering Temperature in CeB_6
- Crystalline Electric Field Ground State of NdB_6
- Drastic Change of the Magnetic Phase Diagram of Ce_χLa_B_6 between χ=0.75 and 0.5
- Low Energy Electronic State and Optical Phonon In YbB_6
- Comparison between Optical Conductivity Spectrum and Band Structure in LaB_6
- Crystal Structure and Magnetic Anisotropy in the Magnetic Ordered Phases of PrB_6(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Magnetic Properties of Single Crystals of Ce_xLa_B_6
- Electronic Structure of CeB_6 Studied by 3d XPS and High-Resolution 4d-4f Resonant Photoemission
- Acoustic de Haas-van Alphen Effect of LaB_6
- Magnetic Properties in Phase IV of Ce_La_B_6 Studied by Muon Spin Relaxation
- Elastic Properties and Magnetic Phase Diagrams of Dense Kondo Compound Ce_La_B_6(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)
- Trigonal Lattice Distortion and Ferro-Quadrupole Ordering in Phase IV of Ce_xLa_B_6 (x = 0.75 and 0.70)
- Trigonal Lattice Distortion and Ferro-Quadrupole Ordering in Phase IV of Ce_xLa_B_6 (x=0.75 and 0.70)
- Magnetic Phase Diagrams of Ce_xLa_B_6
- Magnetic Phase Diagrams of the Dense Kondo Compounds CeB_6 and Ce_La_B_6
- Electron-Strain Interaction in Valence Fluctuation Compound SmB_6
- Observation of Acoustic de Haas-van Alphen Effect in Heavy Electron Compound CeB_6
- Phonon Structure of LaB_6 by Point-Contact Spectroscopy
- Temperature and Frequency Dependences of ESR in EuB_6 Single Crystal and EuB_6 Bulk Poly-Crystal
- Lattice Dynamics in CeB_6 Studied by Neutron-Scattering and Specific-Heat Measurements
- Intensities and Doublet Separations of Forbidden Transitions in the Paramagnetic Resonance of Mn~ in the II-VI Compounds
- Antiferromagnetic Resonance of Europium Telluride
- "Forbidden" Transition in the Paramagnetic Resonance of Mn^ in ZnTe
- Ferromagnetism vs Paramagnetism and False Quantum Oscillations in Lanthanum-Doped CaB_6 : Condensed Matter: Electronic Properties, etc.
- Oscillatory Magnetostrictions of LaB_6 and PrB_6
- NMR Study of NdB_6 : Condensed Matter: Electronic Properties, etc.
- Anisotropic Magnetic Phase Diagram of PrB_6 Dominated by the O_ Antiferro-Quadrupolar Interaction : Condensed Matter: Electronic Properties, etc.
- Transport Properties in Phase IV of Ce_xLa_B_6 : Condensed Matter: Electronic Properties, etc.
- Metamagnetic Transition in NdB_6 with a Small Magnetic Anisotropy in Low Magnetic Fields
- Transport Properties of NdB_6 Single Crystal under the Magnetic Fields up to 15 T
- Interaction between Kondo States and the Hall Effect of Dense Kondo System Ce_xLa_B_6
- Specific Heat Measurements of Ce_La_xB_6
- Surface-Layer Ferromagnetism and Strong Surface Anisotropy in Ca_La_xB_6(x=0.005) Evidenced by Ferromagnetic Resonance : Condensed Matter: Electronic Properties, etc.
- New Characteristic Kondo Energy by Point-Contact Spectroscopy : II. LOW TEMPERATURE PROPERTIES OF SOLIDS : Heavy Electrons : Experiments
- Temperature and Frequency Dependences of Line Width of Antiferromagnetic Resonance in Europium Telluride
- 21aWG-5 Ferro-Quadrupole ordering in phase IV of Ce_La_B_6
- Anomalous Spin Density Distribution in CeB6
- Stabilization of Phase IV in CexLa1-xB6 ($x=0.4, 0.5$) by Pr and Nd Ion Dopings
- The 11B Nuclear Magnetic Resonance in CeB6 Single Crystal
- The ^B Nuclear Magnetic Resonance in CeB_6 Single Crystal
- Crystal Structure and Magnetic Anisotropy in the Magnetic Ordered Phases of PrB_6(Condensed Matter : Electronic Structure, Electrical, Magnetic and Optical Properties)