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1.
B. Strocka G. Bartels R. Spohr 《Applied Physics A: Materials Science & Processing》1980,21(2):141-149
The effect of high-energy heavy ion bombardment on the lattice parameter of single crystal garnets is investigated. Lattice
expansion normal to the surface corresponding to lateral compressive strain is observed via x-ray reflection topography and
rocking curve analysis using a double-crystal diffractometer. Studied are (111) garnet wafers of differing composition and
epitaxial ferrimagnetic iron garnet films on pure and MgZr-substituted (111) Gd3Ga5O12 substrates. Using132Xe and208Pb ions of 1.4MeV/nucleon specific energy, the lattice expansion increases approximately linearly with dose over several orders
of magnitude. The specific lattice parameter change is approximately 10−14 per ion per cm2 for132Xe ions. A triple epitaxial film is used to obtain strain depth profiles 相似文献
2.
The phenomenon of giant intrinsic magnetic hardness is investigated in compounds R1−x
Sm
x
Co2Ni3 with R=Y, Pr, Gd, Tb, Er. Partial Er substitution for Sm actually increases magnetic hardness while all other substitutions
decrease magnetic hardness. The strength of coercivity is thus dependent on both the sign and magnitude of the crystal field
interaction. The temperature dependence of coercivity is complex in the case of Pr substitution as a result of competing effects
from thermal activation and a decrease in anisotropy at low temperatures.
This study has been supported by a grant from the National Science Foundation. 相似文献
3.
H. Oesterreicher F. T. Parker M. Misroch 《Applied Physics A: Materials Science & Processing》1978,16(2):185-189
Giant low temperature intrinsic magnetic hardness is observed in structurally homogeneous CaCu5 type compounds RFe5−x
Ni
x
. In SmFe5−x
Ni
x
, this magnetic hardness peaks approximately at a composition SmFe0.2Ni4.8, with an extrapolated coercive force of 230 kOe at absolute zero. The transition metal sublattice is not anisotropic. Thus,
the rare earth alone creates giant coercivity. Only compounds withc-axis preference exhibit substantial magnetic hardness (Sm, Er, Tm). Partial substitution of a tetravalent rare earth to produce
crystal field anisotropy fluctuations apparently increases coercivity somewhat in the axis-preference compound SmFeNi4, but has no effect in the plane-preferred compound TbFeNi4. 相似文献
4.
The frequency and the amplitude of the driving AC current dependence on the harmonic behavior of the giant magneto-impedance (GMI) voltage of Co-rich amorphous wire have been studied. Single-peak, two-peak and three-peak behavior in the GMI characteristics was studied with the change of amplitude and frequency of the AC current. GMI ratio was calculated from the first harmonic signals which were initially increased and then decreased monotonically with the increase of frequency (f) and the amplitude (IAC) of the driving current. The response of the GMI voltage was found non-linear with the generation of higher harmonics at higher amplitude of the driving current. The second and third harmonic signals were also evaluated and their dependence on the driving current amplitude and frequency were presented in the paper. The experimental results were analyzed using single domain rotational model. The voltage harmonics were calculated through Fourier transform of the time derivative of the estimated circular magnetization of the sample. 相似文献
5.
C.H. Chen H.H. Hsieh D.C. Yan J.J. Kai 《Journal of magnetism and magnetic materials》2009,321(9):1130-1132
Using Mn+ implantation following ion beam-induced epitaxial crystallization (IBIEC) annealing, high Curie temperature ferromagnetic (Ga,Mn)As thin film was fabricated. The crystalline quality of the Mn+ implanted layer was identified by X-ray diffraction (XRD) and transmission electron microscopy (TEM). A clear ferromagnetic transition at Tc 253 K was observed by magnetization vs. temperature measurement. We infer that IBIEC treatment is a useful method not only for the low-temperature annealing of (Ga,Mn)As thin films but also for other dilute magnetic semiconductor (DMS) samples. 相似文献
6.
Asymmetric Magnetization Reversal Probed by Recoil Loop Measurements inan Exchange Biased La0.67Sr0.33MnO3/La0.33Ca0.67MnO3 Bilayer Film 下载免费PDF全文
We exploit the recoil loop measurements to study La0.07 Sr0.33 Mn O3/La0.33 Ca0.67 Mn O3 bilayer film. the asymmetric magnetization reversal in an exchange-biased It is found that the recoil curve encloses a marked area only in the second quadrant of the hysteresis loop, and the recoil susceptibility in the descending branch of the major loop is evidently higher than that in the ascending branch. The study indicates that the exchange anisotropy of a unidirectional nature and an orientation deviated from the easy axis of the ferromagnetic layer plays a crucial role in creating the reversal asymmetry. 相似文献
7.
Fe polycrystalline nanowires were electrodeposited in nanoporous anodized alumina membranes. Their magnetic properties were studied at 10 K. The behavior of the isothermal remanence Mr and the demagnetization remanence Md was determined. The corresponding ΔM plot revealed the character demagnetizing of the dominant interactions. A simple analysis suggests that curling is the reversal magnetization mode in these samples. The forms of the Mrev(Mirr)Hi curves were different from those encountered until now, and it seems that these forms are associated with the curling reversal mode. 相似文献
8.
P. Mallick S. Majumder D.C. Agarwal D.K. Avasthi N.C. Mishra 《Applied Surface Science》2009,256(2):521-523
NiO nanoparticle thin films grown on Si substrates were irradiated by 107 MeV Ag8+ ions. The films were characterized by glancing angle X-ray diffraction and atomic force microscopy. Ag ion irradiation was found to influence the shape and size of the nanoparticles. The pristine NiO film consisted of uniform size (∼100 nm along major axis and ∼55 nm along minor axis) elliptical particles, which changed to also of uniform size (∼63 nm) circular shape particles on irradiation at a fluence of 3 × 1013 ions cm−2. Comparison of XRD line width analysis and AFM data revealed that the particles in the pristine films are single crystalline, which turn to polycrystalline on irradiation with 107 MeV Ag ions. 相似文献
9.
Highly oriented films of ∼6 μm in thickness consisting of the Nd2Fe14B compound phase were obtained by a three-dimensional sputtering method at room temperature and the subsequent crystallization by annealing. The c-axis orientation and coercivity of film samples were sensitive to the sputtering parameters and annealing conditions. The optimum temperature and time for annealing were 650 °C and 30 min to show the highest coercivity without any deterioration for the orientation of Nd2Fe14B grains, and furthermore the degree of c-axis orientation was increased by decreasing the Ar gas pressure or input power for sputtering. The resultant film magnets with good magnetic properties of Br=∼1.06 T, HC=∼371 kA/m, and (BH)max=∼160 kJ/m3 were obtained under the optimized parameters for sputtering. 相似文献
10.
A. ?usakowski 《Solid State Communications》2006,137(3):107-109
We propose a model explaining the origin of cubic magnetic anisotropy in disordered semiconductor. We show that the magnetic anisotropy changes with the position of the Fermi energy in the valence band and the level of disorder in the crystal. The method is applied to Pb1−x−ySnyMnxTe and Sn1−xMnxTe ferromagnetic semiconductor crystals. 相似文献
11.
Zan Yao 《Journal of magnetism and magnetic materials》2009,321(3):203-206
Phase structure and magnetic properties of the as-cast and as-milled/annealed SmCo7−xMox (x=0, 0.1, 0.2, 0.3, 0.4) alloys have been systematically studied. It is found that all the as-cast series alloys are composed of the CaCu5-type and Th2Zn17-type phases. Saturation magnetization of the samples decreases with the Mo content increasing. Intrinsic coercivities (iHc) of no more than 0.06 T are observed in these as-cast samples, due to their rather coarse grain microstructures with an average grain size of 50 μm. The as-milled/annealed SmCo7−xMox powders crystallize in the disordered TbCu7-type (1:7) structure with very fine nanograins, and a minor Co3Mo phase appears in the samples with x=0.1-0.4. High iHc (?0.95 T) are achieved in these samples, with a maximum of 1.26 T located at x=0.2, which can be primarily attributed to strong pinning of the domain wall motion at the nanograin boundaries. The temperature coefficient (β) of the iHc is about −0.22%/°C in the temperature range of 25-400 °C for the as-milled/annealed samples. 相似文献
12.
Three series of SmCo5.6Ti0.4 samples were prepared by quenching, melt spinning, and ball milling, respectively. Annealing at different temperatures was carried out for the three series. The influence of the processing routes on the structural and magnetic properties was systematically investigated for this alloy. The as-quenched bulk sample consisted of three phases with a rather coarse grain microstructure. Low intrinsic coercivity (iHc) of 0.12 T was obtained in this sample. While the as-spun ribbons and as-milled/annealed powders showed the CaCu5-type phase (1:5) plus Th2Zn17-type phase (2:17), and the 1:5 phase plus TbCu7-type phase (1:7), respectively, with nanograin microstructure. The iHc of as-spun ribbons and as-milled/annealed (700 °C for 2 h) powders was found to be 0.59 and 2.23 T, respectively. Coercivity mechanism of these as-spun ribbons is mainly of nucleation type. In the as-milled/annealed powders, the network of the nanograin boundaries is believed to provide strong pinning sites for the domain wall movement. 相似文献
13.
Highly ordered Co0.71Pt0.29 alloy nanowire arrays have been fabricated successfully by direct current electro-deposition into the pores of a porous anodic aluminum oxide (AAO) template. SEM and TEM images reveal that the nanowires of array are uniform, well isolated, and parallel to one another. The aspect ratio of nanowires is over 200. XRD and EDS pattern indicates that amorphous Co0.71Pt0.29 structure was formed during electro-deposition. In amorphous sample, magnetocrystal anisotropy is very small, therefore, shape anisotropy plays a dominant role which leads to strong perpendicular anisotropy. High coercivity (Hc=1.7 kOe) and squareness (Mr/Ms) around 0.7 were obtained in the samples when the field was applied parallel to the axis of the nanowires. However, when it changed to polycrystalline structure after annealing, due to the competition of magnetocrystal anisotropy and shape anisotropy, the sample did not display perpendicular anisotropy. 相似文献
14.
Electrodeposition and magnetic properties of Ni nanowire arrays on anodic aluminum oxide/Ti/Si substrate 总被引:1,自引:0,他引:1
Cai-Ling Xu 《Applied Surface Science》2006,253(3):1399-1403
Ni nanowire arrays with different diameters have now been extended to directly fabricate in porous anodic alumina oxide (AAO) templates on Ti/Si substrate by direct current (DC) electrodeposition. An aluminum film is firstly sputter-deposited on a silicon substrate coated with a 300 nm Ti film. AAO/Ti/Si substrate is synthesized by a two-step electrochemical anodization of the aluminum film on the Ti/Si substrate and then used as template to grow Ni nanowire arrays with different diameters. The coercivity and the squareness in parallel direction of Ni nanowires with about 10 nm diameters are 664 Oe and 0.90, respectively. The Ni nanowire arrays fabricated on AAO/Ti/Si substrates should lead to practical applications in ultrahigh-density magnetic storage devices because of the excellent properties. 相似文献
15.
SmCoxTi0.4 (x=6.6, 7.1, 7.6, 8.1) ribbons have been prepared by melt spinning at a wheel speed of 42 m/s, followed by annealing at 750 °C for 2 h. Both as-spun and as-annealed ribbons possess the disordered TbCu7-type (1:7) phase even when the Sm/(Co,Ti) atomic ratio deviates from 1/7. The c/a ratio increases with increasing Co concentration x, but the unit cell volume decreases. The Curie temperatures show above 700 °C, increasing from 707 °C for x=6.6 to 782 °C for x=8.1. The saturation magnetizations increase almost linearly with increasing Co content. The observed magnetic hardening is believed to arise from the high magnetocrystalline anisotropy of the 1:7 phase and the fine nanograin structure. The intrinsic coercivity of 9797 Oe has been obtained in the melt-spun SmCo7.1Ti0.4 ribbons. 相似文献
16.
S.L. Gnatchenko D.N. Merenkov A.N. Bludov V.V. Pishko Yu.A. Shakhayeva M. Baran R. Szymczak V.A. Novosad 《Journal of magnetism and magnetic materials》2006
The magnetization reversal of the bilayer polycrystalline FeNi(50 Å)/FeMn(50 Å) film sputtered in a magnetic field has been studied by magnetic and magneto-optical techniques. The external magnetic fields were applied along the easy or hard magnetization axis of the ferromagnetic permalloy layer. The asymmetry of hysteresis loop has been found. Appreciable asymmetry and the exchange bias were observed only in the field applied along the easy axis. The specific features of magnetization reversal were explained within the phenomenological model that involves high-order exchange anisotropy and misalignment of the easy axes of the antiferromagnetic and ferromagnetic layers. It has been shown that the film can exist in one of three equilibrium magnetic states in the field applied along the easy axis. The transitions between these states occur as first-order phase transitions. The observed hysteresis loop asymmetry is related to the existence of the metastable state. 相似文献
17.
18.
The electronic energy loss of swift heavy ions (MeV/amu) within a solid results in a highly excited cylindrical zone of some
nm in diameter, within which all atoms may be in motion for some tens of ps (transient local melting). After cooling down,
a defect-rich or even amorphous latent track is left in many cases, especially in insulating materials. The resulting property
alterations (density, micro-structure, morphology, phase composition, etc.) have been investigated for many bulk materials,
while only very few experiments have been carried out with thin-film systems. In the present paper, a summary will be given
of our studies on the transport of matter in thin-film packages induced by irradiation with high-energy ions. These is, on
the one hand, atomic mixing at the interfaces, which is especially pronounced in ceramic systems and which seems to occur
by interdiffusion in the molten ion track. On the other hand, we have discovered a self-organisation phenomenon in swift-heavy-ion-irradiated
NiO layers, which at low fluences first showed periodic cracking perpendicular to the projected beam direction. After application
of high fluences, the NiO layer was reorganised in 100-nm-thick and 1-μm-high NiO lamellae of the same separation distance
(1–3 μm) and orientation as found for the cracks. Both effects can be attributed to transient melting of the material surrounding
the ion trajectory.
Received: 11 November 2002 / Accepted: 12 November 2002 / Published online: 4 April 2003
RID="*"
ID="*"Corresponding author. Fax: +49-711/6853-866, E-mail: bolse@ifs.physik.uni-stuttgart.de 相似文献
19.
The first order magnetic phase transition in polycrystalline sample of dysprosium (Dy) has been investigated in detail by dc-resistance vs. temperature (R-T) measurements. Distinct signature of coexistence of two magnetically ordered phases (i.e. ferromagnetic and antiferromagnetic), originating as a result of the metastable behavior associated with the first order phase transition (FOPT) is found near 90 K. By successfully recording the minor hysteresis loops within the hysteretic R-T regime of Dy, a varying degree of phase coexistence in the FOPT is demonstrated. 相似文献
20.
A. di Bona S.F. Contri G.C. Gazzadi S. Valeri P. Vavassori 《Journal of magnetism and magnetic materials》2007
Square magnetic elements with side in the 100–500 nm range have been fabricated using the focused ion beam (FIB) milling technique from a 10 nm thick, single-crystal Fe film, epitaxially grown on MgO(0 0 1). Thanks to the good crystal quality of the film, magnetic elements with well-defined magnetocrystalline anisotropy have been prepared, while the fine control of the size and shape of the magnets allows for the effective engineering of the anisotropic behavior of the magnetostatic energy that determines the so-called configurational anisotropy. Micromagnetic calculations and experiments show that the angular dependence of the transverse susceptibility has a strong dependence on the material parameters as well as on the static applied field. This allows the effective engineering of the total anisotropy of the magnets. 相似文献