共查询到20条相似文献,搜索用时 15 毫秒
1.
《Journal of magnetism and magnetic materials》2002,251(2):220-228
Effects of the introduction of a Pd/Si dual seedlayer on the microcrystalline structure and magnetic properties of [Co/Pd]n multilayered perpendicular magnetic recording media were investigated. The Pd/Si dual seedlayer was composed of a Pd upper seedlayer and a Si under seedlayer. The Pd upper seedlayer with a thickness of up to 10 nm markedly increased the coercivity of [Co/Pd]n multilayered media in the direction perpendicular to the film surface. The highest coercivity of 7.8 kOe was obtained for the [Co/Pd]10 medium with a Pd (10 nm)/Si (100 nm) dual seedlayer. The Pd upper seedlayer not only facilitated the formation of regular interfaces between the Co and Pd layers, but also reduced the thickness of the deteriorated initial layer in the [Co/Pd]n multilayer, resulting in enhancement of the magnetic anisotropy field. The [Co/Pd]n multilayered medium with the Pd/Si dual seedlayer exhibited weak intergranular exchange coupling between [Co/Pd]n grains, which led to excellent read–write characteristics. 相似文献
2.
H. A. M. de Gronckel C. H. W. Swüste K. Kopinga W. J. M. de Jonge 《Applied Physics A: Materials Science & Processing》1989,49(5):467-472
The microscopic properties of Co/Pd multilayers were studied by ferromagnetic and nuclear magnetic resonance. The anisotropy of the layer is found to decrease for decreasing Co sublayer thickness and a switching of the magnetic preferential direction occurs below 8Å. The anisotropy is also a function of the Pd layer thickness: below 20Å it increases with decreasing thickness. This is attributed to a decrease in the Pd/Co interface contribution to the anisotropy. Hyperfine field spectra show the layers with [111] texture to be mainly polycrystalline fcc. The spectra shift to lower hyperfine fields upon decreasing Co sublayer thickness. This is attributed to a decrease in the magnetic moment caused by stretching of the Co lattice due to neighbouring Pd atoms. The results were checked by experiments on almost single phased [100] fcc Co/Pd multilayers. The similarity with the results on the [111] layers suggests that the expansion of the Co lattice is nearly isotropic. 相似文献
3.
We report on properties of layered coherent structures of Pd and Co, prepared by RF sputtering. X-ray diffraction analysis characterizes these films as having a well-ordered periodic structure (periods λ in the range 10A < λ < 80A) of stacked (111) planes of fcc Co and Pd. Room temperature magnetic properties were measured with a vibrating sample magnetometer. All films are ferromagnetic, with a magnetic moment in excess of that attributable to Co. This excess, which increases as λ decreases, is interpreted as induced ferromagnetism in the Pd layers. The in-plane magnetization is harder for smaller values of λ and appears to depend mainly on the thickness of the Co layers. The in-plane electrical resistivity was measured in the range 2K–300K by a four-electrode method. Below 40K, the resistivity is dominated by residual resistivity; above this temperature, its rise is attributed mainly to the resistivities of bulk Pd and Co. The λ-dependence of the resistivity is described by a model of interfacial scattering of electrons. Evidence for the presence of coherency strains at small λ is present in the x-ray data, the magnetization behavior, as well as in the interfacial scattering mechanism deduced from the analysis of the resistivity. 相似文献
4.
Hiroaki Chihaya Masao Kamiko Toru Kuzumaki Ryoichi Yamamoto 《Solid State Communications》2006,139(4):170-175
Effects of Co seed layer on the structural and magnetic properties of Co/Pd multilayers have been studied. Reflection high-energy electron diffraction measurements showed a possible control of the crystal orientation of Pd buffer layer from polycrystalline to face-centered cubic (111) orientation when using Co seed layer. Additionally, atomic force microscopy observations confirmed the ability of Co seed layer to flatten the Pd buffer layer drastically. In fact, the usage of Co seed layer has decreased the root-mean-square roughness from 2.3 to 0.23 nm. As for controlling the structural properties of Pd buffer layer, the effective perpendicular magnetic anisotropy constant was enhanced, mainly by the improvement of surface anisotropy. Electronic states of α-Al2O3(0001)/metal interface obtained by electron energy loss spectroscopy proved that these differences were the fruit of the interaction between the metal layer and oxygen atoms on the Al2O3(0001) surface. 相似文献
5.
M. E. Steblii A. V. Ognev Yu. P. Ivanov E. V. Pustovalov V. S. Plotnikov L. A. Chebotkevich 《Bulletin of the Russian Academy of Sciences: Physics》2010,74(10):1407-1409
The magnetic properties of Pd/Fe/Pd films and nanodisks with diameter 600 nm fabricated by focused ion beam milling were investigated. A fourth-order anisotropy of magnetization reversal in nanodisk arrays was observed during the experiment. It was demonstrated that the anisotropy occurs due both to the breaking of symmetry of dipole-dipole interactions at array boundaries and to the initiation of inhomogeneous configurations of magnetization in nanodisks. 相似文献
6.
Kousuke Tobari Mitsuru OhtakeKatsumasa Nagano Masaaki Futamoto 《Journal of magnetism and magnetic materials》2012,324(6):1059-1062
Co/Pd epitaxial multilayer films were prepared on Pd(111)fcc underlayers hetero-epitaxially grown on MgO(111)B1 single-crystal substrates at room temperature by ultra-high vacuum RF magnetron sputtering. In-situ reflection high energy electron diffraction shows that the in-plane lattice spacing of Co on Pd layer gradually decreases with increasing the Co layer thickness, whereas that of Pd on Co layer remains unchanged during the Pd layer formation. The CoPd alloy phase formation is observed around the Co/Pd interface. The atomic mixing is enhanced for thinner Co and Pd layers in multilayer structure. With decreasing the Co and the Pd layer thicknesses and increasing the repetition number of Co/Pd multilayer film, stronger perpendicular magnetic anisotropy is observed. The relationships between the film structure and the magnetic properties are discussed. 相似文献
7.
Perpendicular magnetic anisotropy of Pd/Co2MnSi/NiFe2O4/Pd multilayers on F-mica substrates 下载免费PDF全文
Pd/Co2MnSi(CMS)/NiFe2O4(NFO)/Pd multilayers were fabricated on F-mica substrate by magnetron sputtering.The best PMA performance of the multilayer structure Pd(3 nm)/CMS(5 nm)/NFO(0.8 nm)/Pd(3 nm)was obtained by adjusting the thickness of the CMS and NFO layers.F-mica substrate has a flatter surface than glass and Si/SiO2 substrate.The magnetic anisotropy energy density(Keff)of the sample deposited on F-mica substrates is 0.6711 Merg/cm3(1 erg=10-7 J),which is about 30%higher than that of the multilayer films deposited on glass(0.475 Merg/cm3)and Si/SiO2(0.511 Merg/cm3)substrates,and the RHall and HC are also significantly increased.In this study,the NFO layer prepared by sputtering in the high purity Ar environment was exposed to the high purity O2 atmosphere for 5 min,which can effectively eliminate the oxygen loss and oxygen vacancy in NFO,ensuring enough Co-O orbital hybridization at the interface of CMS/NFO,and thus effectively improve the sample PMA. 相似文献
8.
9.
R. S. Iskhakov N. A. Shepeta S. V. Stolyar L. A. Chekanova V. Yu. Yakovchuk 《JETP Letters》2006,83(1):28-32
The spectrum of standing spin waves has been detected by the ferromagnetic resonance method in NiFe(740 Å)/Cu/NiFe(740 Å) three-layered film structure in the perpendicular configuration for the copper thickness d Cu ≤ 30 Å. At thicknesses d Cu > 30 Å, the resonance absorption curve is a superposition of two spinwave resonance spectra from individual ferromagnetic NiFe layers. For Co/Pd multilayer films, united spinwave responance spectra have also been observed at thicknesses of the paramagnetic palladium layer up to d Pd < 30 Å. The partial exchange stiffness has been calculated for a spin wave propagating across the Pd layer (A Pd = 0.1 × 10?6 erg/cm). This value is always positive (up to the critical thickness of the palladium interlayer d Pd < d c) or equal to zero (d Pd > d c). 相似文献
10.
Zoë Kugler Volker DrewelloMarkus Schäfers Jan SchmalhorstGünter Reiss Andy Thomas 《Journal of magnetism and magnetic materials》2011,323(2):198-201
Temperature- and bias voltage-dependent transport measurements of magnetic tunnel junctions (MTJs) with perpendicularly magnetized Co/Pd electrodes are presented. Magnetization measurements of the Co/Pd multilayers are performed to characterize the electrodes. The effects of the Co layer thickness in the Co/Pd bilayers, the annealing temperature, the Co thickness at the MgO barrier interface, and the number of bilayers on the tunneling magneto resistance (TMR) effect are investigated. TMR-ratios of about 11% at room temperature and 18.5% at 13 K are measured and two well-defined switching fields are observed. The results are compared to measurements of MTJs with Co-Fe-B electrodes and in-plane anisotropy. 相似文献
11.
12.
Co/Ti multilayers with wedge-shaped Co or Ti sublayers were prepared using UHV (5×10−10 mbar) DC/RF magnetron sputtering. The planar growth of the Co and Ti layers was confirmed in situ by X-ray photoelectron spectroscopy. Cobalt sublayers grow on sufficiently thick titanium sublayers in the soft magnetic nanocrystalline phase up to a critical thickness dcrit3.0 nm. For a thickness greater than dcrit, the Co sublayers undergo a structural transition to the polycrystalline phase with much higher coercivity. Furthermore, for the Co/Ti multilayers with nanocrystalline Co sublayers with dCo=2.7 nm we have observed a significant drop of the coercivity — typically from Hc3.5 kA/m to Hc0.2 kA/m — for Ti thickness dTi0.35 nm. The above effect could be explained by the existence of a minimum Ti sublayer thickness (dmin0.35 nm), which is required for the nanocrystalline growth of Co, and/or the formation of quasi-continuous non-magnetic layers for dTidmin giving rise to a decrease of the exchange energy between Co sublayers. Magnetic domains and walls studies revealed the structural transitions of the Co sublayers. 相似文献
13.
M. Schöck C. Sürgers H. v. Löhneysen 《The European Physical Journal B - Condensed Matter and Complex Systems》2000,14(1):1-10
The superconducting and magnetic properties of Nb/Pd1-xFex/Nb triple layers with constant Nb layer thickness dNb=200 ? and different interlayer thicknesses 3 ?≤ dPdFe ≤ ? are investigated. The thickness dependence of the magnetization and of the superconducting transition temperature shows
that for small iron concentration x the Pd1-xFex layer is likely to be in the paramagnetic state for very thin films whereas ferromagnetic order is established for x ≥ 0.13.
The parallel critical field Bc2||(T){B_{c2||}}(T) exhibits a transition from two-dimensional (2D) behavior where the Nb films are coupled across the interlayer, towards a
2D behavior of decoupled Nb films with increasing dPdFeand/or x. This transition allows a determination of the penetration depth xF{\xi _F} of Cooper pairs into the Pd1-xFex layer as a function of x. For samples with a ferromagnetic interlayer xF{\xi _F} is found to be independent of x. 相似文献
14.
Granular C/Co/C films have been prepared by magnetron sputtering from C and Co onto glass substrates at room temperature and subsequent in situ annealing. It has been found that the structure and magnetic properties of the C/Co/C films depend strongly on the Co layer thickness. Vibrating sample magnetometer measurements indicate that the in-plane coercivities reach maximum in 20 nm Co thickness of both as-deposited and annealed films. The squareness ratio of annealed films was more than 0.8. X-ray diffraction shows that majority Co nanograins are formed as the hexagonal-close-packed (HCP) structure in 20 nm Co thickness with annealing at 400 °C. Scanning probe microscope was used to scan surface morphology and magnetic domain structures. The values of the surface roughness were lower than 0.6 nm in all annealed samples. The average magnetic cluster size was estimated to be about 10 nm in annealed 20 nm Co thickness films. 相似文献
15.
Yukai An Lingshen Duan Tao LiuZhonghuan Wu Jiwen Liu 《Applied Surface Science》2011,257(17):7427-7431
[Co(30 Å)/Pt(x Å)]20 multilayers with the Pt layer thicknesses varying from 5 Å to 20 Å were characterized structurally by high angle X-ray diffraction, X-ray reflectivity, X-ray absorption spectroscopy and magnetically by X-ray magnetic circular dichroism. It is found that the structure and magnetic properties of Pt have a strong correlation with the Pt layer thickness. The 20 Å thickness Pt layer is not almost influenced by the adjacent Co layer and the nearest neighbors are dominated by Pt-Pt shells. With decreasing Pt layer thickness, the nearest neighbors are gradually dominated by Pt-Co shells and the Pt-Co intermixing regions also remarkable increase at the interfaces, especially for the 5 Å thickness Pt layer. The orbital and spin magnetic moments as well as the ratio morb/mspin all decrease systematically with increasing Pt layer thickness, indicating that the interface atoms are polarized by direct Pt-Co hybridization, but that the adjacent layers are polarized by Pt-Pt interactions. 相似文献
16.
R.D. Noce N. Barelli P.T.A. Sumodjo D.R. Cornejo A.V. Benedetti 《Journal of magnetism and magnetic materials》2006
The effect of the bath pH on the electrodeposition of nanocrystalline Pd–Co alloys and on their magnetic properties was studied. The pH practically did not affect the alloy composition. Conversely, the pH showed a significant influence on the shape and size of crystallites. Two different crystallites morphology were observed depending on the bath pH. A crystallite size ranging from 18.2 to 30 nm was obtained from X-ray diffractometry (XRD) patterns using the Scherrer's method. Also from the XRD patterns the lattice strain percentage was calculated and correlated with the residual stress, which probably originated during the film electrodeposition on the substrate. Some alloy magnetic properties showed small variations. In contrast, high and unexpected coercivities were obtained reaching a maximum of 1.69 kOe at pH 5.5. The high coercivity values were attributed to the presence of residual stress at the film–substrate interface, which increased as the bath pH and crystallite size decrease, both of them contributing simultaneously to increase in coercivity. 相似文献
17.
T. Ishiguro S. Yamada K. Katagari Y. Ichinose 《Journal of magnetism and magnetic materials》1993,120(1-3):366-368
With regard to sputtered Co (50 nm)/Cr (thickness: TCr = 0–600 nm) bilayers on glass substrates, the (110) pole density distributions (PDD) of the bcc Cr layer and the (00·2) PDD of the post-deposited hcp Co layer were quantitatively measured by X-ray diffraction. It was found that with increasing TCr, a transition of preferred orientation (PO) occured in the Cr layer, affecting the PO of the Co layer and its magnetic properties. 相似文献
18.
U. Pustogowa C. Blaas C. Uiberacker J. Zabloudil P. Weinberger L. Szunyogh C. Sommers 《The European Physical Journal B - Condensed Matter and Complex Systems》2000,16(4):653-658
The magnetic properties of (ConPdm)r superstructures on Pd(100) and Pd(111) are evaluated using the fully-relativistic spin-polarized screened Korringa-Kohn-Rostoker
method. It is found that only in the case of a Pd(111) substrate such superstructures exhibit perpendicular magnetism, while
on a Pd(100) substrate the magnetization is oriented in-plane. Also investigated is the effect of interdiffusion in repeated
superstructures. By using the inhomogeneous coherent potential approximation (CPA) for layered systems the effect of ordering
into (repeated) superstructures can be described in an ab-initio-like manner. It is found that already small amounts of interdiffusion can be decisive for the actual value of the magnetic
anisotropy energy.
Received 3 November 1999 and Received in final form 18 January 2000 相似文献
19.
Specific features of magnetic properties of three-component magnetic superlattices based on Fe/Co/Mo
S. D. Antipov G. E. Goryunov A. P. Krasheninnikov V. A. Senina G. V. Smirnitskaya P. N. Stetsenko 《Bulletin of the Russian Academy of Sciences: Physics》2007,71(11):1613-1614
Synthesis of three-component magnetic superlattices based on the Fe/Co/Mo system by cathode sputtering in an electron-oscillating discharge and their complex investigations have been performed for the first time. The fields have been investigated by X-ray diffraction, vibrational magnetometry, and Mössbauer spectroscopy with the use of completely computerized systems. Oscillations of the main magnetic parameters with a change in the Mo thickness and giant spontaneous magnetization have been found. The properties of three-component superlattices are compared with those of the analogous system based on Fe/Mo. 相似文献