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1.
ZF, LF and TF SR experiments with antiferromagnetic (AF) ceramical samples La2–x Sr x CuO4–y have been performed in the temperature range 10–300 K. Zero field muon spin polarization functions obtained below the Neel temperature clearly show a nonzero initial precession phase-–0.35 rad. We propose an explanation based on existence of the dynamical magnetic fields on the muon.We thank Drs. A.G. Chistov and A.M. Brjazkalo from RSC Kurchatov Institute for the preparation the #2 La2CuO4–y sample.  相似文献   

2.
The crystallization behaviour of about 60 samples of electrodeposited Fe1–x P x , 0.09<x<0.26, was investigated with DSC and X-ray diffraction. Several subsequenting transformations during heating at 10 K/min were identified. The corresponding transformation temperatures, reaction heats and reaction rates were measured. If the as-deposited samples contain metal-rich crystallites (microcrystalline and partly amorphous material) crystallization starts with primary precipitation of -iron followed by polymorphous crystallization of Fe3P. In amorphous samples these two processes become less important compared with the eutectoid reaction the higher the phosphorus content. In a small concentration range around 19 at% P this transformation is the only one. Above this range the primary crystallization of Fe3P becomes more and more dominant.  相似文献   

3.
Pasquevich  A. F.  Van Eek  S. M.  Forker  M. 《Hyperfine Interactions》2001,136(3-8):351-360
The hyperfine magnetic field at 111Cd impurities substituting iron in the mixed spinels Cd x Fe3−x O4 and Zn x Fe3−x O4 has been determined by means of the Perturbed Angular Correlation technique. Compounds with different concentrations x were investigated as a function of temperature. The possibility of determining the lattice location of probes at octahedral or tetrahedral sites through the magnitude of the electric field gradient is analyzed. The measured hyperfine magnetic field at impurities in tetrahedral sites is discussed in terms of the populations of magnetic ions in the nearest neighbor sites. This revised version was published online in September 2006 with corrections to the Cover Date.  相似文献   

4.
Emission (57Co) M?ssbauer spectra of the aspartic acid—57CoCl2 system were measured at T?=?80?K in frozen aqueous solution and in the form of a dried residue of this solution. The M?ssbauer spectra, besides a weak contribution from after-effects, showed two Fe2?+?/Co2?+? components which were ascribed to octahedrally and tetrahedrally coordinated 57CoII microenvironments in the Asp–cobalt(II) complex. This dual coordination mode may be due to the involvement of the second terminal carboxylic group of aspartic acid in the coordination sphere of Co.  相似文献   

5.
Y2Fe17–x Si x compounds withx=0, 0.5, 1.0, 1.5, 2.0, 2.5 and3.0 were investigated by magnetic measurement andNMR. It is found that with increasing Si content the Curie temperatureT C increases while the average Fe magnetic moment Fe decreases. NMR study indicates that Si preferentially substitute the Fe atoms at 4f sites, which is responsible for the increase ofT C.  相似文献   

6.
The electrical resistivity of amorphous Fe x Pd80–x Si20 alloy has been discussed in terms of extended Ziman theory. The increase in the electrical resistivity of Fe x Pd80–x Si20 has been predicted due to the d-resonance scattering of the conduction electrons by Fe-atoms.Dedicated to Academician Vladimír Hajko on the occasion of his 65th birthday.  相似文献   

7.
Single crystals of iron manganese sulfides Fe x Mn1 ? x S (0.25 ≤ x ≤ 0.29) are experimentally investigated using Mössbauer spectroscopy and x-ray diffraction. The Mössbauer spectra measured at 300 K exhibit a single broadened line characteristic of paramagnets. The isomer shift of this line is equal to 0.92–0.94 mm/s, which is typical of Fe2+ ions in the octahedral position. The quadrupole splitting (0.18–0.21 mm/s) suggests a distortion of the coordination polyhedron of iron ions in the Fe x Mn1 ? x S compounds.  相似文献   

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The structural and magnetic properties of Fe2 ? x Mg x CrO4 chromite synthesized by the ceramic method to receive analogs of natural minerals and to solve the rock magnetism problems are investigated. The dependences of cubic-lattice parameters and magnetic characteristics on composition, with slight deviation from linearity, are obtained. It is established in the course of experiments related to the partial thermal remanent magnetization in weak fields that some compositions are characterized by self-reversal under sample heating to 600°C in air. It is suggested that the self-reversal is caused by a nonuniform distribution of cations in chromite structure and phase transformation under oxidation.  相似文献   

10.
This paper reports on a study of magnetic properties of ordered arrays of ?-In x Fe2 ? x O3 (x = 0.24) nanowires possessing a high room-temperature coercive force of 6 kOe. Lowering the temperature below 190 K brings about a sharp decrease of the coercive force and magnetization of nanowires driven by the magnetic phase transition from the ferrimagnetic into antiferromagnetic phase. The transition is accompanied by a decrease of the magnetic anisotropy constant, which accounts for the anomalous frequency dependence of the position of the maximum in the temperature dependence of dynamic magnetic susceptibility. In the low-temperature phase, a spin-flop transition in the magnetic field of 28 kOe has been observed at T = 2 K. Lines related to the high-temperature hard-magnetic and low-temperature phases have been identified in electron spin resonance spectra of the nanowires. A line lying near zero magnetic field and evolving from the nonresonant signal related to the microwave magnetoresistance of the sample has also been detected.  相似文献   

11.
Mössbauer and infrared studies were made on samples of the ferrite system Co1–xCdxFe2O4 x=0.0, 0.1, 0.3, 0.5, 0.7, 0.9 and 1. Mössbauer spectra were taken at room temperature. The spectra of the samples withx0.7 showed well defined Zeeman patterns and they have been analyzed with two components, one due to A-site Fe3+ ions, and the other due to B-site Fe3+ and Fe2+ ions. The pattern due to B-site appeared to be composite and an explanation is given. The spectra withx=0.9 and 1 showed only a quadrupole splitting. The effect of cadmium substitution on the various hyperfine interactions has been discussed and the cationic distribution has been deduced for all values ofx. Far infrared spectra of the ferrite samples in the range 200–700 cm–1 were reported. Four bands were observed: the high frequency bandv 1 is assigned to tetrahedral complexes, and the low frequency bandv 2 to octahedral complexes, a small bandv 3 is due to Co2+-O2– complexes andv 4 is assigned to the lattice vibration of the system. The splitting occurred in thev 1 andv 2 bands atx=0.9 and inv 2 atx=1, indicating the presence of Fe2+ ions in octahedral sites.  相似文献   

12.
Different chemical and/or geometrical orders were found in melt-spun DyMn6???x Ge6???x Fe x Al x with x = 2.5 and 3 having fully amorphous and mixed (crystalline and amorphous) structure, respectively. Thermal variations in magnetization M from liquid helium up to room temperature for both samples are similar. Magnetization value at zero field cooled curve reaches about 0.1 μB per formula unit at 2 K and then increases. Two maxima are visible, the first at 50 K (a sharp effect) and the second very broad ranging from 150 to 200 K. 57Fe Mössbauer spectrometry investigation revealed a remaining magnetic component in addition to a prevailing quadrupolar feature. Application of a weak external magnetic field causes an increase in the mean hyperfine magnetic field B hyp and the volume fraction of magnetic component. This observation was confirmed by results of M(T), M(H) and AC magnetic susceptibility measurements. In short-range ordered crystallographic zones characteristic of melt-spun DyMn6???x Ge6???x Fe x Al x (x = 2.5, 3) alloys, the related magnetic ordering, called the mictomagnetism or the cluster spin glass appears.  相似文献   

13.
The magnetic properties of Fe1 ? x Co x B and (Fe1 ? x Co x )2B disordered compounds were investigated using first-principles calculations of the electronic structure in the framework of the density functional theory with the Korringa-Kohn-Rostoker method. The concentration dependences of the magnetic moments and the electron density were calculated for the Fe1 ? x Co x B solid solutions. The results obtained were used to analyze in detail and to interpret the transition from a magnetic phase to a nonmagnetic phase, which was previously revealed from the experiments in the compounds under investigation. The performed analysis of the calculated hyperfine fields induced by the electronic shells at the iron and cobalt atoms in the (Fe1 ? x Co x )2B borides made it possible to explain the experimentally observed magnetic anisotropy.  相似文献   

14.
The Mössbauer measurements performed on Fe100–x Gd x thin films and on Fe80–x Gd x B20 both as thin films and ribbons show a dependence of the spins orientation and Hhyp versus temperature, Gd content and preparation conditions. Increasing the Gd content, the initial low anisotropy disappears and Hhyp decreases. A sharp increase of the anisotopy with temperature in ribbons with low Gd concentration is evidenced.  相似文献   

15.
This paper reports on the results of investigations of the thermal properties and thermal conductivity of single crystals of homogeneous solid solutions Fe x Mn1 ? x S with a cubic NaCl structure, which have been prepared by the cation substitution for divalent manganese ions in manganese monosulfide. It has been revealed that the heat capacity and thermal conductivity exhibit anomalies in the range of the magnetic transition. The cation substitution is accompanied by an increase in the phase transition temperature.  相似文献   

16.
Solid solutions in the (Mn1 ? x Fe x )1.68Sn system (x ≤ 0.5) with a Ni2In-type structure are synthesized by the solid-phase reaction method in a stepwise temperature regime. The unit cell parameters a and c decrease with an increase in the iron concentration in the alloys and become equal to a = 0.430 nm and c = 0.538 nm for the (Mn0.5Fe0.5)1.68Sn alloy. A superstructure with the unit cell parameters a ss = 3a and c ss = c is revealed in alloys of the system under investigation. The specific magnetization of the alloys increases nonlinearly from 53 G cm3 g?1 in the Mn1.68Sn alloy to 72 G cm3 g?1 in the (Mn0.5Fe0.5)1.68Sn solid solution. The Curie temperature changes from 270 K in the initial alloy of the composition Mn1.68Sn to 365 K in the alloy of the composition (Mn0.5Fe0.5)1.68Sn. All solid solutions in the (Mn1 ? x Fe x )1.68Sn (x ≤ 0.5) system exhibit metallic conductivity in the temperature range from 77 to 450 K.  相似文献   

17.
The magnetism of the colossal magnetoresistance material FeCr2S4 was studied through substitution by nonmagnetic element Cd. With the increase of Cd content, the high-field magnetization measured at 5 K increases, demonstrating a ferromagnetic Cr–Cr interaction in CdCr2S4. As comparing with the anti-ferromagnetic material ZnCr2S4, it is deduced that the ferromagnetic interaction in CdCr2S4 is favored by its larger Cr–Cr distance. On the other hand, due to Cd substitution, the low-field magnetization irreversibility between zero-field-cooling and field-cooling magnetization weakens with the increase of Cd content and disappears at last when x = 1 in the Fe1?x Cd x Cr2S4 (0 ≤ x ≤ 1.0) system. By taking account of the single-ion anisotropy of the ferrous ion on the tetrahedral site, the picture of irreversible magnetic behavior induced by magnetic anisotropy is examined.  相似文献   

18.
High-frequency (236 GHz) electron paramagnetic resonance (EPR) studies of Fe3+ ions at 255 K are reported in a Sn1?x Fe x O2 powder with x = 0.005, which is a ferromagnetic semiconductor at room temperature. The observed EPR spectrum can be simulated reasonably well as the overlap of spectra due to four magnetically inequivalent high-spin (HS) Fe3+ ions (S = 5/2). The spectrum intensity is calculated, using the overlap I(BL) + (I(HS1) + I(HS2) + I(HS3) + I(HS4)) × exp(?0.00001B), where B is the magnetic field intensity in Gauss, I represents the intensity of an EPR line (HS1, HS2, HS3, HS4), and BL stands for the baseline (the exponential factor, as found by fitting to the experimental spectrum, is related to the Boltzmann population distribution of energy levels at 255 K, which is the temperature of the sample in the spectrometer). These high-frequency EPR results are significantly different from those at X-band. The large values of the zero-field splitting parameter (D) observed here for the four centers at the high frequency of 236 GHz are beyond the capability of X-band, which can only record spectra of ions with much smaller D values than those reported here.  相似文献   

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