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1.
Magnetometric and neutron diffraction studies of polycrystalline NdCo2GE2, ErCo2Ge2 and PrFe2Ge2 compounds were carried out in the temperature range between 4.2 and 300 K. All samples are antiferromagnetic with Néel temperature 26.5, ~ 4.2 and 13 K, respectively. The RECo2Ge2 compounds have collinear antiferromagnetic order of +?+? type. For PrFe2Ge2 a sinusoidal magnetic structure is observed. Magnetic moment is localized on RE atoms only and is equal to that of RE3+ free ion value. In ErCo2Ge2 the magnetic moment of Er atoms is perpendicular to the c-axis, whereas for remaining compounds it is parallel to the c-axis.  相似文献   

2.
Neutron diffraction studies and magnetic measurements on the compounds TbNi2Si2 (1), HoCo2Si2 (2) and TbCo2Si2 (3) revealed a collinear antiferromagnetic order below TN = 10 ± 1 K (1), TN = 13 ± 1 K (2) and TN = 30 ± 2 K (3) with the rare earths moments oriented along the c-axis [m0 = 8.8 ± 0.2 μB (1), m0 = 8.1 ± 0.2 μB (2), m0 = 8.8 ± 0.2 μB (3)] and the corresponding wavevector are k = [12120] (1) andk = [ 0 0 1] (2) (3). The magnetic structure of the compounds HoCo2Si2 and TbCo2Si2 consists of ferromagnetic layers perpendicular to the c-axis coupled antiferromagnetically (+?+?) while for TbNi2Si2 the ordering within (0 0 1) plane is antiferromagnetic and the planes (0 0 1) are indeed decoupled.  相似文献   

3.
Physical properties of NdAu2Ge2, crystallising with the tetragonal ThCr2Si2-type crystal structure, were investigated by means of magnetic, calorimetric and electrical transport measurements as well as by neutron diffraction. The compound exhibits antiferromagnetic ordering below TN=4.5 K with a collinear magnetic structure of the AFI-type. The neodymium magnetic moments are parallel to the c-axis and amount to 1.04(4) μB at 1.5 K. The observed magnetic behaviour is strongly influenced by crystalline electric field effect.  相似文献   

4.
TmCu2Ge2 compound crystallizes in the tetragonal ThCr2Si2-type crystal structure. The neutron diffraction reveals the presence of an incommensurate antiferromagnetic order below TN=2.5 K. The Tm magnetic moment of 5.0(1) μB at 0.47 K is parallel to the c-axis. The order is described by the propagation vector k=[kx, kx, 0], where kx=0.117(3). The increase of the values of the components kx near the Néel temperature is observed.  相似文献   

5.
The magnetic properties of the PrPd2Ge2 and NdPd2Ge2 compounds have been investigated by magnetic measurements, specific heat measurements and neutron diffraction experiments. The PrPd2Ge2 compound orders antiferromagnetically below TN=5.0(2) with an original modulated magnetic structure characterized by a magnetic cell three times larger than the chemical one by tripling of the c parameter. The palladium atom is non magnetic and the Pr moments are parallel to the c-axis with a value of ≈2.0 μB at 2 K. The specific heat measurements clearly detect a low temperature transition for the NdPd2Ge2 compound, interpreted as a Nd sublattice antiferromagnetic ordering below 1.3(2) K.  相似文献   

6.
A small polycrystalline ingot sample of NpCo2Si2 (weight ≈ 1.5 g) has been studied by neutron diffration between 2 and 160 K on the multi-detector D1B of ILL, Grenoble. At 100 K, the crystal structure is body-centered tetragonal (space group 14/mmm) with a = 3.886 Å and c =9.649 Å. Below TN = (44 ± 2) K, seven superlattice lines are observed which correspond to a simple tetragonal lattice with lattice constants as above. They are consistent with a type I antiferromagnetic structure of the Np (2a) sublattice, with (001) ferromagnetic sheets coupled antiferromagnetically according to the sequence +-+-. At 6 K, the neptunium moment obtained from the diffracted intensities is: (1.48 ± 0.20)μuB, and makes an angle 52° ± 15° with the c axis. The cobalt moment is certainly smallet than 0.3μuB. The Np moment correlates well with the 237Np hyperfine field deduced from Mos?sbauer spectroscopy; the sublattice magnetization-temoperature curve follows very well the J=12 brillouin curve. The magnetism is therefore probably of lovalized character in this compound. An isomorphous sample of NpCu2Si2 (a = 3.990 Å c = 9.920 Å) was shown to be ferromagnetic below (41 ± 2) K, with the Np moment [1.5 ± 0.2)μuB] aligned along the c axis.  相似文献   

7.
The crystal and magnetic stucture of TbMn2Ge2 are determined by neutron diffraction using a powder sample. The crystal structure of this compound is of the ThCr2Si2 type with small mixing of Mn and Ge atoms between 4(d) and 4(e) positions. At RT the antiferromagnetic collinear structure consist of a+?+? sequence of ferromagnetic layers of Mn atoms with the magnetic moment parallel to the c-axis. At 85 K, the ferromagnetic ordering within the Tb sublattice is observed. The magnetic moment (~7.7 μB) is parallel to the c-axis. At 4.2 K additional reflections are observed, which correspond to antiferromagnetic components in a monoclinic unit cell.  相似文献   

8.
The compound ErCu2Ge2 was studied by neutron diffraction. The diffraction diagram of this compound at 170 K agrees with its crystallographic structure. Its diagram at 1.9 K reveals the existence of superlattice lines consistent with a cell doubled in the a and c directions. The erbium magnetic moment (8.0±0.4)μB lies on the c-axis. Crystal field calculations on the Er3+ site give 7.9μB, with easy magnetization axis the c-axis of the crystal. Copper must contribute to the Vml crystal field parameters with a charge equal to 0.6+.  相似文献   

9.
Neutron diffraction and magnetization study of polycrystalline NdRh2Si2 and ErRh2Si2 was performed in the temperature range from 4.2 to 293 K. Both compounds are of ThCr2Si2 type crystal structure and exhibit antiferromagnetic ordering below TN = 53 K and TN = 12.8 K respectively. The magnetic structure wave vector is τ = [0, 0, 1].  相似文献   

10.
Crystallographic and magnetic properties of PrMn2Si2, NdMn2Si2, YMn2Si2 and YMn2Ge2 intermetallics were studied by X-ray, neutron diffraction and magnetometric measurements. The crystal structure of all four compounds was confirmed to be body-centered tetragonal (space group I4/mmm). All were found to be antiferromagnetic with Néel points at 368, 380, 460 and 395 K respectively. Neutron diffraction results indicate that their magnetic structure consists of ferromagnetic layers composed of Mn ions piled up along the c-axis. Each layer is antiferromagnetically coupled to adjacent layer. The magnetic space group is Ip4/mmm′. No magnetic ordering of the R sublattice was observed at 1.8 K in the case of R = Pr and Nd.  相似文献   

11.
Low temperature irradiation of thin films of Nb75Ge25 (Tc = 3.2 K) and Nb80Si20 (Tc = 4.7 K) with 20 MeV sulfur ions leads to an increase of Tc of about 0.5 K and a decrease of ? of about 1.5 to 3.5%. Annealing up to room temperature partly restores the initial values. Qualitatively the results can be explained by irradiation induced smearing of the structure factor, which is partially recovered by annealing.  相似文献   

12.
The one-magnon Raman spectrum of CoBr2 has been investigated as a function of temperature, and peak frequency, integrated intensity and width parameters obtained. The results obtained for the band energy at low temperature (22.2 ± 0.2 cm-1 at 5.7.K) are in good agreement with AFMR and neutron scattering results. The one-magnon energy renormalises relatively slowly with increasing temperature and is about 15 cm-1 at TN = 19 K, whereas the integrated intensity approaches zero like the magnetization at TN and the width diverges. A low intensity band at 26.8 ± 1 cm-1 (7.6K) may be due to two-magnon scattering from spin waves along the c-axis.  相似文献   

13.
Anisotropic magnetic properties of single crystalline RAu2Ge2 (R=La, Ce and Pr) compounds are reported. LaAu2Ge2 exhibits a Pauli-paramagnetic behaviour whereas CeAu2Ge2 and PrAu2Ge2 show an antiferromagnetic ordering with Nèel temperatures TN = 13.5 and 9 K, respectively. The anisotropic magnetic response of Ce and Pr compounds establishes [0 0 1] as the easy axis of magnetization and a sharp spin-flip type metamagnetic transition is observed in the magnetic isotherms with H // [0 0 1]. The transport and magnetotransport behaviour of these compounds, in particular LaAu2Ge2, indicate an anisotropic Fermi surface. The magnetoresistivity of CeAu2Ge2 apparently reveals the presence of a residual Kondo interaction. A crystal electric field analysis of the anisotropic susceptibility in conjunction with the experimentally inferred Schottky heat capacity enables us to propose a crystal electric field level scheme for Ce and Pr compounds. For CeAu2Ge2 our values are in excellent agreement with the previous reports on neutron diffraction. The heat capacity data in LaAu2Ge2 show clearly the existence of Einstein contribution to the heat capacity.  相似文献   

14.
The DyCu2Ge2 compound was studied by neutron diffraction on the Grenoble Nuclear Research Center multicounter system. The compound is isostructural to the rare earth RCu2Ge2 compounds with space group I4/mmm. 19 superlattice lines were observed in the 3 K pattern which are consistent with a doubling of the unit cell in the a and c directions. The moment value is 8 μB making an angle of 30° with a and 70° with c axis. The structure consists of ferromagnetic (1 0 1) layers with antiferromagnetic coupling between them. The Néel and Curie paramagnetic temperature of this compound is 8 K and ? 15 K respectively.  相似文献   

15.
The magnetic structures of TbCu2Ge2 and HoCu2Ge2 were studied by neutron diffraction. At 293 K the chemical structure is tetragonal body centered, space group I 4/mmm. The magnetic cell at 4.2 K is four times larger than the chemical one with a wave vector k = 12 0 12. The magnetic space group is triclinic Pa1(Sh27) for both compounds. The moment values and directions are μTb = 8.48(6) [μB] along [110] tetr. and μHO = 6.5(1)[μB] making an angle of 81.4(°) with c and 80(°) with a1. The structure consists of ferromagnetic (101) layers stacked antiferromagnetically.  相似文献   

16.
Neutron diffraction study of polycrystalline HoRu2Si2, HoRh2Si2, TbRh2Si2, and TbIr2Si2 was performed in the temperature range between 4.2 and 300 K. For HoRu2Si2 the magnetic spin alignment of a linear transverse wave mode below the Néel temperature 19 K is observed. This static moment wave is propagating along the b-axis with k=(0, 0.2, 0) and is polarized in the c-axis. The root-mean-square and maximum saturation moments per Ho atom are 9.26 and 13.09μB, respectively. HoRh2Si2, TbRh2Si2 an TbIr2Si2 are simple collinear antiferromagnets of +-+- type with Néel temperatures of (27±1), (98±2) and (72±3) K, respectively. For TbRh2Si2 and TbIr2Si2 magnetic moments are localized on RE ions only and are aligned along the tetragonal axis, while for HoRh2Si2 they form an angle ø = (28±3)°.  相似文献   

17.
Magnetic properties of RMn2Si2 and RMn2Ge2 compounds, where R is a rare earth metal, have been investigated by magnetometric measurements. RMn2Ge2 (where R is a light rare earth) and LaMn2Si2 are ferromagnets. Remaining compounds have antiferromagnetic properties. DyMn2Si2 and ErMn2Si2 show ferromagnetic properties at low temperatures. It was confirmed that the value of Curie (or Néel) temperature for the Mn sublattice decreases with increasing c constant.  相似文献   

18.
The compound, LaMn2Ge2, crystallizing in ThCr2Si2-type tetragonal crystal structure, has been known to undergo ferromagnetic order below (TC=) 326 K. In this article, we report the magnetic behavior of nanocrystalline form of this compound, obtained by high-energy ball milling. TC of this compound is reduced marginally for the nanoform, whereas there is a significant reduction of the magnitude of the saturation magnetic moment with increasing milling time. The coercive field however increases with decreasing particle size. Thus, this work provides a route to tune these parameters by reducing the particle size in this ternary family.  相似文献   

19.
20.
In the insulating compounds MnPSe3 (1) and FePSe3 (2) the divalent transition metal ions form planar honeycomb lattices. A neutron diffraction study revealed a collinear antiferromagnetic order below TN = 74 ± 2 K (1) and TN = 119 ± 1 K (2) with the corresponding wavevectors k = [000] (1) and k = [12 0 12] (2). In MnPSe3 the magnetic moments (m0 = 4.74 μB) lie within the basal plane and in FePSe3 (m0 = 4.9 μB) they are pointing along the c-axis. The collinear structures are determined by the dominating intralayer interactions between first (J1), second (J2) and third neighbours (J3) which in MnPSe3 are all antiferromagnetic whereas in FePSe3J1 is ferromagnetic and J2 and J3 are antiferromagnetic.  相似文献   

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