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1.
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   

2.
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   

3.
Bulk magnetization measurements have been performed on single crystals of HoTiO3 and ErTiO3. The easy direction of magnetization is along the b-axis for HoTiO3 and along the c-axis for ErTiO3 with respect to the Pbnm chemical cell. These findings are in qualitative agreement with the results of two independent powder neutron diffraction studies. The saturation magnetic moments at 4.2 K along the easy axes are 7.3(2)μB per formula unit for HoTiO3 and 6.9(2)μB for ErTiO3. In addition, single crystal susceptibility data were analyzed using the theory of Boutron to yield values for the Heisenberg exchange coupling and the second-order crystal field terms B02 and B22.  相似文献   

4.
Tb0.75Y0.25Co3B2 was studied as a function of temperature by neutron powder diffraction, ac susceptibility and SQUID magnetization measurements. The solid solution, which is of hexagonal symmetry and is paramagnetic at 300 K, undergoes a magnetic Co–Co ordering transition at ∼150 K, and a second magnetic Tb–Tb ordering transition at ∼17 K. The latter induces a spin-reorientation transition, in which the magnetic axis rotates from the c-axis toward the basal plane. The component of the magnetic axis, which is perpendicular to c, leads to a crystal symmetry reduction from hexagonal to monoclinic. The observed magnitude of the magnetic moment of the Tb ion is 1.5 μB, unusually small relative to the free ion and parent compound (TbCo3B2) values. These magnetic and crystal properties are discussed and compared with what was previously published for the parent compound.  相似文献   

5.
We performed the magnetization measurement on Ho1−xDyxNi2B2C single crystals (x=0.1, 0.2, 0.3, 0.4, and 0.6) with magnetic field applied perpendicular and parallel to the c-axis. But only for the magnetic field perpendicular to the c-axis, the increase of Dy3+ concentration affects the magnetically ordered states of HoNi2B2C compound and makes the phase diagram more complicated. The antiferromagnetic ordering state attributed to Dy3+ sublattice starts to appear from a case of x=0.2 and finally the magnetic phase diagram becomes analogous to that of DyNi2B2C as x is increased which is consistent with the neutron scattering result.  相似文献   

6.
We have carried out neutron diffraction on a HoCo2Si2 powder sample at 4.2 K. The magnetic structure of this compound is collinear antiferromagnetic with the holmium magnetic moments parallel to the c-axis of the crystal. The magnetic moment value of holmium is 9.85 μB. The magnetic space group is I4/mm'm' (Sh410128) k = 000 The ordering temperature is tn = 12(1) K.  相似文献   

7.
The crystal and magnetic structure of Ho2NiGe6 was studied by powder neutron diffraction. The paramagnetic neutron diffraction data confirmed the Ce2CuGe6-type crystal structure reported earlier for this compound. Below the Néel temperature equal to 11 K the Ho magnetic moments form a uniaxial antiferromagnetic ordering. The Ho magnetic moments equal to 8.16(7)μB at 1.5 K are parallel to the b-axis. The data are compared with those published for HoNi0.46(6)Ge2.  相似文献   

8.
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   

9.
The magnetic properties of the intermetallic compound Dy2CuIn3 have been investigated. Ac and dc-susceptibility measurements indicate an onset of antiferromagnetic ordering at TN=19.5 K and an additional frequency dependent transition at Tds∼9 K. Neutron diffraction studies confirm the ordered transition at 19.5±1 K. The magnetic unit cell can be described by the propagation vector k=(0.25,0.25,0) with the magnetic moment μ=2.63(4)μB/Dy3+ parallel to the c-axis. Nevertheless, neutron diffraction reveals no additional magnetic phase transition around or below 9 K, which suggests that, at lower temperatures, a spin glass state may be formed in coexistence with the antiferromagnetic mode as a result of frustration and the antagonism between ferromagnetic and antiferromagnetic exchange interactions.  相似文献   

10.
Magnetization and neutron diffraction studies have been performed on Ce4Sb3 compound (cubic Th3P4-type, space group I4¯3d, no. 220). Magnetization of Ce4Sb3 reveals a ferromagnetic transition at ∼5 K, the temperature below which the zero-field-cooled and field-cooled magnetization bifurcate in low applied fields. However, a saturation magnetization (MS) value of only ∼0.93μB/Ce3+ is observed at 1.8 K, suggesting possible presence of crystal field effects and a paramagnetic/antiferromagnetic Ce3+ moment. Magnetocaloric effect in this compound has been computed using the magnetization vs. field data obtained in the vicinity of the magnetic transition, and a maximum magnetic entropy change, −ΔSM, of ∼8.9 J/kg/K is obtained at 5 K for a field change of 5 T. Inverse magnetocaloric effect occurs at ∼2 K in 5 T indicating the presence of antiferromagnetic component. This has been further confirmed by the neutron diffraction study that evidences commensurate antiferromagnetic ordering at 2 K in zero magnetic field. A magnetic moment of ∼1.24μB/Ce3+ is obtained at 2 K and the magnetic moments are directed along Z-axis.  相似文献   

11.
The crystal and magnetic structures of the composite compound Nd2Co6Fe have been investigated by high-resolution neutron powder diffraction and X-ray powder diffraction. The compound crystallizes in the hexagonal Ce2Ni7-type structure consisting of Nd(Co,Fe)2 and Nd(Co,Fe)5 structural blocks alternately stacked along the c-axis. Multi-pattern Rietveld refinement of neutron diffraction and X-ray diffraction data at room temperature reveal that substitution of Fe for Co occurs exclusively in the Nd(Co,Fe)5 structural blocks. The preferential occupation of the Fe atoms in the structure is discussed based on the mixing enthalpy between Nd and Fe atoms and on the lattice distortions. In agreement with the reported magnetic phase diagram of the Nd2Co7−xFex compounds, magnetic structure models with the moments of all atoms in the ab plane at 300 K and along the c-axis at 450 K provide a satisfactory fitting to the experimental neutron diffraction data. The refinement results show that the atomic moments of (Co,Fe) atoms within the Nd(Co,Fe)5 blocks decrease slightly with temperature, whereas the atomic moments of Nd in the compound and of (Co,Fe) atoms at the interface between the Nd(Co,Fe)2 and Nd(Co,Fe)5 blocks are reduced significantly.  相似文献   

12.
The magnetic structure of cubic or β-ErAl3 has been investigated by neutron diffraction from powder samples. ErAl3 undergoes a transition at 5·1°K, to an antiferromagnetic state with an enlarged tetragonal unit cell. The moments are directed perpendicular to the tetragonal c-axis. Crystal field effects are large and dominant in this compound. The extrapolated saturation moment is 5·1/μB, which corresponds to the Γ8 ground state.  相似文献   

13.
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   

14.
The magnetic structure of the tetragonal ErCo2Si2 compound is determined by neutron diffraction on powder sample at 4.2 K. The magnetic ordering is connected with a symmetry lowering, magnetic space group P2s1 (Sh72)k = 000. The structure is collinear antiferromagnetic with the erbium magnetic moments making an angle of 56.2° with the c axis. The magnetic moment value for erbium is 6.75μB.  相似文献   

15.
The holmium ions order antiferromagnetically in the ternary tetragonal compound HoRu2Ge2, at the Néel temperature TN = 20 K. This compound exhibits a squared modulated structure with a propagation vector k = [0.2216, 0.0111, 0.0] with a holmium magnetic moment of 6.6μB, parallel to the c-axis of the crystal. Crystal field calculation show that the tetragonal axis of HoRu2Ge2 is the easy axis.  相似文献   

16.
Co3V 2O8 is a spin- 3/2 system on a Kagomé staircase and is known to undergo two magnetic phase transitions between 6 and 11 K. The H-T phase diagram of Co3V 2O8 derived by magnetization measurements on a single crystal is presented. Additionally both ordered magnetic structures were investigated by neutron powder diffraction experiments and solved using Bertaut’s macroscopic theory. For the ferromagnetic phase the magnetic moments of the Co2+ ions were found to be 1.5(3)μB and 2.7(1)μB at 3.5 K along the crystallographic a axis for the (4a) and (8e) sites, respectively. The antiferromagnetic phase exhibits a magnetic cell with a doubled b axis with respect to the nuclear one. The magnetic moments point along the a axis being 1.8(2)μB (4a) and 1.8(1)μB (8e) at 8 K.  相似文献   

17.
Using powder neutron diffraction techniques, we have examined the magnetic order of the pseudoternary compound Ho(Rh0.3Ir0.7)4B4 below the Néel temperature TN=2.7K. The magnetic structure consists of stacked antiferromagnetic basal plane sheets forming a body centered tetragonal unit cell, with a sublattice magnetization corresponding to 9.6±0.6μB per Ho3+ion at 1.5 K. Magnetic intensity versus temperature measurements indicate that the transition is second order and reveal no anomalous effects when the compound becomes superconducting at Tc=1.34K.  相似文献   

18.
TbRh2Ge2 orders antiferromagnetically in the AFI type structure with a magnetic moment of 9.4(3)μB at 4.2 K localized on the Tb3+ ion. TbRu2Ge2 exhibits a square modulated magnetic structure with moments aligned along the c-axis of the crystallographic unit cell. The magnitude of the magnetic moment localized on the Tb3+ ion is 9.1(1)μB at 4.2 K.  相似文献   

19.
于洪飞  张鲁山  吴小会  郭永权 《物理学报》2011,60(10):107306-107306
利用非自耗真空电弧熔炼法制备了NdNi2Ge2化合物样品,采用X射线粉末衍射技术和Rietveld全谱拟合分析方法测定了其晶体结构. 结果显示该化合物的空间群为I4/mmm,点阵参数为:a=4.120(1),c=9.835(0),Z=2,Nd原子占据2a晶位,Ni原子占据4d晶位,Ge原子占据4e晶位. NdNi2Ge2化合物呈现顺磁性,应用居里-外斯定律拟合计算得到居里-外斯常数为25.8,居里-外斯温度为6.24 K. 有效势磁矩为3.69μB,这与理论计算Nd3+的磁矩相符,表明磁矩主要源于Nd3+. 电阻率变化范围为0.3 Ω ·μm-1-1 Ω ·μm,电阻曲线拟合显示NdNi2Ge2呈半金属性. 关键词: 2Ge2')" href="#">NdNi2Ge2 Rietveld结构精修 电磁输运  相似文献   

20.
Magnetic structure of KFeS2 — a spin analog of the oxidized two iron ferredoxins — was determined by the neutron diffraction method. Spins are antiferromagnetically coupled along the c-axis chain, and they make ferromagnetic sheets in the planes containing a and b axes below the transition temperature of 250.0 ± 0.5 K. The iron moment of 2.43 ± 0.03 μB lies in the a?c plane and is canted by 125.3 ± 0.7 degrees from a-axis at 4.2 K.  相似文献   

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