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1.
The onset of magnetic order at 6 K and a superconducting transition at 2 K was previously observed in Y4Co3. In this paper we investigate the magnetisation in very low fields, in the vicinity of the magnetic and superconducting transition (Tc). Below Tc the M-H curves are characterised by broad hysteresis loops. This type of the behaviour indicates that the sample consists of different regions. Some of these regions are superconducting below Tc and others are magnetically ordered below 6 K.  相似文献   

2.
The sample of FeSc2S4 was prepared by solid reaction method. The crystallographic structure and the magnetic properties of the fabricated compound were investigated by X-ray, and superconducting quantum interference device (SQUID) magnetometer and Mössbauer spectroscopy. The polycrystalline FeSc2S4 confirmed the normal cubic spinel structure (space group Fd3m). The lattice constants a0 and anion parameter u are 10.519 Å and 0.255, respectively. The Mössbauer spectroscopy has been studied for the FeSc2S4 at various temperatures, ranging from 4.2 K to room temperature. The spectra consist of two doublets at 4.2 K while a single line at room temperature. It is noticeable that the Mössbauer spectra of two doublet patterns with large electric quadrupole splitting (ΔEQ) remain over the Néel temperature. Those are interpreted as a result of large electric quadrupole interaction compared to magnetic dipole interaction. The magnetic susceptibility measurements were performed with a SQUID magnetometer for temperatures 2<T<320 K, in external fields up to 5 kOe. Magnetic behavior shows antiferromagnetic behavior and the magnetic superexchange interactions between the Fe ions are weakly antiferromagnetic. The paramagnetic susceptibilities follow Curie–Weiss (CW) law with CW temperature ΘCW=−100 K, and frustration parameter f=−ΘCW/TN is of the order of 1000. We conclude that two sublattices are coupled antiferromagnetically, leading to strong frustration effects.  相似文献   

3.
We review our nuclear-magnetic resonance (NMR) and nuclear-quadrupole-resonance (NQR) studies in superconducting Sr2RuO4, which have been performed in order to investigate the gap structure and the pairing symmetry in the superconducting state and magnetic fluctuations in the normal state. The spin-lattice relaxation rate (1/T1) of a high-quality sample with shows a sharp decrease without a coherence peak just below Tc, followed by a T3 behavior down to 0.15 K. This result indicates that the superconducting gap in pure Sr2RuO4 is a highly anisotropic character with a line-node gap. The Knight shift, which is related to the spin susceptibility, is unchanged in the superconducting state irrespective of the direction of the applied fields and various magnitude of the field. This result strongly suggests that the superconducting pairs are in the spin-triplet state, and the spin direction of the triplet pairs is considered to be changed by small fields of several hundred Oe.  相似文献   

4.
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   

5.
Single crystals of (Sn1-xErx)Er4Rh6Sn18 are superconducting (Tc = 1.3K) for x 0, are reetrant superconducting (Tc = 1.24K and TM = 0.34K) for x ~.30 and undergo a singel magnetic transition (TM=0.68K) for x~.75. Since the occupancy of the [Sn(1)1-xEr(1)x]Er(2)4 sublattice is responsible for the variation of the low-temperature properties, one can make predictions as to new reentrant superconductors in the MRhxSny series (M=RE). This appears to be the first system of reentrant superconductors where stoichiometry within a sublattice controls both magnetic ordering and superconductivity.  相似文献   

6.
The attenuation coefficient of longitudinal sound waves propagating in ErRh4B4 has been measured as a function of applied magnetic field where the propagation direction (q) of the sound waves was oriented either parallel or perpendicular to Happlied. For both orientations there is evidence of a type II-1 superconducting transition at Hc1 for T ≈ 1.5 K. In addition, when qH an increase in attenuation is evident at Hc2, which does not appear when q 6 H, consistent with theories developed by Tachiki et al. utilizing supercurrent screening of the internal magnetic fields.  相似文献   

7.
在1064 nm波长脉冲激光(脉宽25 ps)的照射下,钙钛矿氧化物薄膜La0.67Ca0.33MnO3/SrTiO3具有超快光电效应,对激光脉冲显示ps量级的响应时间,上升沿响应时间300 ps,半高宽700 ps,同时,对激光能量的响应灵敏度为500 mV/mJ。  相似文献   

8.
We use neutron scattering and specific heat measurements to relate the response of the spin fluctuations and static antiferromagnetic (AF) order to the superconductivity in the electron-doped high-transition-temperature superconductor, Pr.88LaCe.12CuO4−δ (PLCCO) (Tc=24 K), as the system is tuned via a magnetic field applied beyond the upper critical field (Hc2) and driven into the normal state. The strength of the collective magnetic excitation commonly termed “resonance” decreases smoothly with increasing field and vanishes in the normal state, paralleling the behavior of the superconducting condensation energy. The suppression of superconductivity is accompanied by a smooth reduction in the very low energy spin fluctuations, and the concomitant emergence of static AF order. Our results suggest an intimate connection between the resonance and the superconducting condensation energy.  相似文献   

9.
The ternary rare earth compound NdRh4B4 has been studied by means of critical field, low temperature heat capacity, and static magnetic susceptibility measurements. Features in the upper critical field and heat capacity data at 1.31 K and 0.89 K suggest the occurrence of long-range magnetic order in the superconducting state. The temperature dependence of the static magnetic susceptibility follows a Curie-Weiss law with an effective magnetic moment μeff = 3.58 ± 0.05 μB and a Curie-Weiss temperature θp = ?6.2 ± 1.0 K between 20 K and room temperature. However,, magnetization vs. applied magnetic field isotherms suggest the development of a ferromagnetic component in the Nd3+ magnetization at low temperatures.  相似文献   

10.
The boundaries between the paramagnetic, superconducting and magnetically-ordered phases in the pseudoternary system Dy(IrxRh1?x)4B4 have been established down to 1.2 K. Comparisons between the present system and other pseudoternary systems M(IrxRh1?x)4B4 show that the depression of the superconducting transition temperature (ΔTc), relative to the nonmagnetic Lu compounds, can be described qualitatively by the de Gennes factor (g?1)2J(J+1). The nature of the magnetic order for the Rh-rich compounds was investigated by means of low field measurements and seems to be different from simple ferromagnetism.  相似文献   

11.
Polycrystalline samples of electron-doped Pr1.85Ce0.15CuO4+δ have been prepared under different annealing conditions and investigated by means of X-ray-diffraction, oxygen content analysis, electrical resistivity, magnetic susceptibility and low temperature specific heat measurements. X-ray-diffraction patterns show that samples contain a single T′ phase. The superconducting transition temperatures Tcm taken with the onset of diamagnetism in magnetic-susceptibility measurements are 20 and 19.5 K for sample annealed in flowing Ar gas and in vacuum (∼10−3 torr), respectively. The data of the samples, which are annealed in flowing Ar gas, show clear evidence for an αT2 term at zero magnetic field in superconducting electronic specific heat, and are consistent with d-wave superconductivity. However, this behavior is not observed in the other sample, which is annealed in vacuum. These results indicate that different heat treatments affect the oxygen content, homogeneity, superconducting transition temperature Tc, superconducting volume fraction, and the superconducting pairing symmetry of Pr1.85Ce0.15CuO4+δ.  相似文献   

12.
The effect of Co, Ni and Zn substitutions for Cu on the phase stability and superconducting properties of (Hg0.7Cr0.3)Sr2CuO4+δ was investigated. X-ray diffraction (XRD) revealed that both Co and Zn are soluble in the (Hg0.7Cr0.3)Sr2CuO4+δ material up to about 5% of the Cu content, whereas the solubility of Ni is extended up to 10%. Electrical resistivity and magnetic susceptibility measurements show that the value of the superconducting critical temperature Tc decreases linearly with the impurity content. The depression of Tc indicates that the suppression of the superconductivity in Co- and Ni-substituted samples is much stronger than that in Zn-substituted ones. The residual resistivity scales linearly with the doping level as expected from the impurity scattering due to disorder. Some possible explanations for the stronger suppression of Tc by the Co and Ni substitution than by Zn substitution are provided.  相似文献   

13.
The conductivity and dielectric permittivity spectra of single-crystalline La1.87Sr0.13CuO4 are directly measured with the electric field polarized perpendicular to the CuO planes (Ec) covering the frequency range 10-40 cm−1 and temperatures 5-300 K. We observe in the superconducting state a well pronounced excitation with strongly temperature dependent parameters. We suggest that the excitation is caused by the transverse Josephson plasma mode that appears due to the different strengths of Josephson coupling between the superconducting charge stripes in the neighboring and next-nearest neighboring copper-oxygen planes of La1.87Sr0.13CuO4. A strongly enhanced low-frequency (below 15 cm−1) absorption is seen in the superconducting state that is assigned to delocalized quasiparticles of as yet unknown origin.  相似文献   

14.
Molecular magnet {NBu4[Fe Cr(ox)3]}x (NBu4+=tetra(n-buty1) ammonium ion; ox2−=oxalate ion) was synthesized under an applied low magnetic field of 0.3 T in comparison to that synthesized without a field. Their crystallinities, morphologies and magnetic properties were characterized by using the X-ray diffractionmeter, the transmission electron microscope, and a superconducting quantum interference device. It is found that the average size of particles synthesized under the applied field appears larger than that synthesized without a field. Moreover, its crystallinity, morphology and magnetic susceptibility have also been improved. However, its chemical structure and ferromagnetic phase transition temperature Tc do not change. Possible reasons to explain this effect are also discussed.  相似文献   

15.
We study the magnetic superconductors for which the second order phase transition to the ferro-magnetic state would take place at the temperature θc ? Tc1 if the superconductivity was absent. In this case the inhomogeneous magnetic structure of domain-like type (DS phase) appears in superconductors below TM ≈ θc. The effect of the magnetic field H on DS phase is analysed and the region of DS phade existence in the plane (H, T) is found. The new peaks 2nQ (n is integer) should appear in the neutron scattering in the presence of the magnetic field. The wavevector Q of magnetic structure decreases with the growth of magnetic field or supercurrent.  相似文献   

16.
The electrical resistance of a linear chain metal Nb3Te4 were measured from 1.3 to 320 K. The residual resistance ratio R(300 K)R(4.2 K) is about 3. Nb3Te4 shows an anomaly in the resistivity vs temperature at about 80 K, suggesting an occurrence of a charge-density-wave transition. The transverse and longitudinal magnetoresistance at 4.2 K are proportional to the magnetic field in the range of 2–58 kOe. In the superconducting region close to the transition temperature Tc, the critical magnetic field Hc2 is proportional to δT=Tc?T. The angular dependence of Hc2 fits well with the fluxoid model of the Ginzburg-Landau theory. The ratio of the critical fields parallel and perpendicular to the chain direction is 4.8.  相似文献   

17.
The magnetic structure of the rare earth tetraboride TbB4 (crystallographic space group P4/mbm) has been determined by neutron diffraction on a polycrystalline sample. Below the experimentally determined Néel temperature of TN = (43±1) K TbB4 is ordered antiferromagnetically. The data refinement yielded a magnetic moment value of (7.7 ± 0.2) μB/Tb ion at 4.2 K which we interpret as Tb4+. The magnetic structure is antiferromagnetic collinear with the moments perpendicular to the tetragonal axis.  相似文献   

18.
The superconducting transition temperature Tc1 and the reentering temperature Tc2 to the normal ferromagnetically ordered state in the system ErcY1?cRh4B4 were determined as a function of the concentration of Er. Comparing our results with the recent theory of Maekawa et al., the exchange interactions J′ among local spins and I between local spins and superconducting electrons were estimated as J′ ? 0.30 K and I2N(0) ? 0.046 K, where N(0) is the density of states. A sudden decrease of Hc2 at Tc2 was observed in a high concentration region suggesting the first order transition.  相似文献   

19.
In this work we report a study of the magnetic behavior of ferrimagnetic oxide CoFe2O4 and ferrimagnetic oxide/ferromagnetic metal CoFe2O4/CoFe2 nanocomposite. The latter compound is a good system to study hard ferrimagnet/soft ferromagnet exchange coupled. Two steps were followed to synthesize the bimagnetic CoFe2O4/CoFe2 nanocomposite: (i) first, preparation of CoFe2O4 nanoparticles using a simple hydrothermal method, and (ii) second, reduction reaction of cobalt ferrite nanoparticles using activated charcoal in inert atmosphere and high temperature. The phase structures, particle sizes, morphology, and magnetic properties of CoFe2O4 nanoparticles were investigated by X-Ray diffraction (XRD), Mossbauer spectroscopy (MS), transmission electron microscopy (TEM), and vibrating sample magnetometer (VSM) with applied field up to 3.0 kOe at room temperature and 50 K. The mean diameter of CoFe2O4 particles is about 16 nm. Mossbauer spectra revealed two sites for Fe3+. One site is related to Fe in an octahedral coordination and the other one to the Fe3+ in a tetrahedral coordination, as expected for a spinel crystal structure of CoFe2O4. TEM measurements of nanocomposite showed the formation of a thin shell of CoFe2 on the cobalt ferrite and indicate that the nanoparticles increase to about 100 nm. The magnetization of the nanocomposite showed a hysteresis loop that is characteristic of exchange coupled systems. A maximum energy product (BH)max of 1.22 MGOe was achieved at room temperature for CoFe2O4/CoFe2 nanocomposites, which is about 115% higher than the value obtained for CoFe2O4 precursor. The exchange coupling interaction and the enhancement of product (BH)max in nanocomposite CoFe2O4/CoFe2 are discussed.  相似文献   

20.
We have measured the temperature dependence of the magnetic susceptibility, χ vs. T, and the magnetization curve, M vs. H, for NbSe2 single crystals, in order to compare the superconducting (SC) state in the overdoped regime of La2−xSrxCuO4 (LSCO) with the SC state of the layered conventional superconductor NbSe2. While a plateau in χ vs. T in a moderate magnetic field and a so-called second peak in M vs. H, which is due to the marked enhancement of vortex pinning, have been observed in the overdoped regime of LSCO, these behaviors have not been observed in NbSe2. The present results indicate that the anomalously marked enhancement of vortex pinning is a characteristic feature in the overdoped LSCO where a microscopic phase separation into SC and normal-state regions takes place.  相似文献   

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