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1.
Pr substituted at constant Ca concentration for Y in (Y1−xyPrxCay)Ba2Cu3O7−δ superconductors have been prepared under identical conditions and the temperature dependence of the electrical resistivity of these samples are measured. The resistively determined values of Tc decrease linearly with increasing x (0 ≤ x ≤ 0.2) for constant y = 0.10 and 0.15 which provides convincing evidence that the suppression of superconductivity by Pr is mainly due to magnetic pair breaking. The suppression of superconductivity can also be correlated to the observed changes in oxygen content determined by iodometric analysis and to the average Cu-valences. However, it is found that the observed suppression of Tc cannot be compensated by appropriate hole doping with Ca.  相似文献   

2.
We have investigated the reversible mixed-state magnetization M of three lanthanum substituted Bi1.95Sr2.05−xLaxCuOy (Bi-2201) ceramic samples having different critical temperatures Tc ranging from 20.0 to 35.5 K. As for the Bi2Sr2CaCu2O8+δ (Bi-2212) phase, we found that anisotropy of Bi-2201 is large. A manifestation of this anisotropy is the field independent magnetization M* observed at a temperature T*. In the framework of the London model, and including thermal fluctuations of vortices, we found for the temperature dependence of the penetration depth λab(T) = λab(0)[1 − (T/Tc0)n]−1/2, with n 1.7 and λab (T = 0) 4000 Å. The estimated upper critical fields μ0Hc2,c are of the order of 10 T. We observe a peculiar negative slope M/T at low temperature and sufficiently high external magnetic field. This feature seems to be a characteristic of the Bi-2201 phase. However, we do not know whether it is associated with the superconducting mixed-state. A small amount of magnetic impurities could also be responsible for this behavior. Finally, the behavior of the reversible magnetization of the Bi-2201 samples investigated, which are situated at the optimal and in the overdoped region, did not indicate any unusual temperature dependence for the upper critical field Hc2,c.  相似文献   

3.
63Cu, 17O and 205Tl NMR have been performed in the high-Tc superconductor Tl2Ba2Ca2Cu3O10 whose Tc(max) is 127 K. The hole densities at Cu and oxygen sites in the CuO2 plane have been extracted from the nuclear quadrupole frequency νQ. The striking feature is that the Cu holes are significantly transferred to oxygen site due to strong hybridization between Cu and oxygen. From an analysis of T1 and T2G, it has been found that the spectral weight of the spin fluctuation is transferred to higher energy compared to YBa2Cu3O7, while the magnetic correlation length ξ does not differ much. Thus, it is suggested that the higher Tc is due to higher characteristic energy of spin fluctuations, i.e. the superconductivity is spin fluctuation mediated. The superconducting properties are consistently explained by a d-wave superconductivity model with a finite density of states (DOS) at the Fermi level. We show that the disorder of the Ca/TlO layer caused by the partial inter-substitution of Tl and Ca is responsible for the potential scattering to produce such a DOS. It is found that if such a potential scattering were absent, Tc would go up to 132 K which is quite close to the record Tc realized in the Hg based compound.  相似文献   

4.
We have measured the resistivity of textured Bi1.84Pb0.4Sr2Ca2Cu3Oy silver-clamped thick films as a function of temperature, current density ranging from 10 to 1×103 A/cm2 and magnetic field up to 0.3 T. We find that the effective activation energy Ue follows Ue(T,J,H)=U0(1−T/Tp)mln(Jc0/J)H with m=1.75 for Hab-plane and 2.5 for Hc-axis and =0.76 for Hab and 0.97 for Hc, for the current density regime above 100 A/cm2, where Tp is a function of applied magnetic field and current density. This result suggests the effective activation energy Ue be correlated with the temperature, current density and magnetic field. The possible dissipative mechanisms responsible for the temperature, current density and magnetic field dependence of the effective activation energy are discussed.  相似文献   

5.
《中国物理 B》2021,30(6):67504-067504
The magnetostriction, magnetization, and spin reorientation properties in Pr(Ga_xFe_(1-x))_(1.9) alloys have been investigated by high-precision x-ray diffraction(XRD) step scanning, magnetization, and Mo¨ssbauer spectra measurements. Ga substitution reduces the magnetostriction(λ_(||)) with magnetic field H ≥ 8 kOe(1 Oe = 1.33322×10~2 Pa), but it also increases the λ|| value when H ≤ 8 kOe at 5 K. Spin-reorientations(SR) are observed in all the alloys investigated, as determined by the step scanned XRD, Mo¨ssbauer spectra, and the abnormal temperature dependence of magnetization. An increase of the spin reorientation temperature(T_(SR)) due to Ga substitution is found in the phase diagram, which is different from the decrease one in many R(T_x Fe_(1-x))_(1.9)(T = Co, Al, Mn) alloys. The present work provides a method to control the easy magnetization direction(EMD) or T_(SR) for developing an anisotropic compensation system.  相似文献   

6.
Zero field μSR measurements were carried out on samples of the typical diluted magnetic semiconductor Cd1−xMnxTe as a function of composition in the range 0.27x0.65, at temperatures in both the “spin glass’ regions of the magnetic phase diagram. The results show the onset of complex diffusion-trapping behaviour at temperatures T60 K for all concentrations. Below 50 K the exponential relaxation found for the main signal is consistent with the interactions of the muon spin with rapidly fluctuating and rather large local hyperfine fields in these concentrated random diluted magnetic systems. In spite of the loss of signal near and below the transition temperature, the present results show that rapid spin fluctuations persist below Tg.  相似文献   

7.
The magnetic ordering in the tetragonal ternary compound U4Cu4P7 has been studied by neutron diffraction. It orders below TN = 146 K with an antiferromagnetic structure of wave vector k = (001). The magnetic ordering corresponds to a stacking of ferromagnetic (001) uranium planes according to the sequences m1, m1, m2, -m2, -m1, -m1, -m2, m2 where m1 and m2 represent the magnetic moment, directed along the tetragonal axis of the two uranium sites U(1) (0,0,± z1) and U(2) (0,0, ± z2) respectively. The magnetic moments on these two sites have different temperature dependencies as well as well as they reach the different values of 1.1 and 2.2.μB for the U(1) and U(2) sites, respectively.  相似文献   

8.
The NMR investigation of Y0.97Sc0.03Mn2 has revealed that this compound remains paramagnetic down to 4.2 K. The nuclear spin-lattice relaxation rates, 1/T1, of 55Mn and 45Sc in Y0.97Sc0.03Mn2 show the T dependence as predicted from the self-consistent renormalization (SCR) theory of spin fluctuations for nearly antiferromagnetic metals.  相似文献   

9.
Magnetic transitions in La(Fe1−xCox)11.4Si1.6 compounds with x=0–0.08, have been studied by DC magnetic measurements and Mössbauer spectroscopy. The temperature dependence of the Landau coefficients has been derived by fitting the magnetization, M0H), using the Landau expansion of the magnetic free energy. For x0.02 there is a strongly first-order magnetic phase transition between ferromagnetic and paramagnetic (F–P) states in zero external field and a metamagnetic transition from paramagnetic to ferromagnetic (P–F) above Tc. Increasing the cobalt content drives the F–P transition towards second order and eliminates the metamagnetic transition.  相似文献   

10.
The 63Cu NMR Knight shift K and spin-lattice relaxation rate 1/T1 have been measured to study the thiospinel superconductor Cu1.5Rh1.5S4 from a microscopic viewpoint. K is negative and has a weak dependence on temperature, and the hyperfine coupling constant Hhfd is estimated to be −52.4 kOe/μB. 1/T1 is proportional to the temperature in the normal state. In the superconducting state, 1/T1 takes a coherence peak just below Tc, and decreases exponentially well below Tc, from whose temperature dependence the superconducting energy gap has been proved to be close to 2Δ = 3.52kBTc given by the BCS theory.  相似文献   

11.
Magnetic measurements of various types have played an essential role in establishing the novel normal state characteristics of high transition temperature (Tc) superconductors with Tc > 23 K. Among these materials, the highest Tc's ( 125 K) are exhibited by the layered cuprates. In this paper, the normal state magnetic susceptibilities of the cuprates are reviewed and interpreted in the context of magnetic neutron scattering and other magnetic measurements, using the La2−xMxCuO4-type and YBa2Cu3O6+x-type materials as prototypical examples. The evolution of the magnetism upon doping the insulating antiferromagnetic “parent” compounds with x = 0 to form the high temperature superconductors is described. A recurrent property which differentiates these materials from conventional superconductors is the existence of strong antiferromagnetic correlations in the metallic state on the same sublattice of the structure in which the itinerant carriers reside.  相似文献   

12.
The magnetic ordering of the hexagonal compound TbMn6Ge6 has been studied by neutron diffraction at various temperatures between 1.8 and 500 K. In almost the whole magnetically ordered regime the magnetic structures are incommensurate with the crystal lattice. The corresponding wave vector q1 = (0,0,qz) is strongly temperature dependent and decreases from qz = 0.1307 r.l.u. at 1.8 K to qz = 0.091 r.l.u. at 410 K. The low-temperature range (T < 85 K) is characterised by a triple ferrimagnetic spiral structure with net moment along the c-direction. At Tt = 85 K the net moment disappears and the magnetic ordering changes into a flat spiral structure that probably persists up to the magnetic ordering temperature, TN = 450 K. Before reaching the magnetic ordering temperature, however, an additional ferrimagnetic component perpendicular to the c-direction develops, marking the onset of re-entrant ferrimagnetism. The resulting structure described by two propagation vectors corresponds to a distorted spiral. Various models are discussed. The observed re-entrant ferrimagnetism is in agreement with results of previously reported magnetic measurements.  相似文献   

13.
We have made high-temperature (250 K<T<800 K) DC susceptibility measurements in the compounds RuSr2Eu2−xCexCu2O10 for x=0.6,0.8, and 1.0 in order to determine the Ru effective magnetic moment. After carefully subtracting all contributions to the magnetic susceptibility except that of the Ru ions, we have been able to fit the Ru susceptibility with a law χRu0+CRu/(T−ΘRu). We have found that the Ru effective moment falls between the values expected for Ru5+ in spin states and . We have also found a dependence of μeff(Ru) and ΘRu with the Ce content x.  相似文献   

14.
The π0 spectrum in the KL0 → 3π decay was measured using a wire chambers magnetic spectrometer. In the usual approximation, the matrix element can be expressed as: M2 ≈ 1 + 2a0(MK/Mπ2)(2Tπ0Tπ0max) + a1(MK2/Mπ4)(2Tπ0Tπ0max)2. We obtained a0 = −0.282 ± 0.011 and a1 consistent with zero.  相似文献   

15.
The quenching of spin fluctuations by magnetic fields has been observed in heat capacity and electrical resistivity measurements at low temperatures for a series of highly exchange enhanced magnetic materials. These include: the weak itinerant electron ferromagnets Sc3In, Zr1−xHfxZn2 (0 x 0.2) and Ni3Al; the strong Pauli paramagnets RCo2 (R = Sc, Y and Lu), TiBe2 and Pd1−xNix (0 x 0.01); and the heavy fermion systems CeSn3, CeSix (x ≈ 1.85) an d UAl2. The reported quenching of spin fluctuations in scandium and palladium by magnetic fields is reviewed, and it appears that the initial observations and conclusions are incorrect, and that fields greater than 10 and 40 T, respectively, will be necessary to quench spin fluctuations in these metals. The behaviors of these spin fluctuators have been grouped into six classes.  相似文献   

16.
The flux pinning behavior of a Nd1+xBa2−xCu3O7−δ (Nd123) single crystal, which exhibited a peak effect, has been studied by monitoring the time decay of the magnetic moment. The apparent pinning energy (U0*) was deduced from flux creep data on the basis of the Anderson-Kim model. The magnetic field dependence of U0* showed maxima at peak fields which depended on the temperatures, in a similar manner to those of critical current densities. In addition, the temperature dependence of U0* showed several features. To explain the increase in U0* with the field as well as its temperature and field dependence, we made a numerical calculation by introducing an additional pinning energy which increased with increasing field. The results are in good agreement with the experimental data, especially at temperatures above 60 K, where the contribution of field induced pinning centers is believed to be dominant.  相似文献   

17.
We present here the detailed analysis of the magnetic behavior of the Co0.53Ga0.47 alloy, especially at temperatures above the freezing temperature Tf = 10 K. Low field static magnetization measurements were performed by using the SQUID magnetometer in the temperature range 5–65 K and magnetic fields up to 100 Oe. The temperature dependence of the field cooled susceptibility πFC(T) at T > Tf has an anomaly, which is displayed in the double change of the curvature near Ts = 24 K. The data of magnetization MFC in an external field H lie on a universal curve MFC(H/T) at temperatures Tf < T < Ts. The plots of π-1FC(T) and non-linear magnetic susceptibility πnlFC(T-3) are linear lines in the temperature range TfTs. The strong deviation of π-1FC(T) and πnlFC(T-3) from straight line, taking place at T Ts, indicates that Ts is an upper temperature limit of the classical superparamagnetic behavior with the constant cluster moment. The results suggest that such phenomena may be fairly universal for spin glasses.  相似文献   

18.
We study the magnetocaloric effect (MCE) in van der Waals (vdW) crystal CrBr3. Bulk CrBr3 exhibits a second-order paramagnetic-ferromagnetic phase transition with TC = 33 K. The maximum magnetic entropy change −ΔSM near TC is about 7.2 J·kg−1·K−1 with the maximum adiabatic temperature change ΔTmaxad = 2.37 K and the relative cooling power RCP= 191.5 J·kg−1 at μ0H = 5 T, all of which are remarkably larger than those in CrI3. These results suggest that the vdW crystal CrBr3 is a promising candidate for the low-dimensional magnetic refrigeration in low temperature region.  相似文献   

19.
The effects of Fe-substitution of YBa2Cu3Oy have been investigated by means of Raman scattering, X-ray diffraction, resistivity and susceptibility measurements. A series of samples of YBa2(Cu1 − xFex)3Oy with different dopant concentration (0 x 0.15) has been prepared in two batches, the second set having undergone twice the heat and mechanical treatment used to produce the first batch. Considerable improvement in the superconducting transition temperature, Tc, is obtained upon reprocessing. A phase transformation from orthorhombic to tetragonal symmetry is observed for x=0.05 from the X-ray measurements in agreement with previous work. Using a micro-Raman technique, all five Ag vibrational modes have been measured and their dependence on Fe-concentration is analyzed. There are indications that iron substitutes for copper at both sites and that the structure is a mixture of orthorhombic and tetragonal microdomains for all x.  相似文献   

20.
A Brillouin investigation in CsHSeO4 has been performed over the temperature range 20–165 °C which includes two phase transitions, in particular the transition to the superionic phase near Ts = 129 °C. We observed strong discontinuities for elastic constants C11, C22 and C33 at Ts and a broadening of the Brillouin lines above Ts. The results are discussed on the basis of a linear coupling between strains and mobile protons.  相似文献   

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