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1.
On melt processed samples of the 86 K superconductor Bi2Sr2CaCu2O8 we have performed resistive measurements in the low field limit B0.13 T and 40 KT77 K. The voltage drop is found to rise exponentially with current E ∝exp j/j0, which is interpreted in terms of thermal activation of pinned flux lines. An activation energy U0(T)90 meV is derived from the transition width j0(T) and is related to a plausible core pinning interaction of flux lines with normal conducting precipitates. This reproduces the measured jc(B, T) values in the whole regime investigated. We conclude that pinning centers must have a minimum size in order to control flux creep. Finally we demonstrate that conventional summation of the single site pinning forces cannot account for the observed macroscopic depinning current density.  相似文献   

2.
A systematic study of the magnetic hysteresis in transport properties of polycrystalline YBa2Cu3O7−δ–Ag compounds has been made based on two kinds of measurements at 77 K and under applied magnetic fields up to 30 mT: critical current density Jc(Ba) and magnetoresistance R(Ba). The R(Ba) curves show a minimum in their decreasing branch occurring at B=Bmin which was found to be both the excitation current Iex and the maximum applied magnetic field Bam dependent. In addition, for a certain value of Bam>5 mT, we have observed that Bmin increases with increasing Iex and reaches a saturation value. The Jc(Ba) curves show a maximum in decreasing applied magnetic fields occurring at B=Bmax. We have also found that Bmax increases with increasing Bam and reaches a saturation value. The minimum in the R(Ba) and the maximum in Jc(Ba) curves were found to be related to the trapped flux within the grains. All the experimental results are discussed within the context of the flux dynamics and transport mechanisms in these high-Tc materials.  相似文献   

3.
The magnetic properties of single-crystal Ba0.6K0.4BiO3 were studied. The results show that this isotropic superconductor (cubic structure with Tc ≈ 32 K) exhibits irreversibility and relaxation properties similar to those observed in the layered, high temperature superconductors. For fields above 0.1 T, an irreversibility line Birr = Birr (0) (1 − t)n with n = 3/2 and Birr (0) = 20 T is observed. The comparison among several superconducting systems with different anisotropies suggests that the irreversibility line is unlikely to be the melting line for the YBa2Cu3O7−δ.  相似文献   

4.
We report on a systematic mutual induction measurement of the complex AC penetration depth λ of a sputtered high-quality GdBa2Cu3O7−δ film in the mixed state by a very small coil system arranged near the sample surface. The complex penetration depth λ(B, T, ω) for DC inductions B 0.65 T (perpendicular to the film), for temperatures 36 K T 81 K, and for frequencies 1 kHz ω/2π 500 kHz was determined from the measured signal by a novel inversion scheme. The results are consistent with theoretical predictions based upon single vortex pinning. The Labusch parameter , the flux creep relaxation time τ, as well as the effective activation energy U are simulateneously determined.  相似文献   

5.
We have studied the stationary Josephson effect on YBa2Cu3O7−δ (Tc=90 K) and Bi2Sr2Ca1Cu2 O8 (Tc=80 K and 87 K for two samples of different origin) ceramic based junctions. The temperature dependence of the critical current near Tc has been found as Ic≈(Tc-T) for the Y-Ba-Cu-O samples indicating that they should be classified as S-N-I-N-S type junctions. The I-V curves of the Bi-Sr-Ca-Cu samples show the typical behaviour of S-I-S structures. Using Ambegaokar-Baratoff's theory for Bi2Sr2Ca1Cu2O8, the temperature dependence of the superconducting state gap Δ(T) was calculated and it was evaluated that 1.452Δ(0)/kBTc3.5.  相似文献   

6.
To study a behavior of the thermal conductivity near Tc specific heat and thermal diffusivity of the YBa2Cu3O7−δ high-Tc ceramics were simultaneously measured. Close to Tc = 92.30 K the thermal diffusivity and the thermal conductivity discovered minima and the specific heat – maximum. Quantitative analysis of the influence of thermodynamical fluctuations showed the same power laws with Gaussian exponent equal to 0.5 and existing of crossover from the 3D Gaussian to 3D XY critical behavior in the specific heat and thermal conductivity at the approach to Tc. To explain the minimum in thermal conductivity at Tc we propose a mechanism of scattering of phonons on the superconducting fluctuations.  相似文献   

7.
The thermoelectric power (TEP) S versus temperature has been systematically investigated for several series of the superconducting cuprates Tl(Ba,Sr)2Cam−1CumO2m+3−δ (m = 2, 3) and Tl2Ba2Cam−1CumO2m+4+δ (m = 1, 2, 3). The consideration of the S(Tc) curves allows two important points to be found evidence for. The first one deals with the fact that all these superconducting thallium cuprates are systematically overdoped whatever Tc, and whatever the number of Cu or Tl layers; no underdoped superconducting cuprate could be obtained. The second point shows that there exist two classes of Tl cuprates: the weakly overdoped cuprates that exhibit a Tc max ≥ 100 K (all the triple copper layer cuprates and the 2212 cuprates) and those which can be heavily doped that exhibit a Tc max ≤ 90 K (the 2201 and the 1212 cuprates). The different behavior of thallium cuprates compared to YBa2Cu3O7−δ and to bismuth cuprates is discussed.  相似文献   

8.
The thermal conductivity and thermopower are reported for a hole doped Eu1.5Ce0.5RuSr2Cu2O10+δ sample that has been annealed at 1100 K under an oxygen pressure of 54 atm. At Tc=45 K superconductivity and weak ferromagnetism coexist (Tm=180 K). Weak features in the thermopower, S(T), and thermal conductivity, κ(T), are observed both at Tm and at T*=140 K. The thermopower begins to decrease sharply toward zero at Tc, and there is an extremely sharp increase of about 30% in the thermal conductivity at Tc. This “first order” transition may be related to the sudden appearance of a spontaneous vortex phase at Tc. A small shoulder is observed in κ(T) in the temperature range T=5–13 K.  相似文献   

9.
The pressure effect on Tc of polycrystalline and single crystalline YBa2Cu3Ox investigated as a function of oxygen content x by ac-susceptibility measurements under helium pressure. In the overdoped region x> 6.93 the single crystals show a negative dTc/d p, as expected from the charge transfer model. For optimally doped samples with x = 6.93 we find dTc/d P = 0.4 K/GPa which points to pressure effects on Tc aside from charge transfer. In the underdoped region x < 6.93 the dTc/d p values obtained from the experiment depend strongly on the storage temperature of the sample during the experiment. When the samples are stored at temperatures well below 240 K throughout the entire experiment including pressure application and pressure release, dTc/d p increases to approx. 7 K/GPa at x = 6.7 but with a further decrease of the oxygen content the dTc/d p drops to approx. 2 K/GPa at x = 6.4. These effects are intrinsic to the YBa2Cu3Ox structure and can be explained by considering the anisotropic structure of YBa2Cu3Ox. The decrease of the c-axis lattice parameter results in a charge transfer to the CuO2-planes mainly [1], whereas the compression of the a- and b-axis lattice parameter is known to produce different pressure effects which are responsible for the peak in dTc/d p at x = 6.7 [2]. When pressure is changed at room temperature oxygen ordering effects occur which cause a relaxation of Tc to the equilibrium value Tc(p) at this pressure with a time constant depending on the oxygen content x. A decrease x results in a peak effect in dTc/d p at x = 6.7 again, which is enhanced to approx. 12 K/GPa. If the oxygen content is decreased further, dTc/d p first drops to 5 K/GPa at x = 6.6, but the increases to values of more than 20 K/GPa for x < 6.42. These giant pressure effects at low oxygen contents are mainly caused by a reversible Tc increase (dTc/d p)O due to pressure induced oxygen ordering via oxygen motion between unit cells.  相似文献   

10.
YBa2Cu3O7−δ (YBCO) films with high critical current density (Jc) were successfully fabricated on nickel tapes buffered with epitaxial NiO. NiO was prepared on the textured nickel tape by the surface-oxidation epitaxy (SOE) method. We have reported so far a critical temperature (Tc) of 87 K and Jc=4–6×104 A/cm2 (77 K, 0 T) for the YBCO films on NiO/Ni tapes. To enhance the superconducting properties of the YBCO films on the SOE-grown NiO, depositions of thin oxide cap layers such as YSZ, CeO2, and MgO on NiO were investigated. These oxide cap layers were epitaxially grown on NiO and provided the template for the epitaxial growth of YBCO films. Substantially improved data of Tc=88 K and Jc=3×105 A/cm2 (77 K, 0 T) and 1×104 A/cm2 (77 K, Hc, 4 T) were obtained for YBCO film on NiO, by using a MgO cap layer with a thickness of 50 nm. The method described in this paper is a simple way to produce long YBCO tape conductors with high-Jc values.  相似文献   

11.
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   

12.
Experiments on the cuprate superconductors demonstrate that these materials may be viewed as a stack of Josephson junctions along the direction normal to the CuO2 planes (the c-axis). In this paper, we present a model which describes this intrinsic Josephson coupling in terms of incherent quasiparticle hopping along the c-axis arising from wave-function overlap, impurity-assisted hopping, and boson-assised hopping. We use this model to compute the magnitude and temperature T dependence of the resulting Josephson critical current jc(T) for s- and d-wave superconductors. Contrary to other approaches, d-wave pairing in this model is compatible with an intrinsic Josephson effect at all hole concentrations and leads to jc(T) T at low T. By parameterizing our theory with c-axis resistivity data from YBa2Cu3O7−δ (YBCO), we estimate jc(T) for optimally doped and underdoped members of this family. jc(T) can be measured either directly or indirectly through microwave penetration depth experiments, and current measurements on Bi2Sr2CaCu2O8 and La2−xSrxCuO4 are found to be consistent with s-wave pairing and the dominance of assisted hopping processes. The situation in YBCO is still unclear, but our estimates suggest that further experiments on this compound would be of great help in elucidating the validity of our model in general and the pairing symmetry in particular.  相似文献   

13.
Silver-sheathed TlBa2Ca2Cu3O9+δ (Tl-1223) tapes, with a transport critical current density, Jct, of 6200 A/cm2 at 75 K under zero magnetic field, were fabricated by the oxide-powder-in-tube (OPIT) method and characterized using an X-ray diffractometer (XRD), scanning electron microscope (SEM), transmission electron microscope (TEM), and superconducting quantum interference device (SQUID) magnetometer. The results of the magnetization and SEM study indicate that, in these tapes, individual grains are distributed randomly in orientation and weak links exist. However, strongly linked percolative current paths within the tape persisting in increasing fields, accompanied by strong intrinsic interplanar coupling, sustain a significant Jct at high fields and lead to the plateau in the Jct-H curve. Dislocation networks, which may act as effective pinning centers, are the common features observed in the tapes. To investigate the effects on flux pinning due to thermomechanical processing, magnetic relaxation at 1 and 2 T over 5–50 K was measured. The tape shows slightly lower normalized relaxation rates (S=-(1/Mo)dM/ dln t) than the cauliflower-like precursor powder. Analyses of the relaxation data obtained from the tape, after incorporating temperature dependence and field scaling, yield an expression for the effective pinning energy Ueff(J,T,H) = (U1/H0.54)[1-(T/ 72.5)2]4(J/Ji)μ. This result was compared with the prediction of the collective flux-creep model, which suggests that Tl-1223 has a three-dimension-like (3D-like) vortex lattice. Presumably, a more plate-like powder morphology may result in improved texturing by the OPIT process. Tl0.5Bi0.5Sr2CaCu2O7+δ ((Tl,Bi)-1212) powder with this morphology was therefore synthesized for comparison.  相似文献   

14.
We have measured the specific heat capacity of MgCNi3 and (Mg0.85Zn0.15)CNi3 in the temperature range of 0.5 K < T < 10 K with magnetic fields up to 9 T. After the Zn impurity incorporation, Tc of (Mg0.85Zn0.15)CNi3 decreases but the temperature dependence of specific heat remains BCS-like. We show that the data for the two samples are identical when scaled with Tc. This result excludes possible unconventional features theoretically proposed, such as impurity-induced low-energy bound state. Our data suggest that MgCNi3 is a conventional BCS superconductor.  相似文献   

15.
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   

16.
All-thin-film ramp type Josephson junctions between YBa2Cu3O7−δ and Nb have been fabricated. This procedure allows connections between high-Tc and low-Tc superconductors at different crystal sides of the high-Tc superconductor on one chip, which is of great interest for novel phase devices. A thin Au layer is incorporated as a chemical barrier to avoid oxygen transfer from the YBa2Cu3O7−δ to the Nb. Critical current densities up to 600 A/cm2 are obtained at T=4.2 K, with typical RnA values of 0.8 μΩ cm2. The variation of the magnetic field dependence of the critical current with the angle between the junction barrier and the YBa2Cu3O7−δ crystal axes is explained by considering a predominant dx2y2 order parameter symmetry of the YBa2Cu3O7−δ. The successful fabrication of these junctions allows the implementation of novel superconducting electronics, such as complementary Josephson circuitry or proposed qubit concepts, using the unconventional order parameter symmetry of the high-Tc superconductor.  相似文献   

17.
The influence of the sintering conditions on the microstructure and critical current density Jc has been studied on screen-printed Ag-(Bi, Pb)2Sr2Ca2Cu3Ox tapes with a ceramics mono-layer core. Three kinds of fabrication processes, which consist of a combination of cold working (rolling and/or pressing) and sintering, are applied. Four times repetition of pressing and sintering after the pre-sintering produces the highest c-axis alignment and achieves Jc= 1.5 × 104 A/cm2 (77 K, 0 T). The Jc versus θ data with an angle θ between B and the c-axis elucidate the relation between the anisotropy ratio γ=Jc(Bc)/Jc(B|c and the half-height angular width Δθ of a peak for Bc. This is related to both grain alignment and the Jc value. An increase in Jc, which comes from an improvement for grain alignment, enhances γ and narrows Δθ. The Jc versus θ data are fitted to the expression Jc(B, θ)=J c(B, 90°)/[(γ−1)|cos θ|n+1] by regarding both γ and n as adjustable parameters. Fabrication of screen-printed tapes with multilayers (1≤N≤5) is presented, where the critical current increases from 8.0 A to 30.2 A at 77 K and 0 T as N increases.  相似文献   

18.
Pr concentration dependence of the superconducting transition temperature Tc in the Ho1−xPrxBa2Cu3O7−δ system is determined from measurements of DC electrical resistance. This dependence coincides with that for the parallely studied Y1−xPrxBa2Cu3O7−δ reference system. Both systems have the same value of the critical concentration xc=0.58, in accordance with nearly equal ionic radii of Ho3+ and Y3+ ions. It has been shown that the Tc(x) curve can be described with a single mechanism based on a decreasing number of sheet holes trapped by PrIV-ions, if one takes also into account that the number of these ions changes with x.  相似文献   

19.
High-Tc superconducting thin films have been deposited in situ by means of a plasma assisted metal-organic chemical vapour deposition (PAMOCVD) process on LaAlO3. An EMCORE high-speed rotating disc reactor was used to deposit the films at a substrate temperature of 600°C to 800°C. The system is equipped with a (remote) 120 W microwave plasma generator. The oxidising plasma gas is N2O and/or O2 while Ar was used as the inert carrier gas for the different metal-organics. The influence of different process parameters (such as the temperatures of the metal-organics, substrate temperature, and plasma gas composition) on the superconductive properties and on the morphology of the films was investigated. Surface morphology and composition were studied by SEM/EDX or EPMA, and AC susceptibility measurements were used to investigate the superconductive properties (Tc and Jc). X-ray diffraction measurements indicated that single-phase YBa2Cu3O7−x films were epitaxially grown with the 00l orientation perpendicular to the substrate surface. The critical temperature (Tc) of the films is about 90 K and the critical current density (Jc) is higher than 106 A/cm2 at 77 K and zero field.  相似文献   

20.
We studied the coercivity in magnets of composition R17Fe83−χBχ (R = Nd, Pr and χ = 8, 30), using measurements of the coercive field Hc, its angular dependence, and the magnetic viscosity coefficient Sv, for temperatures between 4.2 and 500 K. The results are discussed in relation to a model which does not specifically consider the detailed mechanisms involved in magnetization reversal, but which provides information about the magnetic properties in the activation volume v where magnetization reversal is initiated. It is concluded that the ordering temperature in v tends to be slightly smaller than in the bulk and that the room temperature anisotropy in v is not strongly reduced with respect to the bulk value. Finally, a direct evaluation of the dipolar interactions is in good agreement with results obtained from Hc(T).  相似文献   

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