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1.
We report on flux confinement effects in superconducting submicron line, loop and dot structures. The main idea of our study was to vary the boundary conditions for confinement of the superconducting condensate by taking samples of different topology and, through that, modifying the lowest Landau level ELLL(H). Since the critical temperature versus applied magnetic field Tc(H) is, in fact,ELLL (H) measured in temperature units, it is varied as well when the sample topology is changed. We demonstrate that in all the submicron structures studied the shape of theTc (H) phase boundary is determined by the confinement topology in a unique way.  相似文献   

2.
The effect of substitutional disorder on the superconducting properties of YNi2B2C was studied by partially replacing yttrium and nickel by Lu and Pt, respectively. For the two series of (Y, Lu)Ni2B2C and Y(Ni, Pt)2B2C compounds, the upper critical field H c2(T) and the specific heat c p(T, H) in the superconducting mixed state have been investigated. Disorder is found to reduce several relevant quantities such as T c, the upper critical field H c2(0) at T=0 and a characteristic positive curvature of H c2(T) observed for these compounds near T c. The H c2(T) data point to the clean limit for (Y, Lu) substitutions and to a transition to the quasi-dirty limit for (Ni, Pt) substitutions. The electronic specific heat contribution γ(H) exhibits significant deviations from the usual linear γ(H) law. These deviations reduce with growing substitutional disorder but remain even in the quasidirty limit which is reached in the Y(Ni1−x , Pt x )2B2C samples for x=0.1.  相似文献   

3.
The lower critical field H c1 cyl (T) of a superconducting cylinder with radius r 0ξ(T)≪λ(T) is found on the basis of the Ginzburg-Landau theory with various boundary conditions. These results together with the well-known results for the upper critical field are used to construct phase diagrams in terms of the field versus the reduced radius r 0ξ(T) variables. The jump in the average magnetization at H c1 cyl (T) is calculated as a function of the reduced radius. Pis’ma Zh. éksp. Teor. Fiz. 69, No. 8, 537–542 (25 April 1999)  相似文献   

4.
The upper critical field Hc2(T) of the highest Tc(~23K) Nb3Ge superconducting films has been found to be ≈370kG at 4.2K. Measurements on lower Tc films show very broad transitions reflecting nonuniformity. The Hc2(T) characteristics are consistent with other Nb3X type II superconductors.  相似文献   

5.
We present measurements of the superconducting upper critical field Hc2(T) and the magnetic phase diagram of the superconductor ErNi2B2C made with a scanning tunneling microscope (STM). The magnetic field was applied in the basal plane of the tetragonal crystal structure. We have found large gapless regions in the superconducting phase diagram of ErNi2B2C, extending between different magnetic transitions. A close correlation between magnetic transitions and Hc2(T) is found, showing that superconductivity is strongly linked to magnetism.  相似文献   

6.
Measurements of the basal-plane resistivity ρ a(T,H) performed on highly oriented pyrolitic graphite, with magnetic field Hc-axis in the temperature interval 2–300K and fields up to 8 T, provide evidence for the occurrence of both field-induced and zero-field superconducting instabilities. Additionally, magnetization M(T,H) measurements suggest the occurrence of Fermi surface instabilities which compete with the superconducting correlations. Fiz. Tverd. Tela (St. Petersburg) 41, 2135–2138 (December 1999)  相似文献   

7.
Summary It is shown that the behaviour of the temperature dependence of the critical current in polycrystalline thin films of high-T c superconductors depends crucially on the assumption made concerning the nature of the intergranular material. The usual assumption of a superconductor-insulator-superconductor (=SIS) ?sandwich? between each grain leads to a crossover fromI c∼(1−T/T c) toI c∼(1−T/T c)3/2, for temperatures nearT c (whereI c is the critical current,T the absolute temperature, andT c the superconducting transition temperature). Instead, for a superconductor-normal metal-superconductor (=SNS) sandwich the dependenceI c∼(1−T/T c)2 is found for all temperatures. Consideration is given to the effect of self-magnetic field on the analysis. The comparison between expressions for continuous and granular systems is extended. Due to the relevance of its scientific content, this paper has been given priority by the Journal Direction.  相似文献   

8.
The superconducting transition temperature T c of bcc Zr is measured at pressures to 64 GPa. The T c value gradually decreases as pressure is increased. For the Zr-Nb alloys, there are found anomalies in the T c (P) dependences at rather low pressures. The anomalies are discussed within the available theoretical models. We assume on the basis of the T c (P) experimental data for the Zr-Nb alloys that the T c (P) curve for bcc zirconium has a maximum in the metastability region.  相似文献   

9.
The dependence of the temperature of the transition to the superconducting state T c on the pressure up to 60.8 GPa is measured for the TiV alloy. The dependence T c (P) is increasing except for an anomaly in the form of a local minimum near P = 10 GPa. At the maximum pressure of 60.8 GPa, the superconducting transition temperature T c reaches 18.2 K. The obtained curve T c (P) is compared with the known dependences for pure vanadium, for which T c (P) increases to 17.2 K at P = 120 GPa, and for pure niobium and the ZrNb alloy, for which the dependences T c (P) also have anomalies in the form of local maxima at pressures of 5–10 GPa.  相似文献   

10.
A theory describing the magnetic properties of a two-band superconductor with a varying charge carrier density is constructed. The upper critical field H c2(ab) parallel to the ab plane and field H c2(c) parallel to the c axis are determined in the entire temperature range 0 < T < T c . A considerable increase in upper critical field H c2(ab) as compared to H c2(c) because of strong anisotropy of the system is detected. Anisotropy of coefficient γ H = H c2(ab) / H c2(c) is obtained as a function of temperature for pure MgB2 and as a function of the chemical potential in the case when Mg and B atoms are replaced with other chemical elements. A correlation between the variation in the superconducting transition temperature upon an increase in the chemical potential and critical magnetic fields H c2(ab) and H c2(c) is observed. The effect of doping on magnetic anisotropy is also determined.  相似文献   

11.
We have studied the dynamic response of Pb thin films with a square array of antidots by means of ac susceptibility measurements. At low enough ac drive amplitudes h, vortices moving inside the pinning potential give rise to a frequency- and h-independent response together with a scarce dissipation. For higher amplitudes, the average distance travelled by vortices surpasses the pinning range and a critical state develops. We found that the boundary h*(H,T) between these regimes smoothly decreases as T increases whereas a step-like behavior is observed as a function of field. We demonstrate that these steps in h*(H) arise from sharp changes in the pinning strength corresponding to different vortex configurations. For a wide set of data at several fields and temperatures in the critical state regime, we show that the scaling laws based on the simple Bean model are satisfied.Received: 13 October 2003, Published online: 19 February 2004PACS: 74.78.Na Mesoscopic and nanoscale systems - 74.25.Sv Critical currents - 74.78.Db Low-Tc films  相似文献   

12.
This paper reports on a study of the resistance and differential magnetic susceptibility χ ac of lead embedded in nanosized glass pores with a diameter of ∼7 mm, which was performed at temperatures of 6–300 K and magnetic fields of up to 6 T. The field dependence of the resistance R(H) and the temperature dependences of the real, χ″(T), and imaginary, χ″(T), parts of magnetic susceptibility reveal indications of superconducting phase transitions associated with the volume and surface superconductivity of Pb nanopar ticles. The measurements of the field dependence of resistance have been used to set up the H c -T c phase diagram and to carry out a comparison with the study of the heat capacity performed on the same samples.  相似文献   

13.
Using space resolved magneto-optical microscopy we have studied the development of the critical state in high temperature superconducting small-angle grain boundaries in magnetisation experiments. It has been found that with respect to the position in the grain boundary plane this critical state develops in a highly inhomogeneous manner. Towards the centre of the grain boundary there exists a distinct suppression of the inter-granular currents flowing across the grain boundary. A strong correlation between the static (critical current) and the dynamical properties (e.g. electric field or flux-line velocity) of the vortex system inside the grain boundary appears to be the principal mechanism for the observed inhomogeneous current distribution in wide bi-crystalline current bridges.Received: 6 August 2004, Published online: 14 December 2004PACS: 74.25.Sv Critical currents - 74.72.Bk Y-based cuprates - 74.78.Bz High-T c films - 74.81.Bd Granular, melt-textured, amorphous and composite superconductors  相似文献   

14.
The magnetization M(H) in the superconducting state, dc magnetic susceptibility χ(T) in the normal state, and specific heat C(T) near the superconducting transition temperature T c have been measured for a series of fine-crystalline YBa2Cu3O y samples having nearly optimum values of y = 6.93 ± 0.3 and T c = (91.5 ± 0.5) K. The samples differ only in the degree of nanoscale structural inhomogeneity. The characteristic parameters of superconductors (the London penetration depth and the Ginzburg–Landau parameter) and the thermodynamic critical field H c are determined by the analysis of the magnetization curves M(H). It is found that the increase in the degree of nanoscale structural inhomogeneity leads to an increase in the characteristic parameters of superconductors and a decrease in H c(T) and the jump of the specific heat ΔC/T c. It is shown that the changes in the physical characteristics are caused by the suppression of the density of states near the Fermi level. The pseudogap is estimated by analyzing χ(T). It is found that the nanoscale structural inhomogeneity significantly enhances and probably even creates the pseudogap regime in the optimally doped high-T c superconductors.  相似文献   

15.
Analytical calculations based on finite-size spin-wave theory and Monte Carlo (MC) simulations are performed to investigate the validity of the well-known relation m(H, T) = M(H, T)B D[M(H, T) H/T] between the induced magnetization m of the magnetic particle and its intrinsic magnetization M for the Ising and isotropic classical models (B D(x) is the Langevin function, D is the number of spin components, is the number of atoms in the particle). It follows from general arguments and from our analytical results for the Heisenberg model at TT c that this relation is not exact for any finite D and nonzero temperature. Nevertheless, corrections to this formula remain very small practically in the whole range T < T c if ≫ 1, as confirmed by our Monte Carlo calculations. At T T c/4 there is a good agreement between the MC and finite-size spin-wave calculations for the field dependence of m and M for the Heisenberg model with free boundary conditions. Received 1st December 2000  相似文献   

16.
The current-voltage characteristics of granular YBa2Cu3O6.95 high-temperature superconductor samples have been measured at a temperature of 77.3 K in external transverse magnetic fields H ext with a strength of up to H ext ≈ 500 Oe for low transport current densities (0.1 A/cm2j ≤ 0.6 A/cm2). The current-voltage characteristics obtained have been used to construct dependences of the magnetoresistance ρ on the quantities j (ρ(j) Hext=const) and H ext(ρ(H ext) j = const). It has been revealed that the current and field dependences of the magnetoresistance exhibit anomalies at H extH c1g , where H c1g is the lower critical field of superconducting grains. A comparative analysis of the dependences ρ(j)H ext = const and ρ(H ext) j = const has made it possible to develop concepts regarding the influence of the processes of redistribution of the magnetic field between grain boundaries and superconducting grains on the transport and galvanomagnetic properties of granular high-temperature superconductors. It has been established that the field dependences of the magnetoresistance exhibit specific features associated with the beginning of penetration of Josephson vortices into grain boundaries in the magnetic field H c1J and with the breaking of a continuous chain of Josephson junctions in the magnetic field H c2J .  相似文献   

17.
Measurements of the temperature dependence of the electrical resistance R(T) below the superconducting transition temperature have been performed at different values of the transport current in HTSC+CuO composites modeling a network of weak S-I-S Josephson junctions (S—superconductor, I—insulator). It has been shown experimentally that the temperature dependence R(T) at different values of the transport current is adequately described by means of the mechanism of thermally activated phase slippage developed by Ambegaokar and Halperin for tunnel structures. Within the framework of this model we have numerically calculated the temperature dependence of the critical current J c(T) as defined by various criteria. Qualitative agreement obtains between the measured and calculated temperature dependences J c(T). Fiz. Tverd. Tela (St. Petersburg) 41, 969–974 (June 1999)  相似文献   

18.
We report the results of magnetization measurements on the unconventional superconductor PrPt4Ge12 in its superconducting state. A distinct positive curvature is observed in the temperature dependence of the lower critical field H C1(T) and the upper critical field H C2(T) around 5.5?K. The zero field critical current density J C(T, H?=?0) is found to vary nearly linearly with temperature. We argue that these observed features are due to the existence of two superconducting gaps in the material. The normalized superfluid density is estimated from the temperature dependence of H C1. Our detailed analysis of the normalized superfluid density using a two-gap model indicates the presence of line nodes in the larger gap. The H C2(T) line can be fitted with the Usadel equations, and the positive curvature in H C2(T) is shown to be consistent with the two-gap picture of superconductivity.  相似文献   

19.
A pronounced peak in the microwave (at frequency 9.55 GHz) surface resistance, R s vs. T plot (where T is the temperature) has been observed in epitaxial DyBa2Cu3O7−y superconducting thin films in magnetic fields (parallel to c-axis) in the range 2 to 8 kOe, and temperatures close to the superconducting transition temperature T c(H). Our data suggest that the nature of peaks observed in the two films is different, thereby indicating different defect structures in the films.  相似文献   

20.
The critical supercooling field H sc is measured in aluminum single crystals and twinned bicrystals in a temperature range slightly below T c0 (T c0 ? 0.055 K < T < T c0), where T c0 is the critical superconducting transition temperature. It is found that, even in this small temperature range, the H sc(H c) dependence, which is considered to be identical to the H c3(H c) dependence for single crystals, is substantially nonlinear. The H sc(H c) dependences of the twinned bicrystals and single crystals are shown to be significantly different. The qualitative features of the phase diagram of the twinned aluminum bicrystals coincide with those of the phase diagram of twinning-plane superconductivity obtained earlier for tin in [1]. These findings allow the conclusion that the phenomenon of twinning-plane superconductivity also exists in face-centered cubic crystal lattices.  相似文献   

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