MO6SE8-CLUSTER-BASED SUPERCONDUCTING COMPOUNDS CS2MO12SE14 AND RB4MO18SE20 - EVIDENCE FOR A STRONGLY CORRELATED AND ANISOTROPIC ELECTRON-SYSTEM

被引:19
作者
BRUSETTI, R
LABORDE, O
SULPICE, A
CALEMCZUK, R
POTEL, M
GOUGEON, P
机构
[1] CEN GRENOBLE, CRYOPHYS LAB, F-38042 GRENOBLE, FRANCE
[2] UNIV RENNES, CHIM MINERALE LAB B, F-35042 RENNES, FRANCE
关键词
D O I
10.1103/PhysRevB.52.4481
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We studied the normal and superconducting states of the title compounds by measuring the conductivity and magnetization of single crystals and powder samples. From the upper and lower critical fields we deduced the characteristic lengths and thermodynamical fields. These results are borne out by our specific-heat measurements. We recognize in these compounds many features of the Chevrel-phase superconductors, including very small coherence lengths and strong-coupling-like effects. However, we show that the electron system is much more anisotropic and still less delocalized in these materials where the Mo6Se8 clusters have condensed in Mo6nSe6n+2 finite chains. This condensation is accompanied by an enhancement of the magnetic response whereas the lengthening of the chains leads to a counteracting reduction of the density of carriers. This indicates that superconductivity is built upon highly correlated molecular states. Reviewing the available data on the other Chevrel-cluster-based superconductors confirms this picture and suggests that the small coherence lengths reflect the local character of the electron pairing. This comparison also shows that forming finite chains of Mo6Se8 clusters makes the electron correlations more repulsive and pushes the electron system near the borderline between superconductivity and magnetism. In this respect these compounds could provide valuable complementary information on issues which are at the center of the research upon high-T-c superconductivity.
引用
收藏
页码:4481 / 4493
页数:13
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