MUON-SPIN-ROTATION AND RELAXATION STUDIES IN (TMTSF)(2)-X COMPOUNDS

被引:89
作者
LE, LP
KEREN, A
LUKE, GM
STERNLIEB, BJ
WU, WD
UEMURA, YJ
BREWER, JH
RISEMAN, TM
UPASANI, RV
CHIANG, LY
KANG, W
CHAIKIN, PM
CSIBA, T
GRUNER, G
机构
[1] UNIV CALIF LOS ANGELES, CTR SOLID STATE SCI, LOS ANGELES, CA 90024 USA
[2] EXXON RES & ENGN CO, ANNANDALE, NJ 08801 USA
[3] UNIV BRITISH COLUMBIA, DEPT PHYS, VANCOUVER V6T 1W5, BC, CANADA
[4] PRINCETON UNIV, DEPT PHYS, PRINCETON, NJ 08544 USA
[5] UNIV CALIF LOS ANGELES, DEPT PHYS, LOS ANGELES, CA 90024 USA
关键词
D O I
10.1103/PhysRevB.48.7284
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Muon-spin-rotation and relaxation (muSR) studies of the organic compounds (TMTSF)2-X (X = PF6, NO3, and ClO4) at ambient pressure are reported. We observe spin-density-wave (SDW) states in all three compounds under zero external magnetic field. The onset of the SDW is extremely sharp, which may indicate a first-order transition. The sublattice magnetization (or SDW amplitude) in the PF6 compound exhibits significant reduction with increasing temperature at low temperatures, which demonstrates the existence of collective low-energy excitations, in addition to the single-particle excitations across the SDW gap. The large spin-wave stiffness we observe in this system is incompatible with a Heisenberg model for a localized spin system; this demonstrates the importance of using an itinerant-electron picture to describe the magnetic behavior of this system. The broad distribution of local magnetic fields deduced from the muSR time spectra is consistent with that expected from an incommensurate SDW. The magnitude of the internal field at T --> 0 is approximately the same for the three systems, suggesting a common SDW amplitude in these systems. Transverse-field muSR measurements in the relaxed-state ClO4 system show no visible enhancement of the relaxation rate in the superconducting state down to 0.1 K, providing a lower limit for the superconducting penetration depth lambda(ab') greater-than-or-equal-to 12000 angstrom.
引用
收藏
页码:7284 / 7296
页数:13
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