ELECTRODYNAMICS OF THE SPIN-DENSITY-WAVE GROUND-STATE - OPTICAL EXPERIMENTS ON (TMTSF)(2)PF6

被引:40
作者
DONOVAN, S
KIM, Y
DEGIORGI, L
DRESSEL, TM
GRUNER, G
WONNEBERGER, W
机构
[1] ETH ZURICH,FESTKORPERPHYS LAB,CH-8093 ZURICH,SWITZERLAND
[2] UNIV CALIF LOS ANGELES,CTR SOLID STATE SCI,LOS ANGELES,CA 90024
[3] UNIV ULM,FAK NAT WISSENSCH,MATH PHYS ABT,D-89081 ULM,GERMANY
来源
PHYSICAL REVIEW B | 1994年 / 49卷 / 05期
关键词
D O I
10.1103/PhysRevB.49.3363
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Conductivity measurements are reported in the organic linear-chain compound (TMTSF)(2)PF6, in both the metallic and spin-density-wave states. The components of the complex conductivity were established by measurements in the radio-frequency, micro- and millimeter wave, and infrared spectral ranges. At temperatures above the spin-density-wave transition, a Drude-like metallic behavior was found together with a temperature-independent feature at higher frequencies. An observed Drude scattering rate of 3 cm(-1) was found, placing the material well into the clean limit. In the spin-density-wave state, the low field de resistivity shows an activated behavior similar to a standard semiconductor with a gap value 2 Delta/k(B) approximate to 45 K. The ac response shows a strong frequency dependence, and most importantly, we observe two subgap modes: a very broad one in the radio frequency range, due to internal deformations of the spin density wave, and a narrow mode near 0.1 cm(-1), which we interpret as the response of the q=0 phason. Furthermore, as expected for a material in the clean limit, we do not see evidence for a single particle gap in the infrared spectral range. In this paper, we will compare our experimental results with the various models of spin-density-wave dynamics and comment on the current status of the understanding of the dynamical response of spin density waves.
引用
收藏
页码:3363 / 3377
页数:15
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