Stockert O, Faulhaber E, Zwicknagl G, Stüsser N, Jeevan H S, Deppe M, Borth R, Küchler R, Loewenhaupt M, Geibel C, Steglich F
Max-Planck-Institut CPfS, Nöthnitzer Strasse 40, D-01187 Dresden, Germany.
Phys Rev Lett. 2004 Apr 2;92(13):136401. doi: 10.1103/PhysRevLett.92.136401. Epub 2004 Apr 1.
Neutron diffraction experiments have been performed on a magnetically ordered CeCu2Si2 single crystal exhibiting A-phase anomalies in specific heat and thermal expansion. Below T(N) approximately 0.8 K antiferromagnetic superstructure peaks have been detected. The propagation vector of the magnetic order appears to be determined by the topology of the Fermi surface of heavy quasiparticles as indicated by renormalized band-structure calculations. The observation of long-range incommensurate antiferromagnetic order as the nature of the A phase in CeCu2Si2 suggests that a spin-density-wave instability is the origin of the quantum critical point in CeCu2Si2.
已对在比热和热膨胀方面表现出A相异常的磁有序CeCu2Si2单晶进行了中子衍射实验。在约0.8K以下的TN温度下,检测到了反铁磁超结构峰。如重整化能带结构计算所示,磁有序的传播矢量似乎由重准粒子费米面的拓扑结构决定。在CeCu2Si2中观察到长程非公度反铁磁有序作为A相的本质,这表明自旋密度波不稳定性是CeCu2Si2中量子临界点的起源。