Physikalisches Institut and Bethe Center for Theoretical Physics, Universität Bonn, Nussallee 12, 53115 Bonn, Germany.
J Phys Condens Matter. 2010 Apr 28;22(16):164203. doi: 10.1088/0953-8984/22/16/164203. Epub 2010 Mar 30.
We propose a new criterion for distinguishing the Hertz-Millis (HM) and the local quantum critical (LQC) mechanism in heavy-fermion systems with a magnetic quantum phase transition (QPT). The criterion is based on our finding that the complete spin screening of Kondo ions can be suppressed by the Ruderman-Kittel-Kasuya-Yosida (RKKY) coupling to the surrounding magnetic ions even without magnetic ordering and that, consequently, the signature of this suppression can be observed in spectroscopic measurements above the magnetic ordering temperature. We apply the criterion to high-resolution photoemission measurements on CeCu(6 - x)Au(x) and conclude that the QPT in this system is dominated by the LQC scenario.
我们提出了一个新的判据,用于区分重费米子系统中具有磁量子相变(QPT)的赫茨-米利斯(HM)和局域量子临界(LQC)机制。该判据基于我们的发现,即即使没有磁有序,康多离子的完全自旋屏蔽也可以被与周围磁离子的Ruderman-Kittel-Kasuya-Yosida(RKKY)耦合所抑制,因此,这种抑制的特征可以在高于磁有序温度的光谱测量中观察到。我们将该判据应用于 CeCu(6 - x)Au(x)的高分辨率光电子发射测量,并得出结论,该系统中的 QPT 主要由 LQC 情景主导。