Perry R S, Kitagawa K, Grigera S A, Borzi R A, Mackenzie A P, Ishida K, Maeno Y
Kyoto University International Innovation Center, Kyoto 606-8501, Japan.
Phys Rev Lett. 2004 Apr 23;92(16):166602. doi: 10.1103/PhysRevLett.92.166602.
We present measurements on ultraclean single crystals of the bilayered ruthenate metal Sr3Ru2O7, which has a magnetic-field-tuned quantum critical point. Quantum oscillations of differing frequencies can be seen in the resistivity both below and above its metamagnetic transition. This frequency shift corresponds to a small change in the Fermi surface volume that is qualitatively consistent with the small moment change in the magnetization across the metamagnetic transition. Very near the metamagnetic field, unusual behavior is seen. There is a strong enhancement of the resistivity in a narrow field window, with a minimum in the resistivity as a function of temperature below 1 K that becomes more pronounced as the disorder level decreases. The region of anomalous behavior is bounded at low temperatures by two first-order phase transitions. The implications of the results are discussed.
我们展示了对双层钌酸盐金属Sr3Ru2O7超净单晶的测量结果,该材料具有磁场调谐量子临界点。在其变磁转变温度以下和以上的电阻率中都可以看到不同频率的量子振荡。这种频率偏移对应于费米面体积的微小变化,这在定性上与变磁转变过程中磁化强度的微小矩变化一致。在非常接近变磁场时,可以观察到异常行为。在一个狭窄的磁场窗口中,电阻率有强烈增强,在低于1 K的温度下,电阻率随温度的变化存在一个最小值,且随着无序度降低,这个最小值变得更加明显。异常行为区域在低温下由两个一级相变界定。文中讨论了这些结果的意义。