Miyasaka S, Okuda T, Tokura Y
Joint Research Center for Atom Technology (JRCAT), Tsukuba 305-0046, Japan.
Phys Rev Lett. 2000 Dec 18;85(25):5388-91. doi: 10.1103/PhysRevLett.85.5388.
Critical behavior of the metal-insulator transition (MIT) coupled with spin/orbital correlations has been investigated for single crystals of La1-(x)Sr(x)VO3. In the paramagnetic (PM) metal phase (x > 0.260), the precursor to the MIT manifests itself as an enhancement of carrier effective mass. In the antiferromagnetic (AF) metal phase (0.178 < or = x < or = 0.260), the carrier density decreases and the correlation of the orbital seems to evolve towards the MIT (x = 0.178). In the AF insulating phase (x < 0.178), the distinct first-order structural phase transition occurs with the decrease of temperature, perhaps concomitantly with the orbital ordering.
已对La1-(x)Sr(x)VO3单晶的金属-绝缘体转变(MIT)与自旋/轨道相关性的临界行为进行了研究。在顺磁(PM)金属相(x > 0.260)中,MIT的前兆表现为载流子有效质量的增强。在反铁磁(AF)金属相(0.178 ≤ x ≤ 0.260)中,载流子密度降低,轨道相关性似乎朝着MIT(x = 0.178)演变。在AF绝缘相(x < 0.178)中,随着温度降低会发生明显的一级结构相变,这可能与轨道有序化同时发生。