Koide T, Miyauchi H, Okamoto J, Shidara T, Sekine T, Saitoh T, Fujimori A, Fukutani H, Takano M, Takeda Y
Photon Factory, IMSS, High Energy Accelerator Research Organization, Tsukuba, Ibaraki 305, Japan.
Phys Rev Lett. 2001 Dec 10;87(24):246404. doi: 10.1103/PhysRevLett.87.246404. Epub 2001 Nov 19.
The first observation of a magnetic circular x-ray dichroism (MCXD) at the Mn L2,3 core edges in antiferromagnetic LaMnO3 shows canted spin and orbital ( m(orb)) moments arising from lattice distortions. An L2,3-edge MCXD in ferromagnetic metals and insulators, La1-xSr(x)MnO3+delta, reveals that m(orb) of Mn strongly depends on x in the metallic regime but remains unchanged with the metal-to-insulator transition (x approximately 0.16). An O K-edge MCXD, which shows m(orb) of O caused by 2p-3d hybridization, is much larger in the ferromagnetic metal than insulator phases, sharply contrasting with m(orb) of Mn. Our findings indicate a close magnetism-lattice-hybridization coupling.
在反铁磁体LaMnO₃的Mn L₂,₃ 芯边首次观测到磁圆X射线二色性(MCXD),结果表明晶格畸变会产生倾斜的自旋和轨道(m(orb))矩。在铁磁金属和绝缘体La₁₋ₓSrₓMnO₃₊δ 中的L₂,₃ 边MCXD显示,在金属态下,Mn的m(orb)强烈依赖于x,但随着金属-绝缘体转变(x约为0.16),其保持不变。O K边MCXD显示由2p - 3d杂化引起的O的m(orb),在铁磁金属相中比在绝缘相中要大得多,这与Mn的m(orb)形成鲜明对比。我们的研究结果表明存在紧密的磁性-晶格-杂化耦合。