Russian Research Centre 'Kurchatov Institute', Kurchatov Square 1, Moscow 123182, Russia.
J Phys Condens Matter. 2010 Dec 15;22(49):495601. doi: 10.1088/0953-8984/22/49/495601.
Muon spin rotation/relaxation spectroscopy has been employed to study electron localization into a bound magnetic polaron around the positive muon in the 3d magnetic spinel semiconductor CdCr2Se4 at temperatures up to 300 K (far above the ferromagnetic transition at Tc = 130 K) in magnetic fields up to 7 T. Electron localization into a magnetic polaron occurs due to its strong exchange interaction with the magnetic 3d electrons of local Cr(3 +) ions, which confines its wavefunction to within R≈0.3 nm, allowing significant overlap with both the nearest and the next nearest shells of Cr ions. Formation of such magnetic polarons may explain peculiar electronic and magnetic properties of magnetic semiconductors.
穆斯堡尔旋转/弛豫谱被用来研究在磁场高达 7T 的情况下,3d 磁性尖晶石半导体 CdCr2Se4 中,正 μ 子周围的束缚磁极化子中电子的局域化,温度高达 300K(远高于铁磁转变温度 Tc = 130K)。由于与局域 Cr(3+)离子的磁性 3d 电子的强交换相互作用,电子局域化到磁极化子中,将其波函数限制在 R≈0.3nm 内,从而与 Cr 离子的最近和次近壳层有很大的重叠。这种磁极化子的形成可能解释了磁性半导体的特殊电子和磁性性质。