Valence state of Mn in La1−xSrxMnO3 probed by resonant Mn 3s→2p x-ray emission spectroscopy

Y. Taguchi, J. Takasu, T. Mizoroki, T. Muro, T. Kinoshita, K. Mimura
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Abstract

Mn 3→2 xray emission spectrum is measured at the Mn 21/2 photoabsorption maximum around 653 eV for polycrystalline La1−SrMnO3 with  from 0 to 1. A doublepeak structure like the exchange splitting in the Mn 3 corelevel photoemission spectrum is observed in the Mn 3→21/2 emission spectrum. With increasing , the splitting energy of the doublepeak in the emission is nearly constant up to around = 0.5 and then decreases until = 1. This is consistent with the dependence of the Mn 3 electron number in doped manganite estimated in previous studies. It indicates that the splitting energy in the emission measures the Mn 3 spin moment or the Mn valence state of manganites. The probing depth of the method is about 100 nm.
用共振Mn 3s→2p x射线发射光谱探测La1−xSrxMnO3中Mn的价态
在多晶La1−SrMnO3(为0 ~ 1)的653 eV附近,在Mn 2/2光吸收最大值处测量了mn3 →2x射线发射光谱。在Mn 3 →21/2发射光谱中观察到与Mn 3 核能级的交换分裂类似的双峰结构。随着的增大,发射中双峰的分裂能在= 0.5左右基本保持不变,然后逐渐减小,直至= 1。这与先前研究中估计的掺杂锰矿中Mn - 3的电子数依赖性是一致的。结果表明,发射中的分裂能反映了锰锰的锰价态或Mn - 3的自旋矩。该方法的探测深度约为100 nm。
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