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首页> 外文期刊>Journal of Fluorine Chemistry >Zero-field splitting of the ground state and local lattice distortions for Fe~(3+) ions at the tetragonal FeF5O cluster center in Fe~(3+):KMgF3 crystals
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Zero-field splitting of the ground state and local lattice distortions for Fe~(3+) ions at the tetragonal FeF5O cluster center in Fe~(3+):KMgF3 crystals

机译:Fe〜(3 +):KMgF3晶体四方FeF5O簇中心处Fe〜(3+)离子的基态零场分裂和局部晶格畸变

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摘要

The relations between the zero-field splitting (ZFS) parameters and the structural parameters of the tetragonal FeF5O cluster center in Fe~(3+):KMgF3 crystals have been established by means of the microscopic spin Hamiltonian theory and the superposition model (SPM). On the basis of this, the local structure distortions, the second-order ZFS parameter D, the fourth-order one (a + 2F/3), and the energy level separations Δ1 and Δ2 of the ground spin state for Fe~(3+) ion doped in Fe~(3+):KMgF3 crystals are theoretically investigated. We use complete diagonalization method (CDM) and take into account the electronic magnetic interactions, i.e. the spin-spin (SS), the spin-other-orbit (SOO), and the orbit-orbit (OO) interactions, besides the well-known spin-orbit (SO) interaction. This investigation reveals that the replacement of O~(2-) for F~- and the induced lattice relaxation ΔR2(0), combined with an inward relaxation of the nearest five fluorine ions ΔR1(F) give rise to a strong tetragonal crystal field, which yields the large ZFS of the ground state. The theoretically calculated parameters D, (a + 2F/3), Δ1 and Δ2 for Fe~(3+):KMgF3 crystals are in good agreement with experimental ones when the five F" ions move toward Fe~(3+) by |ΔR1(F)| = 6.40 x 1~(-4and the O~(2-) ion toward Fe~(3+) by |ΔR2(0)| = 10.55 x 10~(-3) nm.
机译:利用微观自旋哈密顿理论和叠加模型(SPM),建立了Fe〜(3 +):KMgF3晶体中零场分裂(ZFS)参数与四方FeF5O团簇中心结构参数之间的关系。 。在此基础上,Fe〜(3)的局部结构畸变,二阶ZFS参数D,四阶一(a + 2F / 3)以及自旋态的能级间隔Δ1和Δ2理论上研究了Fe〜(3 +):KMgF3晶体中掺杂的+)离子。我们使用完全对角线化方法(CDM),并考虑了电磁相互作用,即自旋-自旋(SS),自旋-其他轨道(SOO)和轨道-轨道(OO)相互作用,已知的自旋轨道(SO)相互作用。该研究表明,用O〜(2-)代替F〜-和诱导的晶格弛豫ΔR2(0),再加上最近的五个氟离子ΔR1(F)的向内弛豫,产生了很强的四方晶场,这会产生较大的基态ZFS。 Fe〜(3 +):KMgF3晶体的理论计算参数D,(a + 2F / 3),Δ1和Δ2与5个F“离子向Fe〜(3+)方向移动|时的实验值与实验值吻合良好。 ΔR1(F)| = 6.40 x 1〜(-4,O〜(2-)离子朝向Fe〜(3 +),|ΔR2(0)| = 10.55 x 10〜(-3)nm。

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