论文标题

透射电子显微镜中磁性布拉格散射的模拟

Simulations of magnetic Bragg scattering in transmission electron microscopy

论文作者

Snarski-Adamski, Justyn, Edström, Alexander, Zeiger, Paul, Castellanos-Reyes, José Ángel, Lyon, Keenan, Werwiński, Mirosław, Rusz, Ján

论文摘要

我们已经模拟了两种抗铁磁化合物Nio和Lamnaso中的透射电子显微镜中的磁性Bragg散射。劳登(Loudon)在Nio中观察到了这种弱磁现象。我们有计算复制的Loudon的实验数据,为了进行比较,我们对Lamnaso化合物进行了计算,作为一个更具挑战性的情况,其中包含较低的磁元素浓度和强烈散射的较重的非磁性元素。我们还描述了两种化合物的抗铁磁bragg斑的强度的厚度和电压依赖性。我们考虑了两种计算方法中的晶格振动,一种假设具有Debye-Waller涂抹电势的静态晶格,另一种明确考虑了声子模型量子激发内的原子振动(热扩散散射)。结构分析表明,抗磁性bragg斑点出现在NIO的(111)和(000)之间,而对于Lamnaso,抗磁性bragg斑点出现在衍射模式的(010)反射的位置,这与晶体结构的禁止反射相对应。计算预测,NIO中磁性斑点的强度明显比室温下的热弥散散射强。对于Lamnaso而言,磁性bragg斑点比室温热弥散散射弱,但在降低温度下可以促进其检测。

We have simulated the magnetic Bragg scattering in transmission electron microscopy in two antiferromagnetic compounds, NiO and LaMnAsO. This weak magnetic phenomenon was experimentally observed in NiO by Loudon. We have computationally reproduced Loudon's experimental data, and for comparison we have performed calculations for the LaMnAsO compound as a more challenging case, containing lower concentration of magnetic elements and strongly scattering heavier non-magnetic elements. We have also described thickness and voltage dependence of the intensity of the antiferromagnetic Bragg spot for both compounds. We have considered lattice vibrations within two computational approaches, one assuming a static lattice with Debye-Waller smeared potentials, and another explicitly considering the atomic vibrations within the quantum excitations of phonons model (thermal diffuse scattering). The structural analysis shows that the antiferromagnetic Bragg spot appears in between (111) and (000) reflections for NiO, while for LaMnAsO the antiferromagnetic Bragg spot appears at the position of the (010) reflection in the diffraction pattern, which corresponds to a forbidden reflection of the crystal structure. Calculations predict that the intensity of the magnetic Bragg spot in NiO is significantly stronger than thermal diffuse scattering at room temperature. For LaMnAsO, the magnetic Bragg spot is weaker than the room-temperature thermal diffuse scattering, but its detection can be facilitated at reduced temperatures.

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