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首页> 外文期刊>Physics and Chemistry of Minerals >Ion tracks in apatite at high pressures: the effect of crystallographic track orientation on the elastic properties of fluorapatite under hydrostatic compression
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Ion tracks in apatite at high pressures: the effect of crystallographic track orientation on the elastic properties of fluorapatite under hydrostatic compression

机译:高压下磷灰石中的离子轨迹:在静水压缩下结晶轨迹取向对氟磷灰石弹性性质的影响

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Static elasticity measurements at high pressures were carried out on oriented fluorapatite single crystals, some of which contained oriented amorphous ion tracks (ITs) implanted with relativistic Au ions (2.2 GeV) from the UNILAC linear accelerator at GSI, Darmstadt. High-pressure experiments on irradiated and non-irradiated crystal sections were carried out in diamond-anvil high-pressure cells under hydrostatic conditions. In situ single-crystal diffraction was performed to determine the high-precision lattice parameters, simultaneously monitoring the widths of X-ray diffraction Bragg peaks. High-pressure Raman spectra were analyzed with respect to the frequency shift and widths of bands, which correspond to the Raman-active vibrational modes of the phosphate tetrahedra. Swift heavy ion irradiation was found to induce anisotropic lattice expansion and tensile strain within the host lattice dependent on the ion-track orientation. The relatively low Grüneisen parameter for the ν 1b(A g) mode, which has been assigned to originate from the volume fraction of the amorphous tracks, and the γ(ν 1a)/γ(ν 1b) ratio reveals compressive strain on the amorphous ITs. The comparative compressibilities for the host lattice reveal approximately equivalent bulk moduli, but significantly different pressure derivatives (K T = 88.4 ± 0.7 GPa, ∂K/∂P = 6.3 ± 0.3 for non-irradiated, K T = 90.0 ± 1.7 GPa, ∂K/∂P = 3.8 ± 0.5 for irradiated samples). The axial compressibility moduli β −1 reveal significant differences, which correlate with the ion-track orientation [ = 240 ± 5 GPa, = 361 ± 14 GPa, ∂/∂P = 11.3 ± 1.2, ∂/∂P = 11.6 ± 3.4 for irradiation ⊥(100); 246 ± 9 GPa, 364 ± 57 GPa, 9.5 ± 2.9, 14.7 ± 14.1 for irradiation ⊥(001), 230.7 ± 3.6 GPa, 373.5 ± 5.1 GPa, 19.2 ± 1.4, 20.1 ± 1.8 for no irradiation]. Line widths of XRD Bragg peaks in irradiated apatites confirm the strain of the host lattice, which appears to decrease with increasing pressure. By contrast, the bandwidths of Raman modes increase with pressure, and this is attributed to increasing strain gradients on the length scale of the short-range order. The investigations reveal considerable deviatoric stress on the [100]-oriented tracks due to the anisotropic elasticity, while the compression is uniform for the directions perpendicular to the tracks, which are aligned parallel to the c-axis. This difference might be considered to control the diffusion properties related to the annealing kinetics and its observed anisotropy, and hence to cause potential pressure effects on track-fading rates.
机译:在定向的氟磷灰石单晶上进行了高压静态静力测量,其中一些晶体包含定向的无定形离子迹线(IT),该离子束注入了来自达姆施塔特GSI的UNILAC线性加速器的相对论金离子(2.2 GeV)。在静水压条件下,在金刚石-砧座高压电池中进行了辐照和未辐照晶体切片的高压实验。执行原位单晶衍射以确定高精度晶格参数,同时监测X射线衍射布拉格峰的宽度。分析了高压拉曼光谱的频移和谱带宽度,其对应于磷酸盐四面体的拉曼活性振动模式。快速重离子辐照被发现可诱导各向异性晶格膨胀和主晶格内的拉伸应变,具体取决于离子轨迹的方向。 ν 1b (A g )模式的相对较低的Grüneisen参数,已将其指定为源自非晶轨道的体积分数和γ(ν< sub> 1a )/γ(ν 1b )比揭示了非晶态IT的压缩应变。主体晶格的可压缩性显示出近似相等的体积模量,但压力导数显着不同(K T = 88.4±0.7 GPa,未辐照,∂K/∂P= 6.3±0.3,K < sub> T = 90.0±1.7 GPa,辐照样品的∂K/∂P= 3.8±0.5)。轴向压缩模量β −1 显示出显着差异,这与离子轨迹方向有关[= 240±5 GPa,= 361±14 GPa,∂/∂P= 11.3±1.2,∂/ irradiationP = 11.6±3.4照射irradiation(100);照射时为246±9 GPa,364±57 GPa,9.5±2.9、14.7±14.1⊥(001),230.7±3.6 GPa,373.5±5.1 GPa,19.2±1.4、20.1±1.8为无照射]。辐照磷灰石中XRD布拉格峰的线宽证实了主体晶格的应变,该应变似乎随着压力的增加而减小。相比之下,拉曼模式的带宽随压力而增加,这归因于短程级长度尺度上应变梯度的增加。研究表明,由于各向异性弹性,[100]取向的轨道上存在相当大的偏应力,而垂直于轨道的方向(平行于c轴)的压缩是均匀的。可以考虑该差异来控制与退火动力学及其观察到的各向异性有关的扩散特性,从而对轨迹衰落速率产生潜在的压力影响。

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