论文标题
pd $ _x $ erte $ _3 $的bragg玻璃签名与X射线衍射温度集群(X-TEC)
Bragg glass signatures in Pd$_x$ErTe$_3$ with X-ray diffraction Temperature Clustering (X-TEC)
论文作者
论文摘要
Bragg玻璃相是一种几乎完美的晶体,其在存在疾病的情况下预计会发生在涡旋晶格中和电荷密度波系统中。尽管在不同的相关长度方面,但检测它的理论定义鲜明,但仍在挑战。在这里,我们提供了支持在系统无序电荷密度波材料pdxerte3中支持布拉格玻璃相的证据。我们使用综合X射线数据和称为X射线温度聚类或X-TEC的机器学习分析工具来做到这一点。我们在宽温度范围内具有中等插入的样品中建立了不同的相关长度。为了实现此分析,我们引入了对反相关长度的高通量度量,我们称之为峰值扩展。 Bragg玻璃顺序的检测和产生的相图可以使我们对无序和波动之间的复杂相互作用的理解显着理解。此外,我们的分析技术通过高通量的峰值差异来靶向波动,可以彻底改变散射实验中波动的研究。
The Bragg glass phase is a nearly perfect crystal with glassy features predicted to occur in vortex lattices and charge density wave systems in the presence of disorder. Detecting it has been challenging despite its sharp theoretical definition in terms of diverging correlation lengths. Here, we present evidence supporting a Bragg glass phase in the systematically disordered charge density wave material PdxErTe3. We do this using comprehensive x-ray data and a machine learning analysis tool called X-ray temperature clustering, or X-TEC. We establish a diverging correlation length in samples with moderate intercalation over a wide temperature range. To enable this analysis, we introduced a high-throughput measure of inverse correlation length that we call peak spread. The detection of Bragg glass order and the resulting phase diagram advance our understanding of the complex interplay between disorder and fluctuations significantly. Moreover, the use of our analysis technique to target fluctuations through a high-throughput measure of peak spread can revolutionize the study of fluctuations in scattering experiments.