论文标题
通过FESE $ _ {0.9} $ s $ _ {0.1} $超导体的电子列敏感性的动量分辨测量
Momentum-resolved measurement of electronic nematic susceptibility in the FeSe$_{0.9}$S$_{0.1}$ superconductor
论文作者
论文摘要
当多个自由度强烈耦合时,通常很难揭示相变的驱动力。一个例子是基于铁的超导体中的列相变。由于不同程度的自由度之间的复杂交织,其机制仍然存在争议。在本文中,我们报告了一种使用角度分辨光发射光谱(ARPES)和$ - $ - $ - $ - $ $ $ $ $ train-tem-tear-teuning设备的方法来测量FESE $ _ {0.9} $ s $ _ {0.1} $的列表的方法。列敏感性的特征在于由单轴菌株诱导的带能量移位。我们发现,列敏感性的温度依赖性依赖于动量。随着温度从高温侧接近列的过渡温度,布里渊区中心的列敏感性仍然很弱,同时在布里鲁因区角显示出不同的行为。我们的结果突出了动量空间中列级参数的复杂性,这为列神经相变的驱动机理提供了关键的线索。我们的实验方法可以直接在动量空间中直接探测电子,这为研究各种材料中的复杂相变的新方法提供了一种新的方法。
Unveiling the driving force for a phase transition is normally difficult when multiple degrees of freedom are strongly coupled. One example is the nematic phase transition in iron-based superconductors. Its mechanism remains controversial due to a complex intertwining among different degrees of freedom. In this paper, we report a method for measuring the nematic susceptibly of FeSe$_{0.9}$S$_{0.1}$ using angle-resolved photoemission spectroscopy (ARPES) and an $in$-$situ$ strain-tuning device. The nematic susceptibility is characterized as an energy shift of band induced by a tunable uniaxial strain. We found that the temperature-dependence of the nematic susceptibility is strongly momentum dependent. As the temperature approaches the nematic transition temperature from the high temperature side, the nematic susceptibility remains weak at the Brillouin zone center while showing divergent behavior at the Brillouin zone corner. Our results highlight the complexity of the nematic order parameter in the momentum space, which provides crucial clues to the driving mechanism of the nematic phase transition. Our experimental method which can directly probe the electronic susceptibly in the momentum space provides a new way to study the complex phase transitions in various materials.