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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Quasiparticle dynamics in cuprate superconductors: probing the superconducting condensate
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APS -APS March Meeting 2017 - Event - Quasiparticle dynamics in cuprate superconductors: probing the superconducting condensate

机译:APS -APS 2017年3月会议-活动-铜酸盐超导体中的准粒子动力学:探测超导冷凝物

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High-T$_{C}$ superconductivity is a long-standing open problem in the modern physics. Thus, the development of novel techniques to approach the problem from yet unexplored points of view is crucial and highly desirable. Time- and angle-resolved photoemission spectroscopy (TR-ARPES) can provide new insights on long sought-after dynamical properties in High-T$_{C}$ superconductors [1,2]. Here we will present a TR-ARPES study on underdoped Bi2201 and Bi2212 cuprate superconductors where we are able to track the temporal evolution of the superconducting condensate. In particular, we will show how the quasiparticle lifetime is modified upon the optical excitation, and also how the temporal evolution of the different terms contributing to the quasiparticle lifetime can be disentangled. Finally, the study of the momentum- and energy-dependence of the relaxation processes allows us to find a direct connection between recombination dynamics and ultrafast evolution of the superconducting condensate.[1] C. L. Smallwood et al. Science 336, 1137 (2012)[2] C. Piovera et al. Phys. Rev. B 91, 224509 (2015)
机译:高T $ _ {C} $超导性是现代物理学中一个长期存在的开放问题。因此,开发尚未解决的观点来解决该问题的新技术是至关重要的,也是非常需要的。时间和角度分辨光发射光谱法(TR-ARPES)可以为High-T $ _ {C} $超导体中广受欢迎的动力学特性提供新的见解[1,2]。在这里,我们将介绍对掺杂不足的Bi2201和Bi2212铜酸盐超导体的TR-ARPES研究,我们可以跟踪超导冷凝物的时间演化。特别是,我们将展示如何在光激发下改变准粒子的寿命,以及如何解开有助于准粒子寿命的不同项的时间演化。最后,对弛豫过程的动量和能量依赖性的研究使我们能够找到复合动力学与超导冷凝物超快演化之间的直接联系。[1] C. L. Smallwood等。 Science 336,1137(2012)[2] C. Piovera等。物理版本B 91,224509(2015)

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