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飞秒时间尺度下钙铜氧体系中共振非弹性 X 射线散射的动量依赖磁激发动力学

Femtosecond dynamics of momentum-dependent magnetic excitations from resonant inelastic X-ray scattering in CaCu2O3.

机构信息

Leibniz Institute for Solid State and Materials Research IFW Dresden, 01069 Dresden, Germany and Research Department Synchrotron Radiation and Nanotechnology, Paul Scherrer Institut, CH-5232 Villigen PSI, Switzerland.

Leibniz Institute for Solid State and Materials Research IFW Dresden, 01069 Dresden, Germany.

出版信息

Phys Rev Lett. 2014 Apr 11;112(14):147401. doi: 10.1103/PhysRevLett.112.147401. Epub 2014 Apr 7.

Abstract

Taking spinon excitations in the quantum antiferromagnet CaCu2O3 as an example, we demonstrate that femtosecond dynamics of magnetic electronic excitations can be probed by direct resonant inelastic x-ray scattering (RIXS). To this end, we isolate the contributions of single and double spin-flip excitations in experimental RIXS spectra, identify the physical mechanisms that cause them, and determine their respective time scales. By comparing theory and experiment, we find that double spin flips need a finite amount of time to be generated, rendering them sensitive to the core-hole lifetime, whereas single spin flips are, to a very good approximation, independent of it. This shows that RIXS can grant access to time-domain dynamics of excitations and illustrates how RIXS experiments can distinguish between excitations in correlated electron systems based on their different time dependence.

摘要

以量子反铁磁体 CaCu2O3 中的自旋子激发为例,我们证明了飞秒时间分辨的磁电子激发动力学可以通过直接共振非弹性 X 射线散射(RIXS)来探测。为此,我们在实验 RIXS 光谱中分离出单自旋翻转和双自旋翻转激发的贡献,确定了导致它们的物理机制,并确定了它们各自的时间尺度。通过理论与实验的比较,我们发现双自旋翻转需要一定的时间才能产生,这使得它们对空穴寿命敏感,而单自旋翻转在很大程度上与其无关。这表明 RIXS 可以获得激发的时域动力学,并说明了 RIXS 实验如何基于不同的时间依赖性来区分关联电子系统中的激发。

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