论文标题

超过热极限的非平衡电荷密度波

Nonequilibrium Charge-Density-Wave Order Beyond the Thermal Limit

论文作者

Maklar, J., Windsor, Y. W., Nicholson, C. W., Puppin, M., Walmsley, P., Esposito, V., Porer, M., Rittmann, J., Leuenberger, D., Kubli, M., Savoini, M., Abreu, E., Johnson, S. L., Beaud, P., Ingold, G., Staub, U., Fisher, I. R., Ernstorfer, R., Wolf, M., Rettig, L.

论文摘要

多体系统与强光脉冲的相互作用可能导致新的新兴现象远非平衡。最近的发现,例如某些超导体中临界温度的光学增强以及隐藏相的照片稳定,已将该领域变成了重要的研究边界。在这里,我们在电子温度下远大于热力学过渡温度,在电子温度下显示了非热电荷密度波(CDW)。使用时间和角度分辨光发射光谱以及时间分辨X射线衍射,我们研究了超快光诱导的CDW至金属转变的电子和结构阶参数。跟踪动态CDW恢复随电子温度的函数揭示了与平衡明显不同的行为,我们将其归因于瞬时非热声子分布中晶格波动的抑制。时间依赖的Ginzburg-Landau框架给出了系统连贯和不连贯的订单参数动力学的完整描述,从而提供了对瞬态势能表面的访问。

The interaction of many-body systems with intense light pulses may lead to novel emergent phenomena far from equilibrium. Recent discoveries, such as the optical enhancement of the critical temperature in certain superconductors and the photo-stabilization of hidden phases, have turned this field into an important research frontier. Here, we demonstrate nonthermal charge-density-wave (CDW) order at electronic temperatures far greater than the thermodynamic transition temperature. Using time- and angle-resolved photoemission spectroscopy and time-resolved X-ray diffraction, we investigate the electronic and structural order parameters of an ultrafast photoinduced CDW-to-metal transition. Tracking the dynamical CDW recovery as a function of electronic temperature reveals a behaviour markedly different from equilibrium, which we attribute to the suppression of lattice fluctuations in the transient nonthermal phonon distribution. A complete description of the system's coherent and incoherent order-parameter dynamics is given by a time-dependent Ginzburg-Landau framework, providing access to the transient potential energy surfaces.

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