Sub-cycle multidimensional spectroscopy of strongly correlated materials

被引:0
|
作者
V. N. Valmispild
E. Gorelov
M. Eckstein
A. I. Lichtenstein
H. Aoki
M. I. Katsnelson
M. Yu. Ivanov
O. Smirnova
机构
[1] European XFEL,Institute of Theoretical Physics
[2] University of Hamburg,Department of Physics
[3] University of Erlangen-Nuremberg,Department of Physics
[4] The Hamburg Centre for Ultrafast Imaging,Institute for Molecules and Materials
[5] The University of Tokyo,Department of Physics
[6] National Institute of Advanced Industrial Science and Technology (AIST),undefined
[7] Radboud University,undefined
[8] Max-Born-Institut,undefined
[9] Imperial College London,undefined
[10] Technische Universität Berlin,undefined
来源
Nature Photonics | 2024年 / 18卷
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摘要
Strongly correlated solids are complex and fascinating quantum systems, where new electronic states continue to emerge, especially when interaction with light triggers interplay between them. In this interplay, a sub-laser-cycle electronic response is particularly attractive as a tool for the ultrafast manipulation of matter at the petahertz scale. Here we introduce a new type of nonlinear multidimensional spectroscopy, which allows us to unravel charge and energy flows in strongly correlated systems interacting with few-cycle infrared pulses and the complex interplay between different correlated states evolving on the sub-femtosecond timescale. We demonstrate that the sub-cycle spectroscopy of a single-particle electronic response is extremely sensitive to correlated many-body dynamics and provides direct access to many-body response functions. For the two-dimensional Hubbard model under the influence of ultrashort, intense electric-field transients, we resolve the sub-femtosecond pathways of charge and energy flows between localized and delocalized many-body states and the creation of a highly correlated state surviving after the end of the laser pulse. Our findings open the way towards a regime of imaging and manipulating strongly correlated materials at optical rates, beyond the multicycle approach employed in Floquet engineering, with the sub-cycle response being a key tool for accessing many-body phenomena.
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页码:432 / 439
页数:7
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