Multidimensional coherent spectroscopy of correlated lattice systems

IF 9.4 1区 材料科学 Q1 CHEMISTRY, PHYSICAL
Jiyu Chen, Philipp Werner
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引用次数: 0

Abstract

Multidimensional coherent spectroscopy (MDCS) has been established in quantum chemistry as a powerful tool for studying the nonlinear response and nonequilibrium dynamics of molecular systems. More recently, the technique has also been applied to correlated electron materials, where the interplay of localized and itinerant states makes the interpretation of the spectra more challenging. Here we use the Keldysh contour representation of effective models and nonequilibrium dynamical mean field theory to systematically study the MDCS signals of prototypical correlated lattice systems. By analyzing the current induced by sequences of ultrashort laser pulses we demonstrate the usefulness of MDCS as a diagnostic tool for excitation pathways and coherent processes in correlated solids. We also show that this technique allows to extract detailed information on the nature and evolution of photo-excited nonequilibrium states.

Abstract Image

相关晶格系统的多维相干光谱学
多维相干光谱学(MDCS)作为研究分子体系非线性响应和非平衡动力学的有力工具,在量子化学中得到了广泛的应用。最近,该技术也被应用于相关电子材料,其中局部和流动状态的相互作用使得光谱的解释更具挑战性。本文利用有效模型的Keldysh轮廓表示和非平衡动力平均场理论,系统地研究了典型相关格系的MDCS信号。通过分析由超短激光脉冲序列引起的电流,我们证明了MDCS作为相关固体中激发路径和相干过程的诊断工具的实用性。我们还表明,这种技术可以提取光激发非平衡态的性质和进化的详细信息。
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来源期刊
npj Computational Materials
npj Computational Materials Mathematics-Modeling and Simulation
CiteScore
15.30
自引率
5.20%
发文量
229
审稿时长
6 weeks
期刊介绍: npj Computational Materials is a high-quality open access journal from Nature Research that publishes research papers applying computational approaches for the design of new materials and enhancing our understanding of existing ones. The journal also welcomes papers on new computational techniques and the refinement of current approaches that support these aims, as well as experimental papers that complement computational findings. Some key features of npj Computational Materials include a 2-year impact factor of 12.241 (2021), article downloads of 1,138,590 (2021), and a fast turnaround time of 11 days from submission to the first editorial decision. The journal is indexed in various databases and services, including Chemical Abstracts Service (ACS), Astrophysics Data System (ADS), Current Contents/Physical, Chemical and Earth Sciences, Journal Citation Reports/Science Edition, SCOPUS, EI Compendex, INSPEC, Google Scholar, SCImago, DOAJ, CNKI, and Science Citation Index Expanded (SCIE), among others.
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