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A versatile setup for symmetry-resolved ultrafast dynamics of quantum materials

A versatile setup for symmetry-resolved ultrafast dynamics of quantum materials

来源:Arxiv_logoArxiv
英文摘要

Correlated phenomena occur in quantum materials because of the delicate interplay between internal degrees of freedom, leading to multiple symmetry-broken quantum phases. Resolving the structure of these phases is a key challenge, often requiring facilities equipped with x-ray free-electron lasers and electron sources that may not be readily accessible to the average user. Table-top sources that offer alternative means are therefore needed. In this work, we present an all-optical, table-top setup that enables symmetry-resolved studies using linear and nonlinear spectroscopies. We demonstrate the versatility of the setup with chosen examples that underscore the importance of tracking symmetries and showcase the strengths of the setup, which offers a large tunable parameter space.

Khalid M. Siddiqui、Hanna Strojecka、Thomas H. Meyland、Nitesh Khatiwada、Nikolaj Klinkby、Daniel Perez-Salinas、Simon E. Wall

物理学自然科学研究方法

Khalid M. Siddiqui,Hanna Strojecka,Thomas H. Meyland,Nitesh Khatiwada,Nikolaj Klinkby,Daniel Perez-Salinas,Simon E. Wall.A versatile setup for symmetry-resolved ultrafast dynamics of quantum materials[EB/OL].(2025-05-07)[2025-06-04].https://arxiv.org/abs/2505.04855.点此复制

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