Coherent control of rare earth 4f shell wavefunctions in the quantum spin liquid Tb 2 Ti 2 O 7

The resonant excitation of electronic transitions with coherent laser sources creates quantum coherent superpositions of the involved electronic states. Most time-resolved studies have focused on gases or isolated subsystems embedded in insulating solids, aiming for applications in quantum informati...

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Veröffentlicht in:Nature communications 2024-08, Vol.15 (1), p.7183
Hauptverfasser: Mankowsky, R, Müller, M, Sander, M, Zerdane, S, Liu, X, Babich, D, Ueda, H, Deng, Y, Winkler, R, Strudwick, B, Savoini, M, Giorgianni, F, Johnson, S L, Pomjakushina, E, Beaud, P, Fennell, T, Lemke, H T, Staub, U
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container_title Nature communications
container_volume 15
creator Mankowsky, R
Müller, M
Sander, M
Zerdane, S
Liu, X
Babich, D
Ueda, H
Deng, Y
Winkler, R
Strudwick, B
Savoini, M
Giorgianni, F
Johnson, S L
Pomjakushina, E
Beaud, P
Fennell, T
Lemke, H T
Staub, U
description The resonant excitation of electronic transitions with coherent laser sources creates quantum coherent superpositions of the involved electronic states. Most time-resolved studies have focused on gases or isolated subsystems embedded in insulating solids, aiming for applications in quantum information. Here, we focus on the coherent control of orbital wavefunctions in the correlated quantum material Tb Ti O , which forms an interacting spin liquid ground state. We show that resonant excitation with a strong THz pulse creates a coherent superposition of the lowest energy Tb 4f states. The coherence manifests itself as a macroscopic oscillating magnetic dipole, which is detected by ultrafast resonant x-ray diffraction. We envision the coherent control of orbital wavefunctions demonstrated here to become a new tool for the ultrafast manipulation and investigation of quantum materials.
doi_str_mv 10.1038/s41467-024-51339-0
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title Coherent control of rare earth 4f shell wavefunctions in the quantum spin liquid Tb 2 Ti 2 O 7
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