4.8 Article

Ultrafast optically induced spin transfer in ferromagnetic alloys

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SCIENCE ADVANCES
卷 6, 期 3, 页码 -

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AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/sciadv.aay8717

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资金

  1. Department of Energy Office of Basic Energy Sciences X-Ray Scattering Program [DE-SC0002002]
  2. DARPA TEE Award [D18AC00017]
  3. Gordon and Betty Moore Foundation EPiQS Award [GBMF4538]
  4. Graduate School of Excellence MAINZ [DFG/GSC 266]
  5. Carl-Zeiss-Stiftung
  6. [SFB 1073]
  7. [SFB/TRR 173]
  8. [SFB/TRR 227]

向作者/读者索取更多资源

The vision of using light to manipulate electronic and spin excitations in materials on their fundamental time and length scales requires new approaches in experiment and theory to observe and understand these excitations. The ultimate speed limit for all-optical manipulation requires control schemes for which the electronic or magnetic subsystems of the materials are coherently manipulated on the time scale of the laser excitation pulse. In our work, we provide experimental evidence of such a direct, ultrafast, and coherent spin transfer between two magnetic subsystems of an alloy of Fe and Ni. Our experimental findings are fully supported by time-dependent density functional theory simulations and, hence, suggest the possibility of coherently controlling spin dynamics on subfemtosecond time scales, i.e., the birth of the research area of attomagnetism.

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