Observation of Rabi dynamics with a short-wavelength free-electron laser

被引:0
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作者
Saikat Nandi
Edvin Olofsson
Mattias Bertolino
Stefanos Carlström
Felipe Zapata
David Busto
Carlo Callegari
Michele Di Fraia
Per Eng-Johnsson
Raimund Feifel
Guillaume Gallician
Mathieu Gisselbrecht
Sylvain Maclot
Lana Neoričić
Jasper Peschel
Oksana Plekan
Kevin C. Prince
Richard J. Squibb
Shiyang Zhong
Philipp V. Demekhin
Michael Meyer
Catalin Miron
Laura Badano
Miltcho B. Danailov
Luca Giannessi
Michele Manfredda
Filippo Sottocorona
Marco Zangrando
Jan Marcus Dahlström
机构
[1] Université de Lyon,Department of Physics
[2] Université Claude Bernard Lyon 1,Department of Physics
[3] CNRS,Institute of Physics and CINSaT
[4] Institut Lumière Matière,ELI
[5] Lund University,NP
[6] Elettra-Sincrotrone Trieste,Istituto Nazionale di Fisica Nucleare
[7] University of Gothenburg,IOM
[8] Université Paris-Saclay,CNR
[9] CEA,undefined
[10] CNRS,undefined
[11] LIDYL,undefined
[12] University of Kassel,undefined
[13] European XFEL,undefined
[14] “Horia Hulubei” National Institute for Physics and Nuclear Engineering,undefined
[15] Laboratori Nazionali di Frascati,undefined
[16] Università degli Studi di Trieste,undefined
[17] Istituto Officina dei Materiali,undefined
来源
Nature | 2022年 / 608卷
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摘要
Rabi oscillations are periodic modulations of populations in two-level systems interacting with a time-varying field1. They are ubiquitous in physics with applications in different areas such as photonics2, nano-electronics3, electron microscopy4 and quantum information5. While the theory developed by Rabi was intended for fermions in gyrating magnetic fields, Autler and Townes realized that it could also be used to describe coherent light–matter interactions within the rotating-wave approximation6. Although intense nanometre-wavelength light sources have been available for more than a decade7–9, Rabi dynamics at such short wavelengths has not been directly observed. Here we show that femtosecond extreme-ultraviolet pulses from a seeded free-electron laser10 can drive Rabi dynamics between the ground state and an excited state in helium atoms. The measured photoelectron signal reveals an Autler–Townes doublet and an avoided crossing, phenomena that are both fundamental to coherent atom–field interactions11. Using an analytical model derived from perturbation theory on top of the Rabi model, we find that the ultrafast build-up of the doublet structure carries the signature of a quantum interference effect between resonant and non-resonant photoionization pathways. Given the recent availability of intense attosecond12 and few-femtosecond13 extreme-ultraviolet pulses, our results unfold opportunities to carry out ultrafast manipulation of coherent processes at short wavelengths using free-electron lasers.
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页码:488 / 493
页数:5
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