Time-resolved 3D imaging of ultrafast spin-orbit wave packet dynamics

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Abstract

Wecombine bichromatic polarization pulse shaping with photoelectron imaging tomography for time-resolved spatial imaging of ultrafast spin-orbit wave packet (SOWP) dynamics in atoms. Polarization-shaped two-color pump-probe sequences are generated by spectral amplitude and phase modulation of a femtosecond input pulse and used to excite SOWPs in the potassium 4p finestructure doublet. By selecting different spectral bands for pump and probe pulse, we achieve interference-free detection of the spatiotemporalSOWPdynamics. Using tomographic techniques, we reconstruct the three-dimensional photoelectron momentum distribution (3D-ED) created by the probe pulse. Time-resolved measurement of the 3D-ED reveals the orbital realignment dynamics induced by spin-orbit interaction in the neutral atom.

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Bayer, T., Grafing, D., Kerbstadt, S., Pengel, D., Eickhoff, K., Englert, L., & Wollenhaupt, M. (2019). Time-resolved 3D imaging of ultrafast spin-orbit wave packet dynamics. New Journal of Physics, 21(3). https://doi.org/10.1088/1367-2630/aafb87

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