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- W2128049472 abstract "We propose a method for measuring the spectral phase of attosecond pulses by means of angle-resolved photoelectron spectroscopy of alkali-metal atoms in the $^{2}P$ state. A coherent superposition of the $^{2}P_{1∕2}$ and $^{2}P_{3∕2}$ states allows us to observe the quantum beat, whose phase offset is obtained as a function of photoelectron energy. The formulation derived in this study elucidates that the phase offset is straightforwardly utilized for determining the spectral phase of attosecond pulses. This method is applicable not only to near transform-limited attosecond pulses, but also to significantly chirped pulses with the same spectrum. Numerical simulation for Cs atoms demonstrates the feasibility in the experiment and the simplicity in the analysis. From a practical point of view, there is no need for the most advanced technologies like nonlinear optics by high harmonics, phase stabilization of fundamental pulses, and sub-optical-cycle resolution of a delay line, some of which have been required in the other methods." @default.
- W2128049472 created "2016-06-24" @default.
- W2128049472 creator A5089863560 @default.
- W2128049472 date "2007-09-11" @default.
- W2128049472 modified "2023-10-14" @default.
- W2128049472 title "Spectral phase measurement of attosecond pulses using the quantum beat between theP1∕2andP3∕2levels of alkali-metal atoms" @default.
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- W2128049472 doi "https://doi.org/10.1103/physreva.76.033810" @default.
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