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- W2002134088 abstract "The ultrafast e - -bunches produced by femtosecond laser (fsl) radiation are powerful tool in modern physics to observedifferent ultrashort processes induced by fsl pulses and to reach high spatio-temporal resolution. In Letokhov'sprojection microscope such a beam transfers an information from a tip with a sample illluminated by fsl pulses to adetector. Here the fsl radiation provides for an effective photoelectron multiphoton emission without significant heatingof the sample. Two organic samples, formed from dye molecules and the organic conducting polymers has beenvizualized using the nanocapillary as a tip. The advantages of the nanocapillary tip are described in the report.The temporal resolution depends upon the pulse duration of the e - -beam, τ e . One of the most powerful way tomeasure τ e is to use the Gaponov-Miller force (GMf), or the ponderomotive force, which the electrons experience in theinhomogeneous field of a focused laser pulse. Such a force helped us to demonstrate the «instantaneousness» ofmultiphoton emission process from solid targets. As the beam propagated, it spread in time. Using GMf we temporallycharacterized the e - -pulse transmitted through microcapillary (which can be the basis of the promising scanningmicroscope) and combined spatial nanoresolution and picosecond temporal resolution. Also the ultrafast microlocalizede - -beam is an ideal tool to measure the GMf created by focused fsl pulses and to characterize very intense laser beamprofile in-situ. In principal, such approach may allow for direct subwave spatio-temporal probing of superintense laserbeam profiles." @default.
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- W2002134088 date "2010-09-10" @default.
- W2002134088 modified "2023-09-23" @default.
- W2002134088 title "Ultrafast microlocalized photoelectron bunches: formation and applications" @default.
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- W2002134088 doi "https://doi.org/10.1117/12.880060" @default.
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