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- W134659623 endingPage "76" @default.
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- W134659623 abstract "The removal of two (or more) electrons by a single photon from an atom or molecule is a fundamentally important process as it is a direct probe of electron correlation. Synchrotron radiation provides photons over a wide range of energies from infrared to X-rays to photoexcite or -ionize gaseous samples. With the help of a monochromator the energy of the photons can be tuned to study the photon-energy dependence of the double-photoionization process in which two electrons are emitted by a single photon. In this chapter, I will discuss the photon-energy dependence of the double-photoionization cross sections and the associated double-to-single photoionization ratios for some atoms from threshold to high photon energies. I will also present recent experimental results on the triple-photoionization process, particularly for the text book example of lithium. Furthermore, recent results on multiple ionization by a single photon for selected molecules will be presented. In contrast to atoms, not only ionization but also fragmentation plays an important role in the double-photoionization experiments." @default.
- W134659623 created "2016-06-24" @default.
- W134659623 creator A5048540479 @default.
- W134659623 date "2010-01-01" @default.
- W134659623 modified "2023-10-18" @default.
- W134659623 title "Simultaneous Emission of Multiple Electrons from Atoms and Molecules Using Synchrotron Radiation" @default.
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