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Photoelectron Holography and Circular Dichroism of Photoelectron Diffraction

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PHOTOELECTRON ANGULAR DISTRIBUTIONS

Annual Review of Physical Chemistry, 2003
▪ Abstract  Angle-resolved photoelectron spectroscopy has been performed for more than 70 years in various guises, but recently its potential to help solve in detail problems in the photoionization dynamics and intramolecular dynamics of gas-phase molecules has been recognized.
Katharine Reid
exaly   +3 more sources

Photoelectron imaging and photoelectron labeling

Ultramicroscopy, 1988
Photoelectron imaging involves the photoejection of low-energy electrons from a specimen surface exposed to UV light. The electrons are then accelerated and focused by an electron-optics system in much the same way fluorescent light is focused in an optical microscope.
O H, Griffith, G F, Rempfer
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Photoelectron spectra of alkyldiaziridines

Journal of the Chemical Society, Perkin Transactions 2, 1994
Hel photoelectron (PES) spectra have been obtained for six trisubstituted and three tetrasubstituted diaziridines: 1, 3, 3-trimethyldiaziridine (1), 1-isopropyl-3, 3-dimethyldiaziridine (2), 1-methylspiro-[diaziridine-3, 1’ -cyclopentane] (3), 1-benzyl-3, 3-dimethyldiaziridine (4), 3-benzyl-1, 3-dimethyl-diaziridine (5), 3, 3-dibenzyl-1 ...
Klasinc, Leo   +3 more
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Photoelectron-photoelectron coincidence spectroscopy

Journal of Electron Spectroscopy and Related Phenomena, 1990
Abstract Photoelectron-photoelectron coincidence spectra taken using a fixed-wavelength laboratory instrument show certain states of molecular doubly-charged ions. They are complicated, however, by a phenomenon of non-resonant autoionization, whose existence is now revealed.
Stephen D. Price, John H.D. Eland
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PHOTOELECTRON QUANTUM YIELDS AND PHOTOELECTRON MICROSCOPY OF CHLOROPHYLL AND CHLOROPHYLLIN

Photochemistry and Photobiology, 1975
Abstract— The absolute PE quantum yield curves of chls a and b,.chin, and phytol were examined over the wavelength range 500‐180 nm. In the long wavelength region (500‐240 nm) quantum yields are below 5 × 10‐6 electrons per incident photon. Below 240 nm the quantum yields rise sharply.
R J, Dam, K F, Kongslie, O H, Griffith
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Photoelectron Diffraction and Photoelectron Holography

2013
Photoelectron spectroscopy is mostly used for the analysis of electronic structures. ARPES is a powerful tool for band mapping and Fermiology as explained already. It is also widely known that the photoelectrons are diffracted by neighboring atoms and provide characteristic diffraction patterns.
Shigemasa Suga, Akira Sekiyama
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Nonideal Photoelectron Counting

IEEE Transactions on Communications, 1974
Expressions are obtained for the probability of error of a binary intensity-modulated direct-detection optical communication system consisting of an ideal photodetector followed by a nonideal photoelectron counter, in this case an RC low-pass filter. Calculation of probability of error requires the determination of the output statistics of the nonideal
Ralph B. Fluchel   +2 more
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Photoelectron spectrum of tetraiodosilane

Journal of Electron Spectroscopy and Related Phenomena, 1981
Photoelectron Spectrum of Tetraiodosilane is reported.
Novak, Igor, Vančik, Hrvoj
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Inelastic photoelectron diffraction

Physical Review B, 1991
Photoelectron diffraction and Auger-electron diffraction studies to date have involved the study of the elastically scattered or ``no-loss'' features in spectra. In this work, we consider the diffraction patterns associated with inelastically scattered electrons in plasmon satellites.
, Herman, , Fadley
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