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Time-of-flight scattering and recoiling

TOF-SARS (time-of-flight scattering and recoiling spectrometry) no 13 1.2... [Pg.1754]

A) TIME OF FLIGHT SCATTERING AND RECOILING SPECTROMETRY (TOF-SARS)—SHADOW CONE BASED EXPERIMENT... [Pg.1805]

Grizzi O, Shi M, Bu H, and Rabalais J W 1990 Time-of-flight scattering and recoiling spectrometer (TOF-SARS) for surface analysis Rev. Sc/. Instrum. 61 740-52... [Pg.1825]

Masson F and Rabalais J W 1991 Time-of-flight scattering and recoiling spectrometry (TOF-SARS) analysis of Pt 110. I. Quantitative structure study of the clean (1 x 2) surface Surf. Sc/. 253 245-57... [Pg.1826]

To our knowledge, this is the first study of the relaxations of an oxide surface by GIXS, and the first experimental determination of the relaxation and termination of the a-Al203(0001) surface. Another determination has been performed very recently by combining time-of-flight scattering and recoiling spectrometry with LEED and classical ion trajectory simulations [59], with essentially the same results. [Pg.268]

Roux C D, Bu H and Rabalais J W1992 Hydrogen adsorption site on the Ni 110 -p(1 x 2)-H surface from time-of-flight scattering and recoiling spectrometry (TOF-SARS) Surf. Sci. 271 68-80... [Pg.1826]

TOF-SARS Time-Of-Flight Scattering And Recoiling Spectroscopy... [Pg.337]

TEAS TED TOE-SARS Thermal Energy Atomic Scattering Transmission Electron Diffraction Time-of-Flight Scattering and Recoiling Spectroscopy ... [Pg.68]

TOF-SARS and SARIS are capable of detecting all elements by either scattering, recoiling or both teclmiques. TOF peak identification is straightforward by converting equation (Bl.23.lt and equation (B 1.23.81 to the flight times of the scattered and recoiled particles as... [Pg.1812]

The incident ions cause recoil in the surface atoms. In studies of ionic liquids, only direct recoil - that is, motion in the forward direction - was measured. Watson and co-workers [56, 57] used time-of-flight analysis with a pulsed ion beam to measure the kinetic energies of the scattered and sputtered ions and therefore determine the masses of the recoiled surface atoms. By relating the measured intensities of the... [Pg.147]

Fig. 3. A schematic view of a crossed-molecular beam apparatus used for studying the reactions of chlorine atoms with halogen molecules. The mass spectrometer detector is rotatable about the scattering centre for measuring the angular distributions of the reaction products whose recoil velocities are determined by time-of-flight analysis. (Reproduced from ref. 558 by permission of the authors and the American Institute of Physics.)... Fig. 3. A schematic view of a crossed-molecular beam apparatus used for studying the reactions of chlorine atoms with halogen molecules. The mass spectrometer detector is rotatable about the scattering centre for measuring the angular distributions of the reaction products whose recoil velocities are determined by time-of-flight analysis. (Reproduced from ref. 558 by permission of the authors and the American Institute of Physics.)...
For each detector, the time-of-flight data sets were corrected for multiple scattering [16], heavy atom (all atoms in the samples but hydrogen, and atoms of the sample container) recoil signals, and residual gamma background, using standard routines available on VESUVIO. [Pg.178]

TOF-DR, time of flight analysis of direct recoils (Mintz and Schultz,1986a) ISS, RIS, low energy ion scattering spectroscopy and recoil spectroscopy (Oura et al., 1984)... [Pg.406]


See other pages where Time-of-flight scattering and recoiling is mentioned: [Pg.1826]    [Pg.363]    [Pg.768]    [Pg.382]    [Pg.1826]    [Pg.26]    [Pg.28]    [Pg.1826]    [Pg.363]    [Pg.768]    [Pg.382]    [Pg.1826]    [Pg.26]    [Pg.28]    [Pg.1800]    [Pg.1808]    [Pg.1800]    [Pg.1808]    [Pg.1806]    [Pg.1828]    [Pg.371]    [Pg.209]    [Pg.194]    [Pg.79]    [Pg.88]    [Pg.486]    [Pg.1806]    [Pg.1828]    [Pg.36]    [Pg.38]    [Pg.21]    [Pg.897]    [Pg.165]    [Pg.633]   


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Flight time

Recoil

Recoil scattering

Recoiling

Scattering time

Time-of-flight

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