Advances in Quantum Chemistry, Vol. 46

Advances in Quantum Chemistry offers surveys of present advancements during this speedily constructing box that falls among the traditionally confirmed components of arithmetic, physics, and chemistry. With invited experiences written via top foreign researchers, in addition to usual thematic concerns, each one quantity offers new effects and offers a unmarried car for following development during this interdisciplinary zone. The purpose of this quantity, as with the former quantity during this sequence is to provide the newest advancements within the box of strength deposition because it is de facto seen through a lot of. learn more... content material: entrance conceal; enhance in Quantum Chemistry; Copyright web page; Contents; members; Preface; bankruptcy 1. Density practical Theory-based preventing energy for 3D and 2nd structures; bankruptcy 2. Friction strength for Charged debris at huge Distances from steel Surfaces; bankruptcy three. Resonant-Coherent Excitation of Channeled Ions; bankruptcy four. The Barkas-Effect Correction to Bethe-Bloch preventing strength; bankruptcy five. Molecular preventing Powers from the objective Oscillator power Distribution; bankruptcy 6. Chemical and actual kingdom results in digital preventing. bankruptcy 7. Calculation of Cross-Sections for Proton and Antiproton preventing in MoleculesChapter eight. Advances within the Core-and-Bond Formalism for Proton preventing in Molecular pursuits; bankruptcy nine. points of Relativistic Sum ideas; bankruptcy 10. preventing energy of an Electron fuel for Heavy Unit fees: types within the Kinetic Approximation; bankruptcy eleven. excessive Z Ions in scorching, Dense subject; bankruptcy 12. Interferences in Electron Emission from H2 brought on through quickly Ion influence; Cha. summary: Advances in Quantum Chemistry provides surveys of present advancements during this swiftly constructing box that falls among the traditionally proven components of arithmetic, physics, and chemistry. With invited studies written by way of prime overseas researchers, in addition to general thematic matters, each one quantity provides new effects and offers a unmarried automobile for following development during this interdisciplinary sector. The goal of this quantity, as with the former quantity during this sequence is to provide the newest advancements within the box of strength deposition because it is absolutely seen by way of a lot of

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B, 1999, 59, 10145. F. H. Eisen, Can. J. , 1968, 46, 561. J. C. Ashley, R. H. Ritchie, P. M. Echenique and R. M. Nieminen, Nucl. Instrum. Methods B, 1986, 15, 11. P. M. Echenique, R. M. Nieminen, J. C. Ashley and R. H. Ritchie, Phys. Rev. A, 1986, 33, 897. P. M. Echenique, Nucl. Instrum. Methods B, 1987, 27, 256. H. Winter, C. Auth, A. Mertens, A. Kirste and M. J. Steiner, Europhys. , 1998, 41, 437. H. Winter, J. I. Juaristi, I. Nagy, A. Arnav and P. M. Echenique, Phys. Rev. B, 2003, 67, 245401.

H. Winter, J. I. Juaristi, I. Nagy, A. Arnav and P. M. Echenique, Phys. Rev. B, 2003, 67, 245401. W. H. Barkas, N. J. Dyer and H. H. Heckman, Phys. Rev. , 1963, 11, 26. J. M. Pitarke, R. H. Ritchie and P. M. Echenique, Europhys. , 1993, 24, 613. Friction Force for Charged Particles at Large Distances from Metal Surfaces K. -M. Tong,3 C. Lemell2 and J. Burgdo¨rfer2 1 Institute of Nuclear Research of the Hungarian Academy of Sciences (ATOMKI), P. O. Box 51, H-4001 Debrecen, Hungary 2 Institute for Theoretical Physics, Vienna University of Technology, Wiedner Hauptstr.

The point of departure of the following analysis is the fact that these ions cruise over a large distance $ 1 mm parallel to the surface in its close proximity (& 100 nm). They may provide a sensitive probe of energy loss at microscopically large distances. Heavy particles as opposed to electrons feature well-defined classical Friction Force for Charged Particles at Large Distances from Metal Surfaces 31 Fig. 1. (a) Sketch of a microcapillary or nanotube with typical ion trajectories. rc is the critical capture radius and dc is the critical capture distance.

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