Matches in SemOpenAlex for { <https://semopenalex.org/work/W2017001642> ?p ?o ?g. }
Showing items 1 to 84 of
84
with 100 items per page.
- W2017001642 endingPage "2375" @default.
- W2017001642 startingPage "2375" @default.
- W2017001642 abstract "A general theoretical framework for introducing many‐body or lattice effects into gas/solid scattering is presented. The theory is presently restricted to classical scattering off harmonic lattices but is otherwise completely general. It is nonperturbative and valid for arbitrary lattice temperature. The theory is based on a formulation of lattice dynamics suggested by and related to the Kubo–Mori theory of generalized Brownian motion. This formulation leads to a generalized Langevin equation (GLE) in which only the coordinates of the gas atom and the n∼1–6 surface atoms directly struck by the gas atom appear explicitly. The remainder of the lattice, which functions as a harmonic heat bath, affects the collision through a friction kernel and a Gaussian random force appearing in the GLE. The GLE can be solved in terms of a tractable number of (n+1) ‐particle gas–surface trajectories using approximate stochastic techniques. Stochastic solution yields thermally averaged temporal gas particle probability distribution functions (pdf). From the long time limit of these pdf’s all temperature dependent gas–surface cross sections can be found. In the limit of zero friction, the theory gives a convenient method for calculating atom–oscillator thermally averaged cross sections which circumvents laborious Monte Carlo classical trajectory sampling and which can be generalized to treat other gas phase collision problems." @default.
- W2017001642 created "2016-06-24" @default.
- W2017001642 creator A5006054354 @default.
- W2017001642 creator A5035124874 @default.
- W2017001642 date "1976-01-01" @default.
- W2017001642 modified "2023-10-10" @default.
- W2017001642 title "Generalized Langevin equation approach for atom/solid-surface scattering: General formulation for classical scattering off harmonic solids" @default.
- W2017001642 cites W1489314471 @default.
- W2017001642 cites W1983617554 @default.
- W2017001642 doi "https://doi.org/10.1063/1.432526" @default.
- W2017001642 hasPublicationYear "1976" @default.
- W2017001642 type Work @default.
- W2017001642 sameAs 2017001642 @default.
- W2017001642 citedByCount "722" @default.
- W2017001642 countsByYear W20170016422012 @default.
- W2017001642 countsByYear W20170016422013 @default.
- W2017001642 countsByYear W20170016422014 @default.
- W2017001642 countsByYear W20170016422015 @default.
- W2017001642 countsByYear W20170016422016 @default.
- W2017001642 countsByYear W20170016422017 @default.
- W2017001642 countsByYear W20170016422018 @default.
- W2017001642 countsByYear W20170016422019 @default.
- W2017001642 countsByYear W20170016422020 @default.
- W2017001642 countsByYear W20170016422021 @default.
- W2017001642 countsByYear W20170016422022 @default.
- W2017001642 countsByYear W20170016422023 @default.
- W2017001642 crossrefType "journal-article" @default.
- W2017001642 hasAuthorship W2017001642A5006054354 @default.
- W2017001642 hasAuthorship W2017001642A5035124874 @default.
- W2017001642 hasConcept C105795698 @default.
- W2017001642 hasConcept C112401455 @default.
- W2017001642 hasConcept C121332964 @default.
- W2017001642 hasConcept C121864883 @default.
- W2017001642 hasConcept C149635348 @default.
- W2017001642 hasConcept C163716315 @default.
- W2017001642 hasConcept C191486275 @default.
- W2017001642 hasConcept C19499675 @default.
- W2017001642 hasConcept C24890656 @default.
- W2017001642 hasConcept C2777577648 @default.
- W2017001642 hasConcept C2781204021 @default.
- W2017001642 hasConcept C33923547 @default.
- W2017001642 hasConcept C40934718 @default.
- W2017001642 hasConcept C41008148 @default.
- W2017001642 hasConcept C58312451 @default.
- W2017001642 hasConcept C62520636 @default.
- W2017001642 hasConcept C74650414 @default.
- W2017001642 hasConceptScore W2017001642C105795698 @default.
- W2017001642 hasConceptScore W2017001642C112401455 @default.
- W2017001642 hasConceptScore W2017001642C121332964 @default.
- W2017001642 hasConceptScore W2017001642C121864883 @default.
- W2017001642 hasConceptScore W2017001642C149635348 @default.
- W2017001642 hasConceptScore W2017001642C163716315 @default.
- W2017001642 hasConceptScore W2017001642C191486275 @default.
- W2017001642 hasConceptScore W2017001642C19499675 @default.
- W2017001642 hasConceptScore W2017001642C24890656 @default.
- W2017001642 hasConceptScore W2017001642C2777577648 @default.
- W2017001642 hasConceptScore W2017001642C2781204021 @default.
- W2017001642 hasConceptScore W2017001642C33923547 @default.
- W2017001642 hasConceptScore W2017001642C40934718 @default.
- W2017001642 hasConceptScore W2017001642C41008148 @default.
- W2017001642 hasConceptScore W2017001642C58312451 @default.
- W2017001642 hasConceptScore W2017001642C62520636 @default.
- W2017001642 hasConceptScore W2017001642C74650414 @default.
- W2017001642 hasIssue "6" @default.
- W2017001642 hasLocation W20170016421 @default.
- W2017001642 hasOpenAccess W2017001642 @default.
- W2017001642 hasPrimaryLocation W20170016421 @default.
- W2017001642 hasRelatedWork W2016271812 @default.
- W2017001642 hasRelatedWork W2028552536 @default.
- W2017001642 hasRelatedWork W2041967485 @default.
- W2017001642 hasRelatedWork W2061808338 @default.
- W2017001642 hasRelatedWork W2073354736 @default.
- W2017001642 hasRelatedWork W2095529993 @default.
- W2017001642 hasRelatedWork W2318757436 @default.
- W2017001642 hasRelatedWork W26861356 @default.
- W2017001642 hasRelatedWork W3104517614 @default.
- W2017001642 hasRelatedWork W604828256 @default.
- W2017001642 hasVolume "64" @default.
- W2017001642 isParatext "false" @default.
- W2017001642 isRetracted "false" @default.
- W2017001642 magId "2017001642" @default.
- W2017001642 workType "article" @default.