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Modelling of electron collisions with molecules adsorbed on surfaces

Project goals

The goal of the project is to develop ab-initio methods and tools for a theoretical modelling of the electron-loss spectroscopy (EELS) on surfaces. The starting point for this research will be the inelastic DMR method developed in our group for EELS calculations in the gas phase. We propose two different approaches to describtion of an interaction of the electron with the crystalic surface. In the first phase of this project the surface will be approximated by a super-molecular cluster. This approach, while fully ab-initio, will set a limitation on a size of the surface due to computational complexity. Therefore in the second stage of the project we plan to link our scattering program based on DMR method with codes commonly used in quantum calculations of surfaces and clusters, such as VASP or WIEN2k.

Keywords

electronscatteringsurfaceelectronenergylossspectroscopyeels

Public support

  • Provider

    Czech Science Foundation

  • Programme

    Standard projects

  • Call for proposals

    Standardní projekty 14 (SGA02011GA-ST)

  • Main participants

    Ústav fyzikální chemie J. Heyrovského AV ČR, v. v. i.

  • Contest type

    VS - Public tender

  • Contract ID

    P208-11-0452

Alternative language

  • Project name in Czech

    Modelování srážek elektronů s molekulami adsorbovanými na površích

  • Annotation in Czech

    Cílem projektu je vyvinout ab-initio metody a nástroje pro teoretické modelování elektronové spektroskopie (EELS) molekul a klastrů adsorbovaných na površích. Základem pro tento výzkum bude neelastická DMR metoda, která byla vyvinuta naší skupinou pro studium elektronové spektroskopie v plynné fázi. Pro popis interakce elektronů s krystalickým povrchem navrhujeme dva odlišné přístupy. V první fázi projektu budeme povrch v rámci DMR metody modelovat supermolekulárním klastrem. Tento přístup, i když rigoróznější, povede k limitaci velikostí povrchů, které budeme schopni modelovat, a to kvůli výpočetní náročnosti. Proto se pro druhou fázi projektu počítá s propojením DMR metody a kodů s programy běžně používanými v kvantovém modelování klastrů a povrchů, například VASP nebo WIEN2K.

Scientific branches

  • R&D category

    ZV - Basic research

  • CEP classification - main branch

    CF - Physical chemistry and theoretical chemistry

  • CEP - secondary branch

    BE - Theoretical physics

  • CEP - another secondary branch

  • 10301 - Atomic, molecular and chemical physics (physics of atoms and molecules including collision, interaction with radiation, magnetic resonances, Mössbauer effect)
    10403 - Physical chemistry

Completed project evaluation

  • Provider evaluation

    U - Uspěl podle zadání (s publikovanými či patentovanými výsledky atd.)

  • Project results evaluation

    The main output of the project is developing of Discrete Momentum Representation method and its implementation on the GPU allowing modeling of significantly larger systems - whose results constitute also valuable results. The number of publications is very good with respect to the size of the team. Most publications, though, result from accumulation of funding from multiple sources.

Solution timeline

  • Realization period - beginning

    Jan 1, 2011

  • Realization period - end

    Dec 31, 2015

  • Project status

    U - Finished project

  • Latest support payment

    Mar 26, 2015

Data delivery to CEP

  • Confidentiality

    S - Úplné a pravdivé údaje o projektu nepodléhají ochraně podle zvláštních právních předpisů

  • Data delivery code

    CEP16-GA0-GA-U/01:1

  • Data delivery date

    Sep 25, 2017

Finance

  • Total approved costs

    5,290 thou. CZK

  • Public financial support

    5,290 thou. CZK

  • Other public sources

    0 thou. CZK

  • Non public and foreign sources

    0 thou. CZK

Basic information

Recognised costs

5 290 CZK thou.

Public support

5 290 CZK thou.

100%


Provider

Czech Science Foundation

CEP

CF - Physical chemistry and theoretical chemistry

Solution period

01. 01. 2011 - 31. 12. 2015