Suppression of spatiotemporal chaos in the oscillatory CO oxidation on Pt(110) by focused laser light


Autoria(s): Punckt, Christian; Stich, Michael; Beta, Carsten; Rotermund, Harm Hinrich
Data(s)

30/04/2008

Resumo

Chemical turbulence in the oscillatory catalytic CO oxidation on Pt(110) is suppressed by means of focused laser light. The laser locally heats the platinum surface which leads to a local increase of the oscillation frequency, and to the formation of a pacemaker which emits target waves. These waves slowly entrain the medium and suppress the spatiotemporal chaos present in the absence of laser light. Our experimental results are confirmed by a detailed numerical analysis of one- and two-dimensional media using the Krischer-Eiswirth-Ertl model for CO oxidation on Pt110. Different control regimes are identified and the dispersion relation of the system is determined using the pacemaker as an externally tunable wave source.

Formato

application/pdf

Identificador

http://eprints.aston.ac.uk/20339/1/Suppression_of_spatiotemporal_chaos_in_the_oscillatory_CO_oxidation_on_Pt_110_.pdf

Punckt, Christian; Stich, Michael; Beta, Carsten and Rotermund, Harm Hinrich (2008). Suppression of spatiotemporal chaos in the oscillatory CO oxidation on Pt(110) by focused laser light. Physical Review E, 77 (4),

Relação

http://eprints.aston.ac.uk/20339/

Tipo

Article

PeerReviewed