Infrared light on molecule-molecule and molecule-surface collisions
Data(s) |
2015
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Resumo |
By analyzing measured infrared absorption of pure CH4 gas under both "free" (large sample cell) and "confined" (inside the pores of a silica xerogel sample) conditions we give a demonstration that molecule-molecule and molecule-surface collisions lead to very different propensity rules for rotational-state changes. Whereas the efficiency of collisions to change the rotational state (observed through the broadening of the absorption lines) decreases with increasing rotational quantum number J for CH4-CH4 interactions, CH4-surface collisions lead to J-independent linewidths. In the former case, some (weak) collisions are inefficient whereas, in the latter case, a single collision is sufficient to remove the molecule from its initial rotational level. Furthermore, although some gas-phase collisions leave J unchanged and only modify the angular momentum orientation and/or symmetry of the level (as observed through the spectral effects of line mixing), this is not the case for the molecule-surface collisions since they always change J (in the studied J=0-14 range). SCOPUS: ar.j info:eu-repo/semantics/published |
Formato |
No full-text files |
Identificador |
uri/info:doi/10.1103/PhysRevA.92.012707 http://hdl.handle.net/2013/ULB-DIPOT:oai:dipot.ulb.ac.be:2013/206618 |
Idioma(s) |
fr |
Fonte |
Physical review. A, General physics, 92 |
Palavras-Chave | #Chimie #Physique atomique et moléculaire #Spectroscopie [électromagnétisme, optique, acoustique] |
Tipo |
info:eu-repo/semantics/article info:ulb-repo/semantics/articlePeerReview info:ulb-repo/semantics/openurl/article |