Context. At least a dozen molecules with a formyl group (HCO) have been observed to date in the interstellar medium (ISM), suggesting that other such species exist and remain to be discovered. However, there is still a lack of high-resolution spectroscopic data for simple molecular species of this type that could provide a basis for their detection. Aims. Cyclopropanecarboxaldehyde, c-C3H5CHO, is a small molecule containing a formyl group and is therefore an interesting candidate for astrophysical detection. The rotational spectrum of cyclopropanecarboxaldehyde has been observed before, but its experimental rotational parameters are not precise enough to allow its detection in the millimetre-wave domain. Methods. We measured the rotational ...
{ H. N. Volltrauer, R. H. Schwendeman, J. Chem. Phys. 54, 260 (1971).Author Institution: Department ...
International audienceContext. A successful identification of an interstellar compound requires that...
{ H. N. Volltrauer, R. H. Schwendeman, J. Chem. Phys. 54, 260 (1971).Author Institution: Department ...
8 pags., 3 figs., 7 tabs.Context. At least a dozen molecules with a formyl group (HCO) have been obs...
Aims. The detection of c-C3HC2H and possible future detection of c-C3HCN provide new molecules for r...
Aims. The detection of c-C3HC2H and possible future detection of c-C3HCN provide new molecules for r...
Cyclopropenylidene, $c$-C$_3$H$_2$, is one of the more abundant organic molecules in the interstella...
Context. A successful identification of an interstellar compound requires that its spectrum has firs...
Author Institution: Harvard-Smithsonian Center for Astrophysics, 60 Garden St., Cambridge, MA 02138,...
Author Institution: Harvard-Smithsonian Center for Astrophysics, 60 Garden St., Cambridge, MA 02138,...
The three-carbon keto ring cyclopropenone (c-H2C 3O) has been detected largely in absorption with th...
Cyclopropenylidene, $c$-C$_3$H$_2$, is one of the more abundant organic molecules in the interstella...
International audienceContext. Cyclopropenone was first detected in the cold and less dense envelope...
Cyclopropenylidene ($c$-C$_3$H$_2$) is one of the few polyatomic hydrocarbons ubiquitous in our gal...
[Context] More than 30 cyanide derivatives of simple organic molecules have been detected in the int...
{ H. N. Volltrauer, R. H. Schwendeman, J. Chem. Phys. 54, 260 (1971).Author Institution: Department ...
International audienceContext. A successful identification of an interstellar compound requires that...
{ H. N. Volltrauer, R. H. Schwendeman, J. Chem. Phys. 54, 260 (1971).Author Institution: Department ...
8 pags., 3 figs., 7 tabs.Context. At least a dozen molecules with a formyl group (HCO) have been obs...
Aims. The detection of c-C3HC2H and possible future detection of c-C3HCN provide new molecules for r...
Aims. The detection of c-C3HC2H and possible future detection of c-C3HCN provide new molecules for r...
Cyclopropenylidene, $c$-C$_3$H$_2$, is one of the more abundant organic molecules in the interstella...
Context. A successful identification of an interstellar compound requires that its spectrum has firs...
Author Institution: Harvard-Smithsonian Center for Astrophysics, 60 Garden St., Cambridge, MA 02138,...
Author Institution: Harvard-Smithsonian Center for Astrophysics, 60 Garden St., Cambridge, MA 02138,...
The three-carbon keto ring cyclopropenone (c-H2C 3O) has been detected largely in absorption with th...
Cyclopropenylidene, $c$-C$_3$H$_2$, is one of the more abundant organic molecules in the interstella...
International audienceContext. Cyclopropenone was first detected in the cold and less dense envelope...
Cyclopropenylidene ($c$-C$_3$H$_2$) is one of the few polyatomic hydrocarbons ubiquitous in our gal...
[Context] More than 30 cyanide derivatives of simple organic molecules have been detected in the int...
{ H. N. Volltrauer, R. H. Schwendeman, J. Chem. Phys. 54, 260 (1971).Author Institution: Department ...
International audienceContext. A successful identification of an interstellar compound requires that...
{ H. N. Volltrauer, R. H. Schwendeman, J. Chem. Phys. 54, 260 (1971).Author Institution: Department ...