29 pages, 6 figures.International audienceWe present a survey of the ortho-H2D+(1_{1,0}-1_{1,1}) line toward a sample of 10 starless cores and 6 protostellar cores, carried out at the Caltech Submillimeter Observatory. The high diagnostic power of this line is revealed for the study of the chemistry, and the evolutionary and dynamical status of low-mass dense cores. The line is detected in 7 starless cores and in 4 protostellar cores. N(ortho-H2D+) ranges between 2 and 40x10^{12} cm^{-2} in starless cores and between 2 and 9x10^{12} cm^{-2} in protostellar cores. The brightest lines are detected toward the densest and most centrally concentrated starless cores, where the CO depletion factor and the deuterium fractionation are also largest. ...
Context. The presence of H2D+ in dense cloud cores underlies ion-molecule reactions that strongly en...
We report on the detection of the ground-state rotational line of ortho-D2H+ at 1.477 THz (203 mu m)...
We have detected the 372 GHz line of ortho-H2D+ towards the pre-stellar core L1544. The strongest em...
29 pages, 6 figures.International audienceWe present a survey of the ortho-H2D+(1_{1,0}-1_{1,1}) lin...
International audienceAims. We present a survey of the ortho-H2D+ (1{1,0}-1{1,1}) line toward a samp...
Aims. We present a survey of the ortho–H2D+(11,0–11,1) line toward a sample of 10 starless cores and...
Aims. We present a survey of the ortho-${\rm H}_{2}{\rm D}^{+}$ (1$_{1,0}$-1$_{1,1}$) line toward a...
Aims. We present a survey of the ortho-H2D+ (1(1,0)-1(1,1)) line toward a sample of 10 starless core...
International audiencePrestellar cores are unique laboratories for studying the chemical and physica...
Context. Initial conditions and very early stages of star formation can be probed through spectrosco...
Author Institution: Department of Physics, The Ohio State University; Department of Physics, Osserva...
Prestellar cores are unique laboratories for studying the chemical and physical conditions preceding...
International audienceContext. In cold (T 104 cm-3) interstellar clouds, molecules such as CO are si...
Aims.We have measured the deuterium fractionation and the CO depletion factor (ratio between expect...
International audienceWe have carried out calculations of ionization equilibrium and deuterium fract...
Context. The presence of H2D+ in dense cloud cores underlies ion-molecule reactions that strongly en...
We report on the detection of the ground-state rotational line of ortho-D2H+ at 1.477 THz (203 mu m)...
We have detected the 372 GHz line of ortho-H2D+ towards the pre-stellar core L1544. The strongest em...
29 pages, 6 figures.International audienceWe present a survey of the ortho-H2D+(1_{1,0}-1_{1,1}) lin...
International audienceAims. We present a survey of the ortho-H2D+ (1{1,0}-1{1,1}) line toward a samp...
Aims. We present a survey of the ortho–H2D+(11,0–11,1) line toward a sample of 10 starless cores and...
Aims. We present a survey of the ortho-${\rm H}_{2}{\rm D}^{+}$ (1$_{1,0}$-1$_{1,1}$) line toward a...
Aims. We present a survey of the ortho-H2D+ (1(1,0)-1(1,1)) line toward a sample of 10 starless core...
International audiencePrestellar cores are unique laboratories for studying the chemical and physica...
Context. Initial conditions and very early stages of star formation can be probed through spectrosco...
Author Institution: Department of Physics, The Ohio State University; Department of Physics, Osserva...
Prestellar cores are unique laboratories for studying the chemical and physical conditions preceding...
International audienceContext. In cold (T 104 cm-3) interstellar clouds, molecules such as CO are si...
Aims.We have measured the deuterium fractionation and the CO depletion factor (ratio between expect...
International audienceWe have carried out calculations of ionization equilibrium and deuterium fract...
Context. The presence of H2D+ in dense cloud cores underlies ion-molecule reactions that strongly en...
We report on the detection of the ground-state rotational line of ortho-D2H+ at 1.477 THz (203 mu m)...
We have detected the 372 GHz line of ortho-H2D+ towards the pre-stellar core L1544. The strongest em...