2012ApJ...744...62N


Query : 2012ApJ...744...62N

2012ApJ...744...62N - Astrophys. J., 744, 62 (2012/January-1)

Rovibrational quenching rate coefficients of HD in collisions with He.

NOLTE J.L., STANCIL P.C., LEE T.-G., BALAKRISHNAN N. and FORREY R.C.

Abstract (from CDS):

Along with H2, HD has been found to play an important role in the cooling of the primordial gas for the formation of the first stars and galaxies. It has also been observed in a variety of cool molecular astrophysical environments. The rate of cooling by HD molecules requires knowledge of collisional rate coefficients with the primary impactors, H, He, and H2. To improve knowledge of the collisional properties of HD, we present rate coefficients for the He-HD collision system over a range of collision energies from 10–5 to 5x103/cm. Fully quantum mechanical scattering calculations were performed for initial HD rovibrational states of j = 0 and 1 for v = 0-17 which utilized accurate diatom rovibrational wave functions. Rate coefficients of all Δv = 0, -1, and -2 transitions are reported. Significant discrepancies with previous calculations, which adopted a small basis and harmonic HD wave functions for excited vibrational levels, were found for the highest previously considered vibrational state of v = 3. Applications of the He-HD rate coefficients in various astrophysical environments are briefly discussed.

Abstract Copyright:

Journal keyword(s): early universe - ISM: molecules - molecular data - molecular processes - photon-dominated region, PDR

Simbad objects: 7

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Number of rows : 7
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 2MASS J03290842+3115284 NIR 03 29 08.420 +31 15 28.48           ~ 228 1
2 NAME Orion Peak 1 PoC 05 35 13.57 -05 22 03.8           ~ 33 0
3 IC 443 SNR 06 17 00.0000000 +22 34 11.998901           ~ 1235 1
4 HH 54 HH 12 55 49.5 -76 56 08           ~ 119 0
5 NAME Sgr B2 MoC 17 47 20.4 -28 23 07           ~ 2265 1
6 W 49 SFR 19 10 20 +09 07.7           ~ 575 1
7 HH 168 HH 22 56 18.0 +62 01 47           ~ 90 0

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