2002A&A...391..693L


Query : 2002A&A...391..693L

2002A&A...391..693L - Astronomy and Astrophysics, volume 391, 693-704 (2002/8-4)

Comparative chemistry of diffuse clouds. IV: CH.

LISZT H. and LUCAS R.

Abstract (from CDS):

We observed the 3335MHz (λ 9cm) F=1-1 line of CH toward a sample of diffuse clouds occulting compact extragalactic mm-wave continuum sources, using the old NRAO 43m telescope. Because radiofrequency observations of CH really must be calibrated with reference to a known CH abundance, we begin by deriving the relationships between CH, EB–V, H2 and other hydrides found by optical spectroscopy. No simple relationship exists between N(CH) and EB–V, since N(CH) is strongly bimodal with respect to reddening for EB–V<0.3mag and the typical range in the N(CH)/EB–V ratio is an order of magnitude or more at any given EB–V>0.3mag. However, N(CH)/N(H2)=4.3±1.9x10–8 in the mean and N(CH) ∝N(H2)1.00±0.06 for 1019<N(H2)<1021cm–2. If CH is a good predictor of H2, 40%-45% of the hydrogen in the local diffuse/translucent ISM is in the molecular form at the accepted mean density, higher than previous estimates found in samples of lower-than-average mean density. Optical observations of the population ratios in the upper and lower halves of the CH lambda-doublet suggest that the brightness of the 3335 MHz CH line should be double-valued at a given CH column density in diffuse gas: double-valuedness is noticeable in our data when comparing CH with CO or HCO+. The CH brightness at 3335 MHz is mildly bimodal with respect to CO emission in our diffuse cloud data but much more strongly bimodal when comparing diffuse or translucent gas and dark gas. The CH Λ-doublet is generally inverted in diffuse gas but we did not succeed in measuring the excitation temperature except toward 3C 123 where we confirm one older value Texc≃-10K.

Abstract Copyright:

Journal keyword(s): ISM: molecules

CDS comments: Table 2 : B2013+370 not identified.

Simbad objects: 28

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Number of rows : 28
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 6C 021252+733537 BLL 02 17 30.81335327 +73 49 32.6217355     19.00 18.97   ~ 455 1
2 4C 67.05 QSO 02 28 50.05148365 +67 21 03.0293322   19.5 19.50 18.1   ~ 249 1
3 LDN 1457 DNe 02 55.9 +19 35           ~ 85 1
4 MBM 16 MoC 03 19 04.1 +11 34 52           ~ 64 0
5 NAME Per Arm PoG 03 30 +45.0           ~ 1513 0
6 IC 348 OpC 03 44 31.7 +32 09 32           ~ 1392 1
7 NAME ZET PER CL OpC 03 47 +34.0           ~ 9 0
8 6C 035545+504923 Bla 03 59 29.74727351 +50 57 50.1618607           ~ 446 1
9 3C 111 Sy1 04 18 21.2772425736 +38 01 35.801359968   19.75 18.05     ~ 950 1
10 * 62 Tau * 04 23 59.7627483096 +24 18 03.527065188 6.18 6.499 6.337     B3V 218 0
11 NAME Per B AGN 04 37 04.37535450 +29 40 13.8179631   21.7       ~ 514 2
12 TMC-1 MoC 04 41 45.9 +25 41 27           ~ 1676 0
13 ICRF J050258.4+251625 AGN 05 02 58.47476282 +25 16 25.2757175   20       ~ 178 1
14 LDN 1590 DNe 05 19 52.5 +07 21 10           ~ 7 0
15 QSO J0530+13 Bla 05 30 56.41674741 +13 31 55.1494688     20.00 19.35   ~ 959 1
16 QSO J0730-116 QSO 07 30 19.11247452 -11 41 12.6006642     20.30 20.3   ~ 300 1
17 QSO B0736+01 QSO 07 39 18.03389906 +01 37 04.6177501   16.90 16.47 16.19   ~ 687 1
18 6C 095456+654857 BLL 09 58 47.2451872176 +65 33 54.819354600     17.0 15.75   ~ 711 1
19 LDN 1780 DNe 15 39.7 -07 10           ~ 80 0
20 LDN 183 MoC 15 54 12.2 -02 49 42           ~ 759 1
21 MBM 40 MoC 16 10 34 +21 49.3           ~ 71 0
22 NAME zet Oph Cloud Cld 16 37 09 -10 34.0           ~ 110 0
23 QSO B1954+513 QSO 19 55 42.73825546 +51 31 48.5461173     18.5 17.34   ~ 237 1
24 QSO B2023+336 BLL 20 25 10.84210426 +33 43 00.2143556       0   ~ 172 1
25 LDN 1172 DNe 21 02 27.7 +67 54 08           ~ 57 0
26 NAME BL Lac BLL 22 02 43.2913536816 +42 16 39.979416792   15.66 14.72     ~ 2258 1
27 3C 461 BL? 23 23 24.000 +58 48 54.00     14.30     ~ 2790 1
28 NAME Ori Arm PoG ~ ~           ~ 201 0

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