Free Access

This article has an erratum: [https://doi.org/10.1051/0004-6361/202039351e]


Table A.2.

Derived line parameters for O-bearing species in TMC-1.

Molecule Transition νrest(a) (b) vLSR(c) Δv(d) (e)
(MHz) (mK km s−1) (km s−1) (km s−1) (mK)
CCO 11–01 32 623.449 ± 0.007 5.1 ± 0.7 5.57(05) 1.09(13) 4.5
CCO 21–11 32 738.613 ± 0.005 1.6 ± 0.7 6.33(18) 1.46(34) 1.0
CCO 23–12 45 826.734 ± 0.002 8.1 ± 0.9 5.69(04) 0.73(11) 10.0
CCO 22–11 46 182.187 ± 0.002 2.5 ± 1.0 5.73(17) 0.89(31) 2.7

CCCO 4–3 38 486.891 ± 0.001 43.5 ± 1.0 5.74(01) 0.63(07) 64.5
CCCO 5–4 48 108.474 ± 0.001 44.2 ± 1.0 5.75(01) 0.63(14) 66.4

HNCO 202–101 1–1 43 962.007 ± 0.030 20.1 ± 1.0 5.76(01) 0.62(02) 35.1
HNCO 202–101 1–2 43 962.641 ± 0.006 ≤2.7
HNCO 202–101 3–2 43 963.000 ± 0.030 178.8 ± 1.0 5.76(01) 0.68(01) 247.8
HNCO 202–101 2–1 43 963.000 ± 0.030
HNCO 202–101 1–0 43 963.626 ± 0.030 26.1 ± 2.0 6.35(02) 0.60(04) 41.2
HNCO 202–101 2–2 43 963.626 ± 0.030 22.9 ± 2.0 5.66(03) 0.64(05) 33.6

HCNO 2–1 45 876.069 ± 0.002 7.1 ± 1.0 5.79(08) 0.98(16) 6.9

HOCN 202–101 41 950.836 ± 0.001 13.6 ± 1.0 5.55(02) 0.82(03) 15.6

HCOOH 212–111 43 303.705 ± 0.001 3.4 ± 0.5 6.10(09) 0.61(10) 5.2
HCOOH 202–101 44 911.734 ± 0.001 6.7 ± 0.5 5.82(05) 0.79(10) 7.9
HCOOH 211–110 46 581.220 ± 0.001 2.1 ± 0.5 5.95(14) 0.70(22) 2.8

HCCCHO 414–313 36 648.266 ± 0.006 7.4 ± 0.5 5.76(02) 0.78(05) 9.0
HCCCHO 404–303 37 290.136 ± 0.006 21.0 ± 0.5 5.64(01) 0.70(02) 28.1
HCCCHO 413–312 37 954.572 ± 0.006 10.4 ± 0.5 5.59(01) 0.74(04) 13.2
HCCCHO 515–414 45 807.708 ± 0.007 3.5 ± 0.7 5.73(05) 0.46(10) 7.3
HCCCHO 505–404 46 602.868 ± 0.007 25.5 ± 0.5 5.64(01) 0.65(02) 3.6
HCCCHO 514–413 47 440.427 ± 0.007 6.0 ± 0.7 5.61(04) 0.55(09) 10.3

A-CH3CHO 404–313 32 709.214 ± 0.002 ≤1.8
A-CH3CHO 212–111 37 464.204 ± 0.001 12.1 ± 1.0 5.84(02) 0.91(06) 12.5
A-CH3CHO 202–101 38 512.079 ± 0.001 31.3 ± 0.6 5.85(01) 0.82(01) 35.7
A-CH3CHO 211–110 39 594.289 ± 0.001 14.0 ± 1.0 5.83(02) 0.79(05) 16.6
A-CH3CHO 110–101 47 820.620 ± 0.002 4.3 ± 0.6 5.76(08) 0.65(13) 6.1
A-CH3CHO 211–202 48 902.831 ± 0.002 4.0 ± 0.6 5.76(07) 0.66(13) 5.6
E-CH3CHO 4+04–3−13 33 236.468 ± 0.002 ≤2.0
E-CH3CHO 2−12–1+10 35 837.312 ± 0.003 1.3 ± 0.6 5.89(09) 0.62(20) 2.0
E-CH3CHO 2−12–1−11 37 686.932 ± 0.002 9.7 ± 1.0 5.88(02) 0.75(05) 12.1
E-CH3CHO 2+02–1+01 38 506.035 ± 0.001 33.7 ± 1.0 5.85(01) 0.82(01) 38.5
E-CH3CHO 2+11–1+10 39 362.537 ± 0.002 13.8 ± 1.0 5.82(02) 0.84(04) 15.4
E-CH3CHO 2+11–1−11 41 212.157 ± 0.003 2.5 ± 0.8 6.07(09) 0.83(16) 2.8
E-CH3CHO 1−11–1+01 45 897.347 ± 0.003 ≤3.0
E-CH3CHO 1+10–1+01 47 746.968 ± 0.002 2.5 ± 0.8 6.17(22) 0.82(23) 2.8
E-CH3CHO 2+11–2+02 48 603.469 ± 0.002 6.8 ± 1.0 5.88(05) 0.75(11) 8.6

o-H2CCO 212–111 40 039.017 ± 0.001 57.8 ± 0.7 5.77(01) 0.68(01) 79.5
o-H2CCO 211–110 40 793.842 ± 0.001 59.4 ± 0.7 5.79(01) 0.68(01) 81.9
p-H2CCO 202–101 40 417.950 ± 0.001 37.9 ± 0.7 5.78(01) 0.64(02) 55.9

o-c-H2C3O 313–212 39 956.733 ± 0.004 14.9 ± 0.8 5.81(01) 0.65(03) 21.5
o-c-H2C3O 312–211 44 587.397 ± 0.004 12.4 ± 0.8 5.82(01) 0.51(03) 22.8
p-c-H2C3O 303–202 42 031.939 ± 0.004 6.4 ± 0.8 5.78(03) 0.68(07) 8.9
p-c-H2C3O 322–221 42 316.187 ± 0.003 1.7 ± 0.7 5.78(02) 0.27(10) 6.0
p-c-H2C3O 321–220 42 601.246 ± 0.003 2.4 ± 0.7 5.94(03) 0.48(09) 4.6

HCCO 2,2.5–1, 1.5 F = 3–2 43 317.673 ± 0.006 4.9 ± 0.8 5.80(03) 0.51(08) 8.9
HCCO 2,2.5–1, 1.5 F = 2–1 43 321.150 ± 0.006 3.8 ± 0.8 5.70(05) 0.67(15) 5.4
HCCO 2,1.5–1, 0.5 F = 2–1 43 329.543 ± 0.006 3.8 ± 0.8 5.67(06) 0.64(15) 5.5
HCCO 2,1.5–1, 0.5 F = 1–0 43 335.462 ± 0.004 4.2 ± 0.8 5.69(08) 0.97(17) 4.1
HC5O 13 1 12.5–12 −1 11.5 13–12 32 267.964 ± 0.002 3.7 ± 0.9 5.52(06) 0.63(09) 5.6
HC5O 13 1 12.5–12 −1 11.5 12–11 32 268.049 ± 0.002 4.8 ± 1.0 5.65(07) 0.73(15) 6.0
HC5O 13 −1 12.5–12 1 11.5 13–12 32 271.760 ± 0.002 2.7 ± 1.0 5.59(08) 0.62(14) 3.9
HC5O 13 −1 12.5–12 1 11.5 12–11 32 271.848 ± 0.002 4.3 ± 1.0 5.62(06) 0.76(15) 5.4
HC5O 14 −1 13.5–13 1 12.5 14–13 34 849.461 ± 0.002 1.9 ± 0.7 5.58(02) 0.33(16) 5.0
HC5O 14 −1 13.5–13 1 12.5 13–12 34 849.540 ± 0.002 4.5 ± 1.0 5.67(03) 0.81(08) 5.3
HC5O 14 1 13.5–13 −1 12.5 14–13 34 853.387 ± 0.002 4.5 ± 1.0 5.69(17) 0.74(14) 5.7
HC5O 14 1 13.5–13 −1 12.5 13–12 34 853.469 ± 0.002 3.1 ± 0.9 5.63(14) 0.54(16) 5.4
HC5O 15 1 14.5–14 −1 13.5 15–14 (f) 37 430.982 ± 0.003 6.3 ± 1.0 5.79(03) 0.93(05) 6.4
HC5O 15 −1 14.5–14 1 13.5 15–14 (f) 37 435.050 ± 0.003 6.2 ± 1.0 5.79(04) 0.99(09) 5.9
HC5O 15 −1 15.5–15 1 14.5 16–15 (f) 40 012.451 ± 0.004 5.3 ± 1.0 5.80(06) 1.00(12) 4.9
HC5O 15 1 15.5–15 −1 14.5 16–15 (f) 40 016.668 ± 0.004 7.1 ± 1.0 5.86(04) 1.02(10) 6.5
HC5O 16 1 16.5–15 −1 15.5 17–16 (f) 42 593.906 ± 0.004 5.2 ± 1.0 5.70(05) 0.77(09) 6.3
HC5O 16 −1 16.5–15 1 15.5 17–16 (f) 42 598.284 ± 0.004 5.4 ± 1.0 5.89(04) 0.82(09) 6.2
HC5O 17 −1 17.5–16 1 16.5 18–17 (f) 45 175.346 ± 0.005 5.4 ± 1.0 5.75(11) 1.05(19) 4.8
HC5O 17 1 17.5–16 −1 16.5 18–17 (f) 45 179.895 ± 0.005 6.3 ± 1.0 5.80(08) 1.06(17) 5.6
HC5O 18 1 18.5–17 −1 17.5 19–18 (f) 47 756.772 ± 0.007 ≤5.1
HC5O 18 −1 18.5–17 1 17.5 19–18 (f) 47 761.501 ± 0.007 ≤5.1

Notes.

(a)

Rest frequencies and uncertainties from MADEX (Cernicharo 2012).

(b)

Integrated line intensity in mK kms−1.

(c)

Local standard of rest velocity of the observed emission kms−1.

(d)

Line width at half intensity derived by fitting a Gaussian line profile to the observed transitions (in kms−1).

(e)

Upper limits to the antenna temperature correspond to 3σ values.

(f)

Average of two hyperfine components.

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.