Table A.1: Line identifications.
Nr.   $T_{\rm A}^*$ Freq.a Im.-freqa Identification
  mK MHz MHz  
1 4 94 903 98 126 HCCC13CN 36-35
2 3.5 94 913 98 155 SiC4 32-31 (im.)
3 5.5 95 018 98 011 l-C3Hb (im.)
4 6 95 035 97 095 C36S; l-C3Hb (im.)
5 21 95 049 97 980 CS(2-1) (im.)
6 20 95 087 97 942 SiC4 31-30
7 1.5 U95 115 97 914  
8 1.5 95 126 97 903 SiCCC13C 32-31
9 20 142 297 151 263 H2C4  161,16-152,15
10 23 142 321 151 235 Al37Cl 10-9c
11 3.5 142 345 151 215 HCCC13CN 54-53
12 5 142 402 151 158 SiS  J=8-7, v=4d?
13 29 142 410 151 150 NaCN  927-826c
14 5 U142 489 151 071  
15 40 142 502 151 058 CCS  1111-1010c
16 7 142 525 151 035 C36S 3-2c
17 460 142 560 151 000  29SiS 8-7c
18 4 U142 594 150 966  
19 12 U142 622 150 940  
20 7 142 675 150 885 SiCCC13C 48-47
21 9 142 695 150 865 artefact
22 850 142 730 150 831 C4 N=15-14c
23 9 142 755 150 805 C4N=15-14?
24 850 142 768 150 793 C4 N=15-14c
a The band from which the line probably originates is given in bold face; for information, the frequency of the corresponding image band is also given. b Thaddeus et al. (1985). c Cernicharo et al. (2000) and references therein. d The SiS v=4 J=8-7 line is at 142 399.8 MHz. A shift of 1-2 MHz could be possible if the line is produced in the acceleration region (blue).

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