Table 1.

Observed molecular lines.*

MoleculeTransitionRest frequencyΔTmbDetectionFigure
(GHz)(K)number
12COJ = 1–0115.2712021.4Y1a
CNJ = 3/2–1/2113.4909821.3Y11a
CCSN, J = 9, 8–8, 7113.4102041.5N...
C17OJ = 1–0, F = 7/2–5/2112.3589881.0Y11b
CH3CN6(2)–5(2), F = 7–6110.3750520.6N...
13COJ = 1–0110.2013540.7Y1b
NH2D1(1,1)0–1(0, 1)0+110.1535991.0N...
C18OJ = 1–0109.7821730.6Y1c
H2CS3(1,3)–2(1,2)101.4778850.6Y11c
HC3NJ = 11 − 10100.0763860.5Y11d
SON, J = 5, 4–4,4100.0295650.3N...
SON, J = 2, 3–1,299.2999050.3Y11e
CSJ = 2 − 197.9809530.3Y1d
CH3OH2(0,2)–1(0, 1)A++96.7413770.5Y11f
C34SJ = 2 − 196.4129500.4Y11g
CH3OH2(1,2)–1(1, 1)A++95.9143100.5Y11h
HCO+J = 1–089.1885260.3Y1e
HCNJ = 1–0, F = 2–188.63184730.2Y11i
SiOJ = 2–1, v = 086.8469950.2Y1f
H13CO+J = 1–086.7542880.2Y11j
MoleculeTransitionRest frequencyΔTmbDetectionFigure
(GHz)(K)number
12COJ = 1–0115.2712021.4Y1a
CNJ = 3/2–1/2113.4909821.3Y11a
CCSN, J = 9, 8–8, 7113.4102041.5N...
C17OJ = 1–0, F = 7/2–5/2112.3589881.0Y11b
CH3CN6(2)–5(2), F = 7–6110.3750520.6N...
13COJ = 1–0110.2013540.7Y1b
NH2D1(1,1)0–1(0, 1)0+110.1535991.0N...
C18OJ = 1–0109.7821730.6Y1c
H2CS3(1,3)–2(1,2)101.4778850.6Y11c
HC3NJ = 11 − 10100.0763860.5Y11d
SON, J = 5, 4–4,4100.0295650.3N...
SON, J = 2, 3–1,299.2999050.3Y11e
CSJ = 2 − 197.9809530.3Y1d
CH3OH2(0,2)–1(0, 1)A++96.7413770.5Y11f
C34SJ = 2 − 196.4129500.4Y11g
CH3OH2(1,2)–1(1, 1)A++95.9143100.5Y11h
HCO+J = 1–089.1885260.3Y1e
HCNJ = 1–0, F = 2–188.63184730.2Y11i
SiOJ = 2–1, v = 086.8469950.2Y1f
H13CO+J = 1–086.7542880.2Y11j

*The rest frequencies are taken from Splatalogue. ΔTmb is the 1σ noise level measured for a velocity resolution of 0.1 km s−1. “Y’ and ‘N” in the fifth column mean detection and non-detection, respectively. “Figure number” in the last column denotes the figure numbers where intensity distributions of the detected lines are displayed.

Table 1.

Observed molecular lines.*

MoleculeTransitionRest frequencyΔTmbDetectionFigure
(GHz)(K)number
12COJ = 1–0115.2712021.4Y1a
CNJ = 3/2–1/2113.4909821.3Y11a
CCSN, J = 9, 8–8, 7113.4102041.5N...
C17OJ = 1–0, F = 7/2–5/2112.3589881.0Y11b
CH3CN6(2)–5(2), F = 7–6110.3750520.6N...
13COJ = 1–0110.2013540.7Y1b
NH2D1(1,1)0–1(0, 1)0+110.1535991.0N...
C18OJ = 1–0109.7821730.6Y1c
H2CS3(1,3)–2(1,2)101.4778850.6Y11c
HC3NJ = 11 − 10100.0763860.5Y11d
SON, J = 5, 4–4,4100.0295650.3N...
SON, J = 2, 3–1,299.2999050.3Y11e
CSJ = 2 − 197.9809530.3Y1d
CH3OH2(0,2)–1(0, 1)A++96.7413770.5Y11f
C34SJ = 2 − 196.4129500.4Y11g
CH3OH2(1,2)–1(1, 1)A++95.9143100.5Y11h
HCO+J = 1–089.1885260.3Y1e
HCNJ = 1–0, F = 2–188.63184730.2Y11i
SiOJ = 2–1, v = 086.8469950.2Y1f
H13CO+J = 1–086.7542880.2Y11j
MoleculeTransitionRest frequencyΔTmbDetectionFigure
(GHz)(K)number
12COJ = 1–0115.2712021.4Y1a
CNJ = 3/2–1/2113.4909821.3Y11a
CCSN, J = 9, 8–8, 7113.4102041.5N...
C17OJ = 1–0, F = 7/2–5/2112.3589881.0Y11b
CH3CN6(2)–5(2), F = 7–6110.3750520.6N...
13COJ = 1–0110.2013540.7Y1b
NH2D1(1,1)0–1(0, 1)0+110.1535991.0N...
C18OJ = 1–0109.7821730.6Y1c
H2CS3(1,3)–2(1,2)101.4778850.6Y11c
HC3NJ = 11 − 10100.0763860.5Y11d
SON, J = 5, 4–4,4100.0295650.3N...
SON, J = 2, 3–1,299.2999050.3Y11e
CSJ = 2 − 197.9809530.3Y1d
CH3OH2(0,2)–1(0, 1)A++96.7413770.5Y11f
C34SJ = 2 − 196.4129500.4Y11g
CH3OH2(1,2)–1(1, 1)A++95.9143100.5Y11h
HCO+J = 1–089.1885260.3Y1e
HCNJ = 1–0, F = 2–188.63184730.2Y11i
SiOJ = 2–1, v = 086.8469950.2Y1f
H13CO+J = 1–086.7542880.2Y11j

*The rest frequencies are taken from Splatalogue. ΔTmb is the 1σ noise level measured for a velocity resolution of 0.1 km s−1. “Y’ and ‘N” in the fifth column mean detection and non-detection, respectively. “Figure number” in the last column denotes the figure numbers where intensity distributions of the detected lines are displayed.

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