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J/A+A/500/1109
146
Rotational spectrum of HCOO
13
CH
3
(Carvajal+, 2009)
ReadMe+ftp
2009A&A...500.1109C
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1.
J/A+A/500/1109/tablea1
*
13
C2-Methylformate HCOO
13
CH
3
(Note)
(934 rows)
meta
J/A+A/500/1109/tablea1
2.
J/A+A/500/1109/lines
Emission lines (without high blend) of
13
C-methyl formate present in the frequency range of the Orion KL survey
(tables A2-A5 of paper)
(531 rows)
meta
J/A+A/500/1109/lines
3.
J/A+A/500/1109/notes
Notes
(58 rows)
meta
J/A+A/500/1109/notes
Simple Constraint
List Of Constraints
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Column
Constraint
Explain
(
UCD
)
(ALL)
recno
Record number assigned by the VizieR team. Should Not be used for identification.
(
meta.record
)
(
RECORD
)
(1)
vt0
[0] Upper state vt (torsional) value
(Note 1)
(
phys.atmol.qn
)
(
AT_Q-N_TORSIONAL
)
(1)
J0
Upper state J quantum number value
(Note 1)
(
phys.atmol.qn
)
(
AT_Q-N_ANG-MOM
)
(1)
n_Ka0
(char)
[*] * when two degenerate levels
(Note 1)
(
meta.note
)
(
NOTE
)
(1)
Ka0
Upper state Ka quantum number value
(Note 1)
(
phys.atmol.qn
)
(
AT_Q-N_ROTATIONAL
)
(1)
Ka0b
(n)
Second value for Ka0
(
phys.atmol.qn
)
(
AT_Q-N_ROTATIONAL
)
(1)
n_Kc0P0
(char)
[*] * when two degenerate levels
(Note 1)
(
meta.note
)
(
NOTE
)
(1)
Kc0P0
(char)
Upper state KcP quantum number value
(Note 1)
(
phys.atmol.qn
)
(
AT_Q-N_ROTATIONAL
)
(1)
Kc0P0b
(char)
Second value of Kc0P0
(
phys.atmol.qn
)
(
AT_Q-N_ROTATIONAL
)
(1)
vt1
[0] Lower state vt (torsional) value
(Note 1)
(
phys.atmol.qn
)
(
AT_Q-N_TORSIONAL
)
(1)
J1
Lower state J value
(Note 1)
(
phys.atmol.qn
)
(
AT_Q-N_ANG-MOM
)
ALL
cols
(n)
indicates a possible blank or NULL column
(i)
indexed column
(1)
n_Ka1
(char)
[*] * when two degenerate levels
(Note 1)
(
meta.note
)
(
NOTE
)
(1)
Ka1
Lower state Ka quantum number value
(Note 1)
(
phys.atmol.qn
)
(
AT_Q-N_ROTATIONAL
)
(1)
Ka1b
(n)
Second value of Ka1
(
phys.atmol.qn
)
(
AT_Q-N_ROTATIONAL
)
(1)
n_Kc1P1
(char)
[*] * when two degenerate levels
(Note 1)
(
meta.note
)
(
NOTE
)
(1)
Kc1P1
(char)
Lower state KcP quantum number value
(Note 1)
(
phys.atmol.qn
)
(
AT_Q-N_ROTATIONAL
)
(1)
Kc1P1b
(char)
Second value of Kc1P1
(
phys.atmol.qn
)
(
AT_Q-N_ROTATIONAL
)
(1+2)
Freq
MHz
Observed vt=0 microwave transitions
(Note 2)
(
em.freq
)
(
OBS_FREQUENCY
)
(1)
e_Freq
kHz
rms uncertainty on Freq
(
stat.error
)
(
ERROR
)
(1)
FreqC
MHz
Calculated line frequency
(
em.freq;spect.line;meta.modelled
)
(
OBS_FREQUENCY
)
(1)
e_FreqC
kHz
rms uncertainty on FreqC
(
stat.error
)
(
ERROR
)
(1)
O-C
MHz
Observed minus calculated frequencies value
(
stat.fit.residual
)
(
FIT_RESIDUAL
)
(1)
S
D+2
Calculated line strengths
(
spect.line.strength
)
(
AT_TRANS_STRENGTH
)
(1)
Elow
cm-1
Lower state energy
(Note 3)
(
phys.energy
)
(
AT_ENERGY_LEVEL
)
ALL
cols
(n)
indicates a possible blank or NULL column
(i)
indexed column
(2)
Mol
(char)
Molecule, as
a
=A-HCOO
13
CH
3
,
e
= E-HCOO
13
CH
3
,
A
=A-H
13
COOCH
3
,
E
=E-H
13
COOCH
3
(
meta.id;phys.mol
)
(
AT_MOL_ID
)
(2)
Trans
(char)
Transition (J
Ka,Kc
)
(
phys.atmol.transProb;phys.atmol.transition
)
(
AT_TRANS_ID
)
(2)
r_Freq
(char)
[as] References for Freq
(Note 1)
(
meta.ref;pos.frame
)
(
REFER_CODE
)
(2)
Sij
D+2
Line strength
(
spect.line.strength
)
(
AT_TRANS_STRENGTH
)
(2)
Eu
cm-1
Energy of the upper level
(
phys.energy;phys.atmol.level
)
(
AT_ENERGY_LEVEL
)
(2)
RestFreq
MHz
(n)
Observed (centroid) rest frequencies assuming that the radial velocities relative to LSR are 7.5km/s
(
em.freq
)
(
OBS_FREQUENCY
)
(2)
n_RestFreq
(char)
[b] b = blended with previous line
(
meta.note
)
(
NOTE
)
(2)
Temp
K
(n)
Observed temperature of main beam (at the peak of the line)
(
phys.temperature;meta.main
)
(
PHYS_TEMP_MISC
)
(2)
n_Temp
(char)
Notes, in notes.dat file
(
meta.note
)
(
NOTE
)
(2)
Tmean
K
(n)
Main beam temperature obtained with the model
(
phys.temperature;meta.modelled;meta.main
)
(
PHYS_TEMP_MISC
)
(3)
Note
(char)
Note code
(
meta.note
)
(
NOTE
)
(3)
Text
(char)
Text of the note
(
meta.note
)
(
REMARKS
)
ALL
cols
(n)
indicates a possible blank or NULL column
(i)
indexed column
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