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Table C.1.

Physical conditions in the molecular envelopes of AQ Sgr, BK Vir, and V370 And derived from our model fitting of the 12CO data with SHAPE+shapemol.

Source Gas density Temperature Velocity δV
(cm−3) (K) (km s−1) (km s−1)
n(r) = no× 1/(r2+0.1) T(r) = To× 1/(r+0.1) V(r) = Vo
n(θ) = no T(θ) = To V(θ) = Vo
n(φ) = no T(φ) = To

no To Vo

AQ Sgr 4.94 × 104 50 3.5 2.9
BK Vir 2.70 × 105 100 2.1 1.4

V370 And

Sphere n(r) = no× 1/(r+0.1) T(r) = To× 1/(r+0.1) V(r) = Vo 1.1
n(θ) = no T(θ) = To V(θ) = Vo
n(φ) = no T(φ) = To
no = 2.00 × 105 To = 100 Vo = 0.8

Biconical n(r) = no × ∣1/(r + 0.1)∣ T(r) = To × 1/(r+0.1) V(r) = Vo 3.4
structure n(θ) = no T(θ) = To V(θ) = Vo
n(z) (a) =no T(z)=To V(z)=Vo
no = 1.30 × 105 To = 100 Vo = 4.6

Notes. Description of the columns from left to right: (1) GCVS designation (Samus et al. 2009); (2–5) gas density, gas temperature, gas velocity, and micro-turbulence velocity. We note that r, r1, and r2 are given in arcsec; r1 = r2 = RCO (photodissociation radius taken from Table 2). φ is given in degrees.

(a)

We note that in this model we use cylindrical coordinates for defining the physical conditions in the biconical structure.

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