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Table H.1.

Best fit parameters for single- and two-component fits.

Core Component (a) TK σv(b) vrel(c) log(N(p−NH3)) s Noise (d) ΔAIC (e) TK,GAS σv,GAS
(K) (km s−1) (km s−1) (cm−2) (mK) (K) (km s−1)
Single 19.1(2) 0.253(3) 0.0 (f) 13.86(2) 0.9 19(1) 0.23(1)
Oph-A Narrow 15.8(4) 0.156(4) −0.001(2) 13.74(4) 0.6 17 761
Broad 24.9(8) 0.44(1) −0.014(6) (g) 1.5

Single 11.72(9) 0.177(1) 0.0 (f) 14.168(5) 0.8 12.1(5) 0.174(8)
Oph-C Narrow 10.13(9) 0.1376(8) −0.0015(4) 14.088(6) 0.6 9 6724
Broad 17.7(3) 0.477(7) −0.033(5) 14.13(3) 1.9

Single 9.9(2) 0.104(1) 0.0005(5) 13.94(1) 0.4 10.2(4) 0.116(7)
Oph-D Narrow 9.7(3) 0.088(1) −0.006(1) 13.89(2) 0.3 22, 21 383
Broad 12.0(1) 0.39(2) 0.14(2) 13.8(1) 1.8

Single 12.5(4) 0.168(4) 0.000(2) 13.77(4) 0.7 12.3(5) 0.171(8)
Oph-E Narrow 11.7(3) 0.126(2) 0.023(2) 13.73(3) 0.5 24 3698
Broad 17.9(6) 0.76(2) −0.92(3) (g) 3.0

Single 13.9(1) 0.174(2) 0.0003(5) 13.91(1) 0.7 14.9(8) 0.19(1)
Oph-F Narrow 12.6(1) 0.128(1) 0.006(1) 13.81(1) 0.5 9, 11 5244
Broad 19.1(4) 0.55(1) −0.144(9) 13.87(7) 2.1

Single 11.6(1) 0.15(1) 0.0008(5) 14.0(9) 0.6 12.4(4) 0.16(1)
Oph-H-MM1 Narrow 11.0(1) 0.133(1) 0.012(1) 13.971(9) 0.6 16 1489
Broad 16.9(7) 0.47(2) −0.4(3) 13.99(8) 1.9

Single 12.1(2) 0.137(2) 0.005(1) 13.79(2) 0.6 12.2(2) 0.160(8)
L1688-d10 Narrow 11.2(2) 0.111(2) 0.015(2) 13.76(2) 0.4 14 826
Broad 17.1(8) 0.42(2) −0.2(2) 13.6(2) 1.7

Single 10.6(2) 0.135(1) −0.0004(4) 13.92(1) 0.6 10.4(1) 0.129(6)
L1688-d12 Narrow 9.4(6) 0.123(4) −0.0009(7) 13.91(3) 0.6 16 30
Broad 18.0(3) 0.26(5) 0.0(1) 13.6(4) 1.0

Single 12.4(3) 0.149(3) −0.002(2) 13.81(3) 0.6 12.5(5) 0.14(1)
Oph-B3 Narrow 11.4(3) 0.117(2) −0.028(2) 13.67(3) 0.5 26, 28 1083
Broad 19.0(1) 0.58(3) 0.56(4) 13.8(2) 2.2

Single 13.5(4) 0.209(6) 0.000(1) 13.75(5) 0.9 14.2(5) 0.18(2)
L1688-SR1 Narrow 10(1) 0.102(5) −0.033(4) 13.3(1) 0.4 35 308
Broad 18.0(1) 0.43(2) 0.11(2) 13.7(2) 1.7

Single 17.2(3) 0.239(4) 0.000(2) 13.35(8) 0.9 16.70(6) 0.222(3)
L1688-SR2 Narrow 15.4(5) 0.178(6) −0.009(4) 13.2(1) 0.7 11 164
Broad 24.0(2) 0.6(5) 0.08(3) 13.0(4) 2.0

Single 24.6(6) 0.295(8) 0.0 (f) (g) 0.9 (h) (h)
L1688-SR3 Narrow 24(1) 0.24(2) 0.05(2) (g) 0.8 18 12
Broad 27.0(5) 0.41(7) −0.2(2) (g) 1.3

Single 16.9(2) 0.451(4) 0.0002(0) 13.79(2) 1.8 (h) (h)
Ambient cloud (i) Broad-1 16.9(2) 0.35(2) −0.16(4) 13.74(3) 1.4 9 94
Broad-2 17.0(5) 0.35(3) 0.45(7) 13.2(3) 1.4

Notes. Kinetic temperatures, velocity dispersions and p-NH3 column densities, derived from single-component fits, and two-component fits, in the coherent cores and the ambient cloud(i). The values in parentheses represent the fit-determined error in the final decimal place of the corresponding parameter. These uncertainties do not include the calibration uncertainty, which is ∼ 10%. The noise level achieved in the average spectra are also shown. The final two columns show the average kinetic temperature and velocity dispersions inside the cores, from GAS DR1 (Friesen et al. 2017) results (single-component fit).

(a)

single-component fit, or the individual components of the two-component fit.

(b)

The channel response, σchan (see Sect. 3.2), is not removed from the σv value reported here (the contribution from σchan is very small, changes only in the third decimal place in σv).

(c)

Velocity from the fit. Since we align the spectrum in the core by the velocity at each pixel (determined from single-component fit), the velocities reported in this Table are relative to the mean velocity in the corresponding core.

(d)

Noise level estimated for both NH3 (1,1) and (2,2). In cases where two values are reported, the noise in NH3 (1,1) and (2,2) are not the same, and the values correspond to the noise in (1,1) and (2,2), respectively.

(e)

Change in AIC, from 1-component fit to 2-component fit (ΔAIC = AIC1−comp.AIC2−comp.).

(f)

Value and error smaller than 10−4 km s−1.

(g)

Excitation temperature could not be well-constrained from the fit (fit determined error > 30%), and therefore, the column density estimate is not very reliable.

(h)

Velocity dispersion and temperature maps from GAS DR1 did not include any pixel inside SR3, or ambient cloud box.

(i)

Represents the average spectra in the “ambient cloud box” shown in Fig. 1.

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