2006ApJ...641..327C


Query : 2006ApJ...641..327C

2006ApJ...641..327C - Astrophys. J., 641, 327-346 (2006/April-2)

The homogeneity of interstellar elemental abundances in the Galactic disk.

CARTLEDGE S.I.B., LAUROESCH J.T., MEYER D.M. and SOFIA U.J.

Abstract (from CDS):

We present interstellar elemental abundance measurements derived from Space Telescope Imaging Spectrograph echelle observations of 47 sight lines extending up to 6.5 kpc through the Galactic disk. These paths probe a variety of interstellar environments, covering ranges of nearly 4 orders of magnitude in molecular hydrogen fraction f(H2) and more than 2 in mean hydrogen sight-line density <nH>. Coupling the current data with Goddard High Resolution Spectrograph data from 17 additional sight lines and the corresponding Far Ultraviolet Spectroscopic Explorer and Copernicus observations of H2absorption features, we explore magnesium, phosphorus, manganese, nickel, copper, and germanium gas-phase abundance variations as a function of <nH>: density-dependent depletion is noted for each element, consistent with a smooth transition between two abundance plateaus identified with warm and cold neutral interstellar medium depletion levels. The observed scatter with respect to an analytic description of these transitions implies that total elemental abundances are homogeneous on length scales of hundreds of parsecs, to the limits of abundance measurement uncertainty. The probable upper limit we determine for intrinsic variability at any <nH> is 0.04 dex, aside from an apparent 0.10 dex deficit in copper (and oxygen) abundances within 800 pc of the Sun. Magnesium dust abundances are shown to scale with the amount of silicon in dust, and in combination with a similar relationship between iron and silicon, these data appear to favor the young F and G star values of Sofia & Meyer as an elemental abundance standard for the Galaxy.

Abstract Copyright:

Journal keyword(s): ISM: Abundances - Galaxy: Abundances - Ultraviolet: ISM

Simbad objects: 64

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Number of rows : 64
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 HD 1383 SB* 00 18 17.7370251744 +61 43 37.404185232 7.23 7.89 7.63     B0II 87 0
2 * gam Cas HXB 00 56 42.5310945 +60 43 00.264089 1.18 2.29 2.39 2.32 2.40 B0.5IVpe 1208 0
3 HD 232522 * 01 46 02.1915836784 +55 19 54.913539036 7.76 8.65 8.70     B1II 66 0
4 HD 12323 SB* 02 02 30.1268458032 +55 37 26.372271540 7.95 8.87 8.92     ON9.2V 184 0
5 HD 13268 * 02 11 29.7003301008 +56 09 31.721738760 7.48 8.24 8.18     ON8.5IIIn 179 0
6 HD 14434 Em* 02 21 52.4121560832 +56 54 18.032028876 7.87 8.65 8.49 8.29 8.20 O5.5Vnn((f))p 187 0
7 * zet Per s*b 03 54 07.9224751 +31 53 01.081262 2.19 2.97 2.85 2.71 2.62 B1Ib 856 0
8 * eps Per bC* 03 57 51.2320472 +40 00 36.775143 1.71 2.71 2.89 2.96 3.14 B0.5III 519 0
9 * ksi Per ** 03 58 57.9024302099 +35 47 27.709515737 3.190 4.080 4.060 3.88 3.89 O7.5III(n)((f)) 832 0
10 * 62 Tau * 04 23 59.7627483096 +24 18 03.527065188 6.18 6.499 6.337     B3V 218 0
11 * 23 Ori SB* 05 22 50.0039865384 +03 32 40.051458204 3.99 4.86 5.00 5.05 5.23 B2IV/V 247 0
12 * del Ori SB* 05 32 00.40009 -00 17 56.7424 0.96 2.02 2.41 2.32 2.54 O9.5IINwk 779 0
13 Ass Ori OB 1b As* 05 34.0 -01 30           ~ 266 0
14 HD 36841 * 05 34 33.7209600072 -00 23 11.498840124 8.28 8.59 8.58     B8V 63 0
15 * lam Ori ** 05 35 08.27761 +09 56 02.9611 2.45 3.48 3.66 3.72 3.89 O8IIIf+B0.5V 303 0
16 * tet01 Ori B EB* 05 35 16.1339860056 -05 23 06.784444248 7.71 8.20 7.96     B1V 367 2
17 * iot Ori SB* 05 35 25.9819073 -05 54 35.643537 1.45 2.53 2.77     O9IIIvar 773 0
18 HD 37061 Or* 05 35 31.3649044920 -05 16 02.582064192 6.44 7.09 6.83     O9.5V 355 0
19 * eps Ori s*b 05 36 12.81335 -01 12 06.9089 0.48 1.51 1.69 1.76 1.93 B0Ia 896 0
20 HD 37367 * 05 39 18.3135535104 +29 12 54.788852916 5.6 6.116 5.984     B2IV-V 133 0
21 HD 37903 Em* 05 41 38.3891026008 -02 15 32.479650720 7.32 7.94 7.83 7.64 7.52 B3IV 363 0
22 * mu. Col V* 05 45 59.8950238944 -32 18 23.162261796 3.84 4.90 5.18 5.30 5.57 O9.5V 495 0
23 * kap Ori s*b 05 47 45.3888404 -09 40 10.577707 0.87 1.88 2.06 2.09 2.27 B0.5Ia 569 0
24 * 11 Gem bC* 06 19 19.2960469128 +23 28 09.862014036 6.52 7.21 6.92     B0II 125 1
25 * 15 Mon Be* 06 40 58.65963 +09 53 44.7229 3.360 4.45 4.68   4.88 O7V+B1.5/2V 803 0
26 HD 52266 SB* 07 00 21.0763468632 -05 49 35.954203044 6.32 7.22 7.23     O9.5IIIn 119 0
27 * tau CMa SB* 07 18 42.4849951654 -24 57 15.700749738 3.26 4.25 4.40 4.44 4.62 O9II 422 0
28 HD 63005 * 07 45 49.0332176232 -26 29 31.436407572 8.29 9.12 9.13 9.64   O5/6 83 0
29 HD 71634 * 08 25 30.2669397144 -58 07 59.591202888 6.26 6.616 6.648     B5III 43 0
30 HD 72754 Be* 08 32 23.3805568848 -49 36 04.770238860 6.38 9.09 8.88 7.77   B2(Ia)pe(_sh) 110 0
31 HD 75309 V* 08 47 27.9647002224 -46 27 03.958625664 7.05 7.82 7.84 8.77   B2Ib/II 77 0
32 HD 79186 s*b 09 11 04.3980934536 -44 52 04.448548776 4.65 5.22 5.00 4.71 4.49 B5Ia 141 0
33 HD 91824 SB* 10 34 46.6322493936 -58 09 22.038466896 7.17 8.11 8.14 9.02   O7V((f))z 154 0
34 HD 91983 * 10 35 54.2060148744 -58 15 26.970947496 7.79 8.62 8.55 8.49 8.42 B2III 89 0
35 HD 308813 SB* 11 37 58.4451890256 -63 18 59.455147284 8.46 9.68 9.73 9.74   O9.7IV(n) 82 0
36 V* BU Cru EB* 12 53 37.6193092848 -60 21 25.425832356 6.49 7.04 6.84 7.55   B2Ib 112 0
37 CD-69 1060 * 13 00 34.0702154160 -70 12 35.661103236 8.68 10.04 9.64 9.84   B0.5IIIn 49 0
38 HD 116852 * 13 30 23.5185791544 -78 51 20.547734652 8.29 8.38 8.47     O8.5II-III((f)) 151 1
39 HD 122879 V* 14 06 25.1578487688 -59 42 57.254187024 5.90 6.64 6.50 6.33 6.18 B0Ia 174 1
40 * b Sco * 15 50 58.7444628720 -25 45 04.658676984 3.84 4.552 4.635     B1.5Vn 291 0
41 HD 147888 ** 16 25 24.2915998776 -23 27 36.747568152 6.71 7.05 6.74     B3V 215 0
42 HD 148594 * 16 30 15.6761762712 -27 54 58.506303852   6.964 6.892     B8V 62 0
43 * zet Oph Be* 16 37 09.5400587698 -10 34 01.509742704 1.73 2.58 2.56 2.46 2.50 O9.2IVnn 1839 0
44 V* V1297 Sco SB* 16 56 05.2157203176 -40 20 57.576260184 7.87 9.11 9.29 9.29   O7.5Vz 138 0
45 HD 156110 * 17 13 27.7212520752 +45 22 20.058676248   7.42 7.58     B3Vn 52 0
46 * gam Ara Be* 17 25 23.6593111 -56 22 39.814775 2.25 3.21 3.34     B1Ib 273 0
47 HD 157857 Em* 17 26 17.3317676808 -10 59 34.785507480 7.16 7.95 7.78     O6.5II(f) 170 0
48 HD 165955 bC* 18 09 57.9701527608 -34 52 07.331846844 8.3 9.30 9.59 9.76   B2II/III 53 0
49 HD 175360 * 18 56 00.6739119744 -23 10 25.511681100   5.91 5.93     B5/7III 46 0
50 HD 185418 * 19 38 27.4809937872 +17 15 26.048161044 7 7.639 7.485     B0.5V 138 0
51 HD 190918 WR* 20 05 57.3244526328 +35 47 18.150756792 6.11 6.88 6.75     WN5+O9I 369 0
52 HD 192035 bC? 20 10 49.5883683456 +47 48 47.193693264 7.41 8.26 8.22     B0III-IV(n) 63 1
53 HD 192639 s*b 20 14 30.4275801672 +37 21 13.816276704 6.83 7.46 7.11     O7.5Iabf 292 0
54 * 55 Cyg s*b 20 48 56.2915921440 +46 06 50.883645024 4.83 5.28 4.86 4.41 4.10 B4Ia 493 0
55 HD 198781 Pu* 20 49 17.3909110680 +64 02 32.131010292 5.75 6.472 6.451     B0.5V 103 0
56 HD 201345 * 21 07 55.4150161776 +33 23 49.228548972   7.611 7.764     ON9.2IV 174 0
57 HD 203532 * 21 33 54.5744476728 -82 40 59.106857160 6.15 6.51 6.38     B3.5V 98 0
58 HD 206773 Be* 21 42 24.1853979312 +57 44 09.795762276 6.30 7.10 6.87     B0V:pe 169 0
59 HD 207198 Y*? 21 44 53.2791389640 +62 27 38.048647248 5.61 6.25 5.94 5.66 5.49 O8.5II 347 0
60 HD 208440 Y*? 21 53 53.2978442568 +62 36 00.753455268 7.24 7.93 7.91     B1V 98 0
61 HD 210809 s*b 22 11 38.6004719208 +52 25 47.950615308 6.7 7.61 7.56     O9Iab 214 0
62 BD+53 2820 * 22 13 49.6987973304 +54 24 35.104403340 9.27 10.02 9.96     B0IVn 52 0
63 HD 212791 Be* 22 25 41.7519570888 +52 26 18.422505816   7.98 8.02     B8 51 0
64 HD 220057 SB* 23 20 00.6489087840 +61 08 59.447042412 6.37 6.948 6.944     B5 84 0

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