2012ApJ...760..106F


Query : 2012ApJ...760..106F

2012ApJ...760..106F - Astrophys. J., 760, 106 (2012/December-1)

The interstellar magnetic field close to the Sun. II.

FRISCH P.C., ANDERSSON B.-G., BERDYUGIN A., PIIROLA V., DEMAJISTRE R., FUNSTEN H.O., MAGALHAES A.M., SERIACOPI D.B., McCOMAS D.J., SCHWADRON N.A., SLAVIN J.D. and WIKTOROWICZ S.J.

Abstract (from CDS):

The magnetic field in the local interstellar medium (ISM) provides a key indicator of the galactic environment of the Sun and influences the shape of the heliosphere. We have studied the interstellar magnetic field (ISMF) in the solar vicinity using polarized starlight for stars within 40 pc of the Sun and 90° of the heliosphere nose. In Frisch et al. (Paper I), we developed a method for determining the local ISMF direction by finding the best match to a group of interstellar polarization position angles obtained toward nearby stars, based on the assumption that the polarization is parallel to the ISMF. In this paper, we extend the analysis by utilizing weighted fits to the position angles and by including new observations acquired for this study. We find that the local ISMF is pointed toward the galactic coordinates ℓ, b =47° ±20°, 25°±20°. This direction is close to the direction of the ISMF that shapes the heliosphere, ℓ, b =33°±4°, 55°±4°, as traced by the center of the "Ribbon" of energetic neutral atoms discovered by the Interstellar Boundary Explorer (IBEX) mission. Both the magnetic field direction and the kinematics of the local ISM are consistent with a scenario where the local ISM is a fragment of the Loop I superbubble. A nearby ordered component of the local ISMF has been identified in the region ℓ ~0° ⟶ 80° and b ~0° ⟶ 30°, where PlanetPol data show a distance-dependent increase of polarization strength. The ordered component extends to within 8 pc of the Sun and implies a weak curvature in the nearby ISMF of ∼0°.25/pc. This conclusion is conditioned on the small sample of stars available for defining this rotation. Variations from the ordered component suggest a turbulent component of ∼23°. The ordered component and standard relations between polarization, color excess, and H° column density predict a reasonable increase of N(H) with distance in the local ISM. The similarity of the ISMF directions traced by the polarizations, the IBEX Ribbon, and pulsars inside the Local Bubble in the third galactic quadrant suggest that the ISMF is relatively uniform over spatial scales of 8-200 pc and is more similar to interarm than spiral-arm magnetic fields. The ISMF direction from the polarization data is also consistent with small-scale spatial asymmetries detected in GeV-TeV cosmic rays with a galactic origin. The peculiar geometrical relation found earlier between the cosmic microwave background dipole moment, the heliosphere nose, and the ISMF direction is supported by this study. The interstellar radiation field at ∼975 Å does not appear to play a role in grain alignment for the low-density ISM studied here.

Abstract Copyright:

Journal keyword(s): ISM: bubbles - ISM: magnetic fields - local interstellar matter - methods: data analysis - polarization - Sun: heliosphere

Simbad objects: 135

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Number of rows : 135
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 * zet Tuc PM* 00 20 04.2586334956 -64 52 29.257190108 4.82 4.80 4.23 3.73 3.40 F9.5V 380 0
2 HD 2025 PM* 00 24 25.9332783964 -27 01 36.380637008 9.56 8.861 7.916 7.365 6.894 K3V 117 0
3 HD 3443 SB* 00 37 20.71960 -24 46 02.1843   6.28 5.57     K1V+G 237 0
4 HD 4628 PM* 00 48 22.9759750919 +05 16 50.209484954 7.22 6.64 5.74 4.99 4.52 K2.5V 503 0
5 HD 5133 PM* 00 53 01.1348555154 -30 21 24.891057111 8.801 8.11 7.171 6.639 6.179 K2.5Vk: 169 0
6 * nu. Phe PM* 01 15 11.1214282378 -45 31 53.992580679 5.65 5.54 4.96 4.47 4.11 F9VFe+0.4 256 0
7 * p Eri A PM* 01 39 47.8126958280 -56 11 35.944312380   6.549 5.685 6.36   K2V 148 0
8 HD 14412 PM* 02 18 58.5047816166 -25 56 44.473793228   7.07 6.34     G8V 221 0
9 HD 16160 PM* 02 36 04.9013368983 +06 53 12.383654295   6.81   5.2   K3V 545 0
10 HD 23356 PM* 03 43 55.3428341807 -19 06 39.233301647 8.711 8.012 7.081 6.555 6.098 K2V 141 0
11 NAME LIC Cld 04 41 +31.           ~ 285 0
12 L 190-266 PM* 10 22 24.6019576495 -60 10 37.694860341 13.018 11.961 10.541 9.593 9.17 M3 34 0
13 HD 95338 PM* 10 59 26.3040013933 -56 37 22.947342987   9.50 8.62     K0.5V 55 0
14 HD 95521 PM* 11 00 50.2624501440 -49 01 11.414177400   8.22 7.57     G2V 79 0
15 * bet UMa PM* 11 01 50.4797515135 +56 22 56.761138187 2.35 2.35 2.37 2.31 2.35 A1IVps 440 0
16 * alf UMa SB* 11 03 43.67152 +61 45 03.7249 3.78 2.86 1.79 0.98 0.40 G9III+A7.5 439 0
17 * del Leo PM* 11 14 06.50142 +20 31 25.3853 2.79 2.68 2.53 2.44 2.41 A5IV(n) 279 0
18 NAME North Polar Spur ISM 12 00 +00.0           ~ 372 1
19 HD 105328 PM* 12 07 39.0393163200 -23 58 33.149448912   7.32 6.71     G0V 58 0
20 CD-32 8858 PM* 12 40 45.7483910688 -33 22 17.133726360   11.712 10.418 9.74 9.193 K6.5Vk: 31 0
21 * eps UMa a2* 12 54 01.7495922 +55 57 35.362645 1.76 1.75 1.77 1.79 1.82 A1III-IVpkB9 471 0
22 * alf02 CVn a2* 12 56 01.6655889007 +38 19 06.155170512 2.44 2.76 2.88 2.98 3.05 A0VpSiEu 682 0
23 * eps Vir PM* 13 02 10.5970152536 +10 57 32.935398266 4.45 3.71 2.79 2.16 1.71 G8III-IIIb 553 0
24 * zet01 UMa SB* 13 23 55.5422805173 +54 55 31.295579890 2.11 2.271 2.220 2.10 2.12 A1.5Vas 310 0
25 CD-27 9225 PM* 13 25 48.8465160092 -28 22 26.351336504 13.692 12.528 11.015 10.019 8.871 M1 71 0
26 BD-20 3868 PM* 13 42 50.5390012153 -21 42 41.264143669   11.29 10.17 9.958   K6Vk: 23 0
27 HD 119638 PM* 13 44 44.6014831296 -14 13 30.651825576   7.40 6.92     F8.5V 69 0
28 * eta UMa PM* 13 47 32.43776 +49 18 47.7602 0.99 1.67 1.86 1.98 2.16 B3V 608 0
29 HD 120467 PM* 13 49 44.8063802009 -22 06 39.931905725 10.69 9.427 8.166 7.394 6.777 K6Va 126 1
30 HD 125184 PM* 14 18 00.7266638905 -07 32 32.612570668   7.20 6.50     G5/6V 169 0
31 HD 125072 PM* 14 19 04.8342927813 -59 22 44.536555365   7.69 6.66     K3IV 155 0
32 HD 127339 PM* 14 30 47.7168523480 -08 38 46.789970930 12.105 10.809 9.392 8.517 7.672 K7V 124 0
33 HD 127352 ** 14 31 00.6309336529 -05 48 08.265014882   8.47 7.69     K0V 63 0
34 * gam Boo dS* 14 32 04.6716795181 +38 18 29.693088076 3.33 3.21 3.02 2.88 2.80 A7IV+(n) 253 0
35 * alf Cen ** 14 39 40.4 -60 50 20   0.4 -0.1     G2V+K1V 953 0
36 * mu. Vir PM* 14 43 03.6239867612 -05 39 29.524956308 4.25 4.26 3.88 3.48 3.26 F2V 227 0
37 * alf01 Lib SB* 14 50 41.1718805688 -15 59 49.957540152 5.53 5.57 5.16 4.78 4.59 F3V 196 0
38 * bet UMi V* 14 50 42.32580 +74 09 19.8142 5.32 3.55 2.08 0.97 0.21 K4-III 327 1
39 HD 131976 SB* 14 57 26.53330 -21 24 41.5778 10.759 9.559 8.065 7.075 9.02 M1.5V 244 1
40 HD 131977 BY* 14 57 28.0007918772 -21 24 55.727265310 7.89 6.83 5.72 4.74 4.19 K4V 485 0
41 HD 131923 PM* 14 58 08.7944361399 -48 51 46.620867845   7.048 6.347     G4V 121 0
42 NAME Loop I SR? 15 01 -38.7           ~ 387 2
43 * 23 Lib PM* 15 13 28.6669233518 -25 18 33.653388418   7.168 6.46 6.43   G6IV-V 303 1
44 HD 136894 * 15 24 02.4279981528 -27 18 18.802157400   8.27 7.53     G8+V 74 0
45 * alf CrB EB* 15 34 41.26800 +26 42 52.8940 2.19 2.22 2.24 2.21 2.25 A1IV 482 0
46 HD 138885 PM* 15 35 04.7860598352 -03 19 20.899533432   9.43 8.61     K0V 26 0
47 * alf Ser PM* 15 44 16.0741095811 +06 25 32.268792881 5.080 3.800 2.630 1.82 1.25 K2IIIbCN1 518 0
48 HD 141272 BY* 15 48 09.4631912304 +01 34 18.266587824 8.65 8.242 7.422 6.973 6.565 K0V 130 0
49 HD 144253 SB* 16 05 40.4801696170 -20 27 00.110002570 9.379 8.456 7.393 6.784 6.261 K3V 85 0
50 HD 144585 PM* 16 07 03.3696573456 -14 04 16.671141984 7.22 6.98 6.32     G2V 191 0
51 HD 144660 PM* 16 07 21.2319469248 -08 10 10.904876688   10.108 9.516 9.594   K1V 17 0
52 HD 145809 PM* 16 13 40.3431828480 -21 23 59.859284388   7.28 6.69     G2VFe-0.7 95 0
53 NAME Upper Sco-Cen As* 16 15 -24.2           ~ 1330 1
54 HD 149013 PM* 16 32 38.1186554904 -15 59 14.924479956   7.54 7.02     F8V 35 0
55 * zet Her SB* 16 41 17.16104 +31 36 09.7873 3.640 3.430 2.800 2.31 1.99 G0IV 545 0
56 HD 151528 SB* 16 48 28.3162016880 -16 20 04.332734052   8.40 7.61     G8IV-V 32 0
57 BD-15 4394 PM* 16 48 45.9607170072 -15 44 20.156398512 13.562 12.365 10.887 9.913 8.81 M1.5Vk: 44 0
58 HD 152311 SB* 16 53 25.2127433568 -20 24 56.882126232   6.551 5.857     G2IV-V 85 0
59 * kap Oph LP? 16 57 40.0975028128 +09 22 30.104472450 5.52 4.36 3.20 2.36 1.82 K2III 305 0
60 HD 153631 SB* 17 01 10.7567400948 -13 34 01.607438699   7.74 7.14     G0V 97 0
61 BD-05 4394 PM* 17 02 49.5862505280 -06 04 06.249515592 13.492 12.296 10.817 9.877 8.892 M0 42 0
62 HD 154088 PM* 17 04 27.8431080168 -28 34 57.639670068   7.411 6.584     K0IV-V 128 1
63 HD 155802 ** 17 14 08.07231 -08 24 13.8322           K2V 30 0
64 * del Her SB* 17 15 01.91058 +24 50 21.1451 3.29 3.21 3.13 3.08 3.05 A1IVn 201 0
65 * 36 Oph A PM* 17 15 20.7836485323 -26 36 06.117207947   5.93 5.08     K2V 269 1
66 * 36 Oph ** 17 15 20.9839376 -26 36 10.157115           K2V+K1V 136 0
67 * ksi Oph PM* 17 21 00.3745211364 -21 06 46.571010951   4.752 4.387     F2V 135 0
68 * alf Oph ** 17 34 56.06945 +12 33 36.1346 2.32 2.22 2.07 1.93 1.85 A5IVnn 478 0
69 HD 160346 SB* 17 39 16.9163262 +03 33 18.875718   7.496 6.525 5.9   K3-V 302 0
70 * bet Oph PM* 17 43 28.3519097803 +04 34 02.293206489 5.150 3.930 2.750 1.96 1.38 K2IIICN0.5 477 0
71 HD 161098 PM* 17 43 44.2521571656 -03 55 04.314677016   8.34 7.67     G8V 92 0
72 * gam Oph PM* 17 47 53.5605898827 +02 42 26.204838837 3.83 3.80 3.75 3.71 3.71 A1VnkA0mA0 391 0
73 HD 162283 PM* 17 50 34.0331353800 -06 03 01.035393588 12.891 11.584 10.154 9.256 8.377 K7V 88 0
74 * ksi Dra PM* 17 53 31.7295427958 +56 52 21.510944948 6.14 4.93 3.75 2.92 2.33 K2III 272 0
75 BD+03 3531a PM* 17 55 24.7799763696 +03 45 16.211053728   11.46 10.155 9.723   K6V 44 0
76 * gam Dra * 17 56 36.36988 +51 29 20.0242 5.630 3.760 2.230 1.08 0.23 K5III 562 1
77 HD 164651 PM* 18 02 17.8824112512 +00 06 15.088856868       7.2   G8V 50 0
78 HD 165222 PM* 18 05 07.5787518746 -03 01 52.749184670 12.09 10.878 9.360 8.385 7.304 M0V 230 0
79 * 70 Oph ** 18 05 27.28518 +02 30 00.3558 5.40 4.89 4.03 3.38 2.92 K0-V 649 0
80 HD 165185 PM* 18 06 23.7195191736 -36 01 11.230597272 6.64 6.57 5.95 5.58   G1V 169 0
81 HD 166184 PM* 18 09 32.2451849136 -00 19 37.665564528   10.00 8.92     K3/4V 20 0
82 HD 167665 PM* 18 17 23.7587105112 -28 17 20.218638480   6.94 6.40     F9VFe-0.8CH-0.4 108 1
83 * kap Lyr V* 18 19 51.7091048595 +36 03 52.370938421 6.70 5.51 4.34 3.48 2.93 K2-IIIabCN0.5 141 0
84 BD+01 3657 PM* 18 22 17.2204128888 +01 42 25.449871824   11.31 10.199   8.658 K6Vke 23 0
85 * lam Sgr PM* 18 27 58.2407185 -25 25 18.114589 4.75 3.85 2.81 2.06 1.50 K1IIIb 277 0
86 HD 170657 PM* 18 31 18.9610074312 -18 54 31.729814604 8.217 7.678 6.810 6.324 5.897 K2V 131 0
87 * alf Lyr dS* 18 36 56.33635 +38 47 01.2802 0.03 0.03 0.03 0.07 0.10 A0Va 2686 1
88 HD 172051 ** 18 38 53.4010594968 -21 03 06.750986472   6.518 5.860     G6V 197 1
89 HD 172675 PM* 18 41 20.3529804120 +04 33 29.383050996   7.54 7.06     F7V 33 0
90 HD 173818 PM* 18 47 27.2506131351 -03 38 23.401766426 11.286 10.08 8.766 7.958 7.277 K5V 97 0
91 HD 175726 PM* 18 56 37.1723923656 +04 15 54.462836664   7.28 6.71     G0V 112 0
92 HD 176029 PM* 18 58 00.1362313720 +05 54 29.240711762 11.888 10.673 9.217 8.286 7.31 M1.0V 155 0
93 HD 176986 PM* 19 03 05.8729653768 -11 02 38.130757620   9.39 8.45     K2.5V 65 0
94 * zet Aql PM* 19 05 24.6080155 +13 51 48.518212 2.99 3.00 2.99 2.98 2.98 A0IV-Vnn 350 0
95 * tau Sgr PM* 19 06 56.4031131168 -27 40 13.496293992 5.65 4.51 3.31 2.44 1.85 K1.5IIIb 157 0
96 HD 178428 SB* 19 07 57.3202744638 +16 51 12.174804109   6.77   5.6   G4.5V 187 0
97 HD 177409 PM* 19 09 54.5555321208 -68 17 58.887748536   8.14 7.52     G1VCH-0.4 78 0
98 HD 179949 BY* 19 15 33.2300695008 -24 10 45.671448072   6.772 6.237     F8V 405 1
99 HD 180409 PM* 19 16 52.2134354880 -10 58 18.396560460   7.50 6.92     F9V 71 0
100 HD 180617 PM* 19 16 55.2565688720 +05 10 08.040554168 11.768 10.63 9.115 8.076 6.782 M3-V 420 0
101 HD 182085 PM* 19 23 16.4625806112 -06 35 07.345064940   10.84 9.73 9.74   K3/4(V) 19 0
102 CD-22 13916 PM* 19 24 34.2352422838 -22 03 43.832212442   12.262 10.899 10.422   K8Vk: 51 0
103 HD 183063 ** 19 28 12.31041 -12 08 41.3996       8.53   G8V 86 0
104 HD 184489 PM* 19 34 39.8398836218 +04 34 57.049538303 11.917 10.707 9.326 8.475 7.7 M0V 133 0
105 HD 184509 PM* 19 35 35.7852624480 -20 46 55.526103372   7.27 6.74     F8.5V 41 0
106 HD 184985 PM* 19 37 34.4135659464 -14 18 06.478148448   5.938 5.451     F7V 103 0
107 CD-27 14169 PM* 19 39 36.1703597866 -26 45 07.072666448 13.104 11.895 10.482 9.561 8.576 M1V 28 0
108 HD 185615 PM* 19 41 13.6743887832 -32 52 24.083738040   8.82 8.12     G6IV/V 67 0
109 * 16 Cyg B PM* 19 41 51.9726777456 +50 31 03.089030916 7.07 6.86 6.20 5.76 5.42 G3V 890 1
110 * del Cyg PM* 19 44 58.4785413 +45 07 50.916066 2.75 2.85 2.87 2.88 2.90 A0IV 291 0
111 * eps Dra PM* 19 48 10.3504589976 +70 16 04.549073664   4.83 3.91     G7IIIbFe-1 150 0
112 * alf Aql dS* 19 50 46.99855 +08 52 05.9563 1.07 0.98 0.76 0.62 0.49 A7Vn 875 1
113 HD 188088 BY* 19 54 17.7449414704 -23 56 27.859371124   7.263 6.213 5.58 5.09 K3VaCN1 130 0
114 * gam Sge PM* 19 58 45.4282303572 +19 29 31.726069716 6.97 5.04 3.47 2.27 1.35 M0-III 261 0
115 HD 189340 SB* 19 59 47.2802830338 -09 57 29.634435094   6.45 5.87     F9V 162 0
116 HD 189245 PM* 20 00 20.2493681318 -33 42 12.424573369   6.15 5.66     F7V 110 0
117 HD 189931 PM* 20 04 02.6779767944 -37 52 35.364287524   7.53 6.93     G1V 51 0
118 HD 191408 PM* 20 11 11.9387690214 -36 06 04.351725607   5.44 5.32     K2.5V 268 1
119 HD 191408B PM* 20 11 12.8028949300 -36 06 32.166102762           M3.5 226 1
120 * ksi Cap Pe* 20 12 25.8705704904 -12 37 02.991099360   6.33 5.85     F7VFe-0.5 100 0
121 HD 191849 PM* 20 13 53.3962498530 -45 09 50.470550834 10.627 9.419 7.966 7.053 6.124 M0V 166 0
122 HD 192310 PM* 20 15 17.3913760474 -27 01 58.711625384   6.63 5.723 5.98 8.74 K2+V 318 1
123 HD 194640 PM* 20 27 44.2430551737 -30 52 04.244023567   7.35 6.62     G8V 112 0
124 * rho Cap ** 20 28 51.61448 -17 48 49.2693           F2V 136 0
125 HD 196761 PM* 20 40 11.7551137131 -23 46 25.918619793   7.09 6.37     G7.5IV-V 197 0
126 V* AX Mic Er* 21 17 15.2690680973 -38 52 02.503938581   8.06 6.68     M1V 224 0
127 HD 204385 PM* 21 30 47.9297396736 -62 10 03.372828312   7.74 7.15     G0VCH-0.3 82 0
128 BPM 14175 ** 21 37 55.66318 -63 42 42.9319 13.258 12.10 10.65 10.30 8.62 M2V 37 0
129 HD 207129 PM* 21 48 15.7511634187 -47 18 13.017893348   6.18 5.58     G2V 328 0
130 HD 211415 PM* 22 18 15.6133953371 -53 37 37.466806476   5.98 5.39 6.52   G0V 193 0
131 HD 213042 PM* 22 29 15.2363920289 -30 01 06.263701071 9.784 8.742 7.645 7.022 6.513 K4V 156 0
132 L 10-21 ** 23 15 57.36553 -81 22 21.2137 12.661 11.405 10.003 9.12 8.33 K7 28 0
133 HD 222237 PM* 23 39 37.3873674682 -72 43 19.755447187 8.912 8.088 7.087 6.502 5.987 K3+V 157 0
134 HD 223889 PM* 23 53 50.1123063066 -75 37 57.118104352 12.629 11.515 10.023 8.994 7.72 M3 48 0
135 NAME Local Bubble ISM ~ ~           ~ 898 0

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