2022MNRAS.513.1429S


Query : 2022MNRAS.513.1429S

2022MNRAS.513.1429S - Mon. Not. R. Astron. Soc., 513, 1429-1448 (2022/June-2)

MOBSTER - VI. The crucial influence of rotation on the radio magnetospheres of hot stars.

SHULTZ M.E., OWOCKI S.P., UD-DOULA A., BISWAS A., BOHLENDER D., CHANDRA P., DAS B., DAVID-URAZ A., KHALACK V., KOCHUKHOV O., LANDSTREET J.D., LETO P., MONIN D., NEINER C., RIVINIUS T. and WADE G.A.

Abstract (from CDS):

Numerous magnetic hot stars exhibit gyrosynchrotron radio emission. The source electrons were previously thought to be accelerated to relativistic velocities in the current sheet formed in the middle magnetosphere by the wind opening magnetic field lines. However, a lack of dependence of radio luminosity on the wind power, and a strong dependence on rotation, has recently challenged this paradigm. We have collected all radio measurements of magnetic early-type stars available in the literature. When constraints on the magnetic field and/or the rotational period are not available, we have determined these using previously unpublished spectropolarimetric and photometric data. The result is the largest sample of magnetic stars with radio observations that has yet been analysed: 131 stars with rotational and magnetic constraints, of which 50 are radio-bright. We confirm an obvious dependence of gyrosynchrotron radiation on rotation, and furthermore find that accounting for rotation neatly separates stars with and without detected radio emission. There is a close correlation between H α emission strength and radio luminosity. These factors suggest that radio emission may be explained by the same mechanism responsible for H α emission from centrifugal magnetospheres, i.e. centrifugal breakout (CBO), however, while the H α-emitting magnetosphere probes the cool plasma before breakout, radio emission is a consequence of electrons accelerated in centrifugally driven magnetic reconnection.

Abstract Copyright: © 2022 The Author(s) Published by Oxford University Press on behalf of Royal Astronomical Society

Journal keyword(s): magnetic reconnection - stars: early-type - stars: magnetic fields - stars: rotation - radio continuum: stars

VizieR on-line data: <Available at CDS (J/MNRAS/513/1429): tablea1.dat list.dat tablea2.dat tablea3.dat refs.dat>

Simbad objects: 142

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Number of rows : 142
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2023
#notes
1 V* CG And a2* 00 00 43.6344938328 +45 15 12.007059804   6.299 6.347     A0IIspSiSrHg 155 0
2 * zet Cas Pu* 00 36 58.2841866 +53 53 48.867311 2.58 3.47 3.66 3.74 3.95 B2IV 443 0
3 * alf Scl Ro* 00 58 36.3593029 -29 21 26.824714 3.52 4.09 4.27 4.30 4.43 B7IIIp 249 0
4 * gam02 Ari PM* 01 53 31.8129284424 +19 17 37.879979172   4.49 4.52     A2IVpSiSrCr 155 0
5 * alf Psc A * 02 02 02.8219762236 +02 45 49.579059841   4.06 4.11     kA0hA7Sr 178 0
6 * nu. For a2* 02 04 29.4386071 -29 17 48.547752 4.01 4.52 4.69 4.73 4.87 B9.5IIIspSi 148 0
7 * 56 Ari a2* 03 12 14.2461137352 +27 15 25.085668788 5.22 5.64 5.76     B6IV-V 261 0
8 HD 21699 Ro* 03 32 08.6084197968 +48 01 24.528548676 4.81 5.355 5.461     B9III 205 0
9 * 20 Eri a2* 03 36 17.4041095200 -17 28 01.472307996 4.61 5.10 5.23     B8/9III 174 0
10 * 22 Eri a2* 03 40 38.3331139440 -05 12 38.555731188 4.81 5.38 5.53     B9IIIpSi4200 127 0
11 * tau09 Eri a2* 03 59 55.4837679360 -24 00 58.377195468 4.11 4.52 4.66 4.64 4.77 ApSi 166 0
12 * 56 Tau a2* 04 19 36.7048893816 +21 46 24.566827836   5.231 5.346     A0VpSi 185 0
13 HD 28843 Ro* 04 32 37.5537339576 -03 12 34.344832032 5.13 5.67 5.81     B9III 132 0
14 V* HZ Aur a2* 05 06 08.3584818960 +33 55 07.279039380   7.03 7.07     B9p 185 0
15 V* IQ Aur a2* 05 19 00.0284573784 +33 44 54.220806888   5.201 5.371     A0p 287 0
16 V* V1156 Ori Ro* 05 23 50.3591328504 +02 04 55.824899052   7.78 7.91     B7IV 130 0
17 HD 35456 ** 05 24 40.3787180856 -02 29 52.248170436   6.877 6.950     B9II/III 80 1
18 HD 35502 SB* 05 25 01.2041767248 -02 48 55.690705872 6.76 7.30 7.34 7.32 7.40 B5IVsnp 121 0
19 HD 35575 * 05 25 36.4983776664 -01 29 28.656465108   6.256 6.420     B5II/III 89 0
20 V* V1093 Ori a2* 05 30 45.2295918768 -00 22 24.267744120   8.15 8.21     ApSi 72 0
21 HD 36429 * 05 31 41.2246402248 +02 49 58.188570312   7.43 7.56     B7II 73 0
22 * del02 Ori SB* 05 32 00.4064140728 -00 17 04.347484800 5.97 6.67 6.83     B2Vsn 279 0
23 V* V1099 Ori Pu* 05 32 13.0812769464 -01 36 01.745707500 7.6 8.18 8.29     B8II 90 0
24 HD 36540 ** 05 32 14.8277325720 -04 31 06.193607664 7.71 8.19 8.16     B7IVp 106 1
25 HD 36629 Y*O 05 32 57.0824474232 -04 33 59.339585016 7.01 7.67 7.65 7.53 7.53 B2V 187 0
26 V* V1107 Ori Ro* 05 33 26.0574398904 +00 37 16.914334620   7.94 8.05     B8V 91 0
27 V* V1045 Ori a2* 05 34 53.9637586032 -04 06 37.494251928 6.08 6.569 6.709     B9III 137 0
28 V* V1046 Ori SB* 05 35 21.8667428568 -04 29 39.024375324 5.66 6.43 6.56 6.61 6.74 B2/3V 299 0
29 * tet02 Ori A SB* 05 35 22.9012398264 -05 24 57.832632108 5.37 6.30 6.39 6.30 6.35 O9.5IVp 533 0
30 HD 37061 Or* 05 35 31.3649044920 -05 16 02.582064192 6.44 7.09 6.83     O9.5V 350 0
31 HD 37058 Or* 05 35 33.3539646576 -04 50 15.181113696 6.40 7.18 7.30     B3/5II 161 0
32 V* V1179 Ori a2* 05 36 06.2338022808 -07 23 47.317093944   7.31 7.38     B8V 95 0
33 HD 37140 a2* 05 36 18.7626483096 -00 18 13.191518088 8.24 8.65 8.55 8.37 8.31 B8II 92 0
34 V* V1133 Ori a2* 05 36 30.9592251264 -06 27 13.813302564 7.62 8.03 8.10     B9IV/V 85 0
35 * sig Ori E Y*O 05 38 47.2050040320 -02 35 40.521424812 5.66 6.38 6.46 6.84 7.08 B2IV-Vp_He 444 0
36 V* V1148 Ori a2* 05 39 55.4228747568 -03 19 49.817505540   7.93 8.04     ApSrEu 88 0
37 * zet Ori A SB* 05 40 45.527143 -01 56 33.26036   1.79 1.90     O9.2IbvarNwk 661 0
38 V* V1051 Ori a2* 05 40 46.1919736920 -10 24 31.195469484 5.88 6.36 6.52     B9III 88 0
39 V* V901 Ori Ro* 05 40 56.3704617744 -01 30 25.856677224 5.96 6.82 6.96     B2V 328 2
40 HD 37752 * 05 41 54.7629137880 +23 19 34.429895148   6.482 6.563     B8p 60 0
41 * tet Aur a2* 05 59 43.27012 +37 12 45.3047 2.36 2.54 2.62 2.62 2.68 A0VpSi 281 0
42 HD 41269 * 06 05 33.8990688480 +33 35 56.579173440   6.136 6.213     B9VpSrCr 59 0
43 V* V1155 Ori a2* 06 19 01.8426917616 +17 19 30.943758540 5.95 6.25 6.32     B9IIIpSi(Cr) 142 0
44 V* V682 Mon a2* 06 28 10.7659506576 -04 53 56.511231684   7.85 7.97     ApSi 91 0
45 * ksi01 CMa bC* 06 31 51.3663578 -23 25 06.318090 3.10 4.09 4.33 4.45 4.72 B0.7IV 315 0
46 HD 47129 SB* 06 37 24.0420854544 +06 08 07.369104444 5.23 6.11 6.06     O8I+O7.5III 386 0
47 * gam Gem SB* 06 37 42.71050 +16 23 57.4095 1.98 1.92 1.92 1.86 1.87 A1.5IV+ 506 0
48 AG+12 773 bC? 06 37 46.7077028544 +12 46 05.032527852   9.22 9.15     ~ 27 0
49 HD 47777 Y*O 06 40 42.2934096648 +09 39 21.310266708 6.95 7.79 7.93   7.721 B3V 110 0
50 * alf CMa SB* 06 45 08.91728 -16 42 58.0171 -1.51 -1.46 -1.46 -1.46 -1.43 A0mA1Va 1495 0
51 * 12 CMa a2* 06 47 01.4835271104 -21 00 55.451696472 5.27 5.89 6.08     B7II/III 142 0
52 * 33 Gem Ro* 06 49 49.8362378064 +16 12 10.382708016 5.24 5.72 5.87     B7III 147 0
53 V* NY Aur a2* 06 59 20.1281774064 +42 18 53.114696892   6.76 6.67     ~ 102 0
54 CD-27 3748 * 07 12 02.2903052112 -27 43 04.869681420 8.21 9.04 9.25 9.78   OB- 37 0
55 * 26 CMa Pu* 07 12 12.2147085456 -25 56 33.316082736 5.03 5.736 5.897     B2IV/V 83 0
56 HD 58260 * 07 23 19.5997521648 -36 20 24.538554852 5.87 6.61 6.73     B2/3Vp 99 0
57 HD 60344 * 07 33 02.1373084440 -23 56 03.348474360 6.71 8.49 9.09 8.62   B2III 77 0
58 * k02 Pup V* 07 38 49.8707332608 -26 48 13.849787556   4.26 4.429     B5IV 58 0
59 HD 64740 * 07 53 03.6353775 -49 36 46.952967 3.48 4.40 4.63 4.76 4.97 B2V 206 0
60 * 53 Cam a2* 08 01 42.4403874648 +60 19 27.806833200   6.177 6.008     A3VpSrSiCrEu 397 0
61 HD 66765 ** 08 02 55.7155901784 -48 19 29.981984880 5.69 6.470 6.624     B1/2V 44 0
62 HD 66665 * 08 04 47.8516524576 +06 11 09.803109264 6.5 7.58 7.81     B1V 74 0
63 HD 77653 a2* 09 01 44.56044 -52 11 19.2661           ApSi 58 0
64 * 36 Lyn Ro* 09 13 48.2131781112 +43 13 04.193952924 4.72 5.148 5.282     ~ 211 0
65 * 25 Sex a2* 10 23 26.4782253528 -04 04 26.518221624 5.70 5.87 5.97     ApSiCr 130 0
66 V* ET UMa a2* 10 24 07.8468791760 +65 33 59.121373140   4.889 4.930     A1:VpSiSrHg 273 0
67 * bet UMa PM* 11 01 50.4765370 +56 22 56.733912 2.35 2.35 2.37 2.31 2.35 A1IVps 435 1
68 * tet Leo PM* 11 14 14.4044630 +15 25 46.454086 3.40 3.33 3.35 3.32 3.34 A2IV 332 0
69 HD 105382 Be* 12 08 05.2222663992 -50 39 40.575451536 3.65 4.32 4.47 4.53 4.70 B5V 168 0
70 * alf02 CVn a2* 12 56 01.6655889007 +38 19 06.155170512 2.44 2.76 2.88 2.98 3.05 A0VpSiEu 671 0
71 * o Vir a2* 13 34 07.9318557 +03 39 32.273821 4.96 4.96 4.94 4.86 4.89 ApEuCrSr 336 0
72 V* V828 Cen a2* 14 03 27.4674533712 -41 25 24.032196948   5.986 6.088     ApSi 97 0
73 V* CU Vir a2* 14 12 15.8054758 +02 24 33.953395 4.46 4.90 5.02 5.10 5.23 ApSi 384 0
74 V* CS Vir a2* 14 18 38.2505609712 -18 42 57.465294264 5.86 5.90 5.90     ApSi(Cr) 312 0
75 * a Cen Ro* 14 23 02.2390294 -39 30 42.549250 3.50 4.24 4.42 4.53 4.70 B2V 270 0
76 V* FF Vir a2* 14 25 55.8786309720 +00 59 33.756435456 7.07 7.09 7.07     ApEuSrCr 173 0
77 HR 5543 ** 14 52 51.0737484 -37 48 11.386959 4.11 4.855 5.015     B7IIIp 121 0
78 HD 133029 a2* 15 00 38.7178984848 +47 16 38.791986348   6.250 6.351     A0VspSiSrCr 214 0
79 V* HZ Lup a2* 15 06 33.1978166352 -30 55 06.533677056   5.893 5.977     ApSi 107 0
80 V* HR Lup a2* 15 08 12.1238757000 -40 35 02.155417224 5.25 5.65 5.79     B8IVSi 168 1
81 HD 135679 * 15 15 41.4480845904 +25 38 33.129051576 6.61 6.897 6.960     ~ 30 0
82 V* HQ Lup a2* 15 26 06.8552484720 -39 53 20.438606148   7.38 7.37     ApSi 52 0
83 * bet CrB a2* 15 27 49.7315305 +29 06 20.522375 4.08 3.97 3.68 3.50 3.45 F2VpSrCrEuSi 679 0
84 HD 138764 Pu* 15 34 26.5142062512 -09 11 00.380211288 4.63 5.08 5.17 5.21 5.33 B5V 155 0
85 HD 142184 Be* 15 53 55.8637866220 -23 58 41.143370530 4.77 5.352 5.402     B2V 227 0
86 * 3 Sco Ro* 15 54 39.5296532472 -25 14 37.459966128 5.23 5.81 5.87     B8III/IV 209 0
87 V* V928 Sco a2* 15 57 48.8021454576 -23 31 38.294134176   6.755 6.771     B8/9III 110 0
88 V* V913 Sco Ro* 15 58 34.8665694960 -24 49 53.361727284 4.70 5.34 5.43     B5V 200 0
89 V* LL Lup a2* 16 01 58.8643741128 -37 32 03.725218680   7.48 7.41     ApSi 71 0
90 HD 143699 * 16 03 24.1894502 -38 36 09.152751 4.18 4.75 4.89 4.96 5.10 B5/7III/IV 139 0
91 HD 144334 ** 16 06 06.3891324384 -23 36 22.849641396 5.29 5.84 5.92     B8V 190 0
92 V* V952 Sco a2* 16 10 15.9221226696 -26 54 32.879906064   6.634 6.587     ApSi 85 0
93 * nu.02 Sco ** 16 11 58.528032 -19 27 00.81612 6.06         B8/9V 123 0
94 * c02 Sco SB* 16 12 18.2046168820 -27 55 34.953285603 3.66 4.413 4.568     B2V 179 0
95 HD 146001 * 16 14 53.4294665736 -25 28 37.100440632 5.73 6.09 6.05     B8V 146 0
96 V* V933 Sco a2* 16 20 05.4927999744 -20 03 23.030685720   7.56 7.40     B9II/III 188 0
97 * ome Her a2* 16 25 24.9546742056 +14 01 59.762072676 4.53 4.57 4.58 4.51 4.55 A2VpCrSr 233 0
98 HD 147932 Ro* 16 25 35.0813422344 -23 24 18.806143896 7.24 7.59 7.27     B5V 122 0
99 * rho Oph A * 16 25 35.1185711280 -23 26 49.831640736 4.3 5.22 5.05     B1V 402 0
100 V* V936 Sco a2* 16 25 39.1394428392 -29 24 01.615881024   7.84 7.69     ApSi 79 1
101 V* V1028 Sco a2* 16 27 29.6805068520 -29 17 17.780088804   7.10 7.01     ApSi 89 0
102 * tau Sco * 16 35 52.9528530 -28 12 57.661515 1.55 2.56 2.81 2.93 3.18 B0.2V 905 0
103 V* V773 Her a2* 16 36 42.9385265832 +15 29 50.827223688   6.296 6.355     A2VpSiSrCr 107 0
104 HD 151346 Ro* 16 47 46.5285400080 -23 58 27.525918576 8.12 8.31 7.90     B8II 85 0
105 * 52 Her a2* 16 49 14.21821 +45 58 59.9620   4.914 4.823     A1VpSiSrCr 255 0
106 HD 156424 ** 17 18 54.549192 -32 20 44.68632 8.17     9.471   B2Ib/II 26 0
107 V* V2052 Oph bC* 17 56 18.4001168880 +00 40 13.273317228 5.28 5.874 5.820     B3III 212 0
108 V* V771 Her a2* 17 58 52.3058286816 +45 28 34.391604360   6.407 6.481     B9pSiSr 89 0
109 HD 165474 * 18 05 42.8401334904 +12 00 12.191017896   7.685 7.402     ~ 99 0
110 BD-13 4937 Y*O 18 19 20.0319493560 -13 54 21.677384808 10.53 11.11 10.78     B1.5V 40 1
111 * phi Dra a2* 18 20 45.43224 +71 20 16.1499   4.15 4.22     B8V 195 0
112 HD 168856 * 18 22 10.8205486968 -07 29 55.602976200   7.13 7.05     ApSi 42 0
113 HD 168785 * 18 22 45.9040189608 -30 08 26.177051004 7.79 8.52 8.51 9.40   B2II 68 0
114 HD 170973 a2* 18 32 06.8865165216 +03 39 34.601753412   6.381 6.407     B9IIIpSi 127 0
115 V* V2393 Oph a2* 18 33 23.3029636152 +08 16 05.698559100 6.05 6.379 6.416     B9III 73 0
116 * alf Lyr dS* 18 36 56.33635 +38 47 01.2802 0.03 0.03 0.03 0.07 0.10 A0Va 2631 0
117 HD 175132 * 18 52 07.2499320864 +41 22 59.680929396   6.187 6.269     B9IIIpSi 56 0
118 V* V828 Her a2* 18 56 03.7995461256 +17 59 43.216496628 6.15 6.59 6.63     B8pSi 86 0
119 V* V686 CrA a2* 18 56 40.4859327624 -37 20 35.701261512 4.53 5.24 5.38     B3V 204 0
120 V* EE Dra a2* 18 58 52.6267962600 +69 31 52.648832568   6.353 6.506     B9III 96 1
121 HD 176582 Er* 18 59 12.2918170752 +39 13 02.360908524 5.52 6.248 6.403     B5V 93 0
122 V* LV Dra a2* 19 00 13.6777912704 +50 32 00.478630500 4.42 5.202 5.377     B2.5IV 106 0
123 * 19 Lyr a2* 19 11 46.0084477416 +31 17 00.443746788   5.866 5.932     B8IIIpSiSr 100 0
124 HD 182180 * 19 24 30.1801035096 -27 51 57.389455476 5.22 5.889 6.011     B2Vnn 115 0
125 HD 183339 * 19 25 46.7645404704 +58 01 38.356203360 5.88 6.450 6.594     B7IV 83 0
126 * 4 Cyg a2* 19 26 09.1269274848 +36 19 04.432147356 4.60 5.03 5.15     B8pSi(FeII) 142 0
127 V* V1671 Cyg Ro* 19 35 32.0102348112 +31 16 35.933414736 6.44 7.29 7.44     B2V 127 0
128 HD 184961 * 19 36 08.3511576408 +22 35 08.744220600   6.267 6.319     B9IVpSi 66 0
129 HD 186205 Ro* 19 42 37.8507444384 +09 13 39.042004332 7.99 8.58 8.57     B2Vp 50 0
130 * alf Aql dS* 19 50 46.99855 +08 52 05.9563 1.07 0.98 0.76 0.62 0.49 A7Vn 863 0
131 V* V3961 Sgr a2* 19 51 50.6106718344 -39 52 27.738309468 5.05 5.27 5.33     ApCr(Si) 183 0
132 V* V1291 Aql a2* 19 53 18.7357174440 -03 06 52.063556976   5.837 5.619     F0VpSrCrEu 275 0
133 V* V2100 Cyg a2* 19 59 15.3468080976 +52 03 20.488833576 5.29 5.954 6.125     B5III 60 0
134 V* V1372 Cyg a2* 20 13 36.3254054976 +53 39 33.549009120   7.334 7.333     A4p 129 0
135 * 73 Dra a2* 20 31 30.4066960752 +74 57 16.653861468   5.271 5.185     A9:VpCrSrEu 260 1
136 V* V2015 Cyg a2* 20 33 54.8435604456 +46 41 37.867484940   5.626 5.769     B8pSi 102 0
137 HD 335238 * 20 50 43.6655493504 +29 48 12.042715104   9.30 9.26     A2 43 0
138 HD 200775 Ae* 21 01 36.9205762896 +68 09 47.789578836 7.34 7.754 7.427 8.13   B2Ve 543 0
139 * 30 Cap * 21 17 57.2864746704 -17 59 06.499058280   5.263 5.383     B5II/III 89 0
140 * bet Cep bC* 21 28 39.5968513 +70 33 38.574681 2.05 3.01 3.23 3.33 3.55 B0.5IIIs 714 0
141 * 16 Peg Be* 21 53 03.7682618 +25 55 30.490138 4.24 4.921 5.081     B6IIIe 168 0
142 V* GL Lac a2* 22 44 07.5047456400 +55 35 21.211012248   8.85 8.81     A0p 281 0

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2023.03.26-01:09:16

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