2019A&A...622A..61S


Query : 2019A&A...622A..61S

2019A&A...622A..61S - Astronomy and Astrophysics, volume 622A, 61-61 (2019/2-1)

Cyclotron lines in highly magnetized neutron stars.

STAUBERT R., TRUMPER J., KENDZIORRA E., KLOCHKOV D., POSTNOV K., KRETSCHMAR P., POTTSCHMIDT K., HABERL F., ROTHSCHILD R.E., SANTANGELO A., WILMS J., KREYKENBOHM I. and FURST F.

Abstract (from CDS):

Cyclotron lines, also called cyclotron resonant scattering features are spectral features, generally appearing in absorption, in the X-ray spectra of objects containing highly magnetized neutron stars, allowing the direct measurement of the magnetic field strength in these objects. Cyclotron features are thought to be due to resonant scattering of photons by electrons in the strong magnetic fields. The main content of this contribution focusses on electron cyclotron lines as found in accreting X-ray binary pulsars (XRBP) with magnetic fields on the order of several 1012 Gauss. Also, possible proton cyclotron lines from single neutron stars with even stronger magnetic fields are briefly discussed. With regard to electron cyclotron lines, we present an updated list of XRBPs that show evidence of such absorption lines. The first such line was discovered in a 1976 balloon observation of the accreting binary pulsar Hercules X-1, it is considered to be the first direct measurement of the magnetic field of a neutron star. As of today (end 2018), we list 35 XRBPs showing evidence of one ore more electron cyclotron absorption line(s). A few have been measured only once and must be confirmed (several more objects are listed as candidates). In addition to the Tables of objects, we summarize the evidence of variability of the cyclotron line as a function of various parameters (especially pulse phase, luminosity and time), and add a discussion of the different observed phenomena and associated attempts of theoretical modeling. We also discuss our understanding of the underlying physics of accretion onto highly magnetized neutron stars. For proton cyclotron lines, we present tables with seven neutron stars and discuss their nature and the physics in these objects.

Abstract Copyright: © ESO 2019

Journal keyword(s): accretion, accretion disks - magnetic fields - radiation mechanisms: non-thermal - binaries: general - X-rays: binaries - stars: neutron

CDS comments: Table A.3 star 5 not identified.

Simbad objects: 67

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Number of rows : 67
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 SXP 4.78 HXB 00 51 38.7742234656 -72 17 04.796861748 14.63 15.66 15.63   15.44 B0V-B1Ve 49 0
2 LIN 203 HXB 00 52 13.9956976512 -73 19 18.812945496   14.66 14.67   14.534 O9.5IIIe/B0Ve 87 0
3 NAME SMC G 00 52 38.0 -72 48 01   2.79 2.2     ~ 11146 1
4 X SMC X-2 HXB 00 54 33.43 -73 41 01.3 13.77 16.40 16.38   14.67 O9.5III-V 131 0
5 NGC 300 GiG 00 54 53.4465638304 -37 41 03.168402396 8.83 8.69 8.13 7.46   ~ 1502 2
6 NAME NGC 300 2010da s*b 00 55 04.86 -37 41 43.7           LBV 158 0
7 V* V662 Cas HXB 01 18 02.6976641952 +65 17 29.829200388 12.27 11.99 11.14 10.33 9.58 B1Iae 272 0
8 V* V635 Cas HXB 01 18 31.9704955824 +63 44 33.072603144 17.05 16.64 15.19 14.34 13.22 B0.2Ve 744 0
9 V* BQ Cam HXB 03 34 59.9116110096 +53 10 23.296879776   17.16 15.42 14.26 13.04 O8.5Ve 478 1
10 V* X Per HXB 03 55 23.0777456088 +31 02 45.039836148 6.090 6.840 6.720     O9.5III 978 0
11 RX J0420.0-5022 N* 04 20 02.2 -50 22 46     25.5     ~ 93 0
12 LS V +44 17 HXB 04 40 59.3296237272 +44 31 49.258049376 11.02 11.42 10.73 10.28 9.76 B0.2Ve 139 0
13 [HP99] 946 Be* 05 20 30.9009 -69 31 54.999   14.41 14.40     O8e 64 0
14 NAME LMC G 05 23 34.6 -69 45 22     0.4     ~ 17432 0
15 X LMC X-4 HXB 05 32 49.5556042296 -66 22 13.202721768   13.9 14.0     O8III 668 0
16 M 1 SNR 05 34 30.9 +22 00 53           ~ 6192 1
17 V* CM Tau Psr 05 34 31.9474694616 +22 00 52.153698024           ~ 5259 0
18 HD 245770 HXB 05 38 54.5748918624 +26 18 56.836952784 9.30 9.84 9.39 8.77 8.30 O9/B0III/Ve 983 0
19 UCAC2 2073373 HXB 05 41 34.3044630720 -68 25 48.448018128   14.03 14.01 14.12 13.83 B0-B1IIIe 30 1
20 2E 1752 HXB 06 58 17.2878153600 -07 12 35.204283324   12.38 10.9 11.40   O9.7Ve 98 0
21 RX J0720.4-3125 N* 07 20 24.961 -31 25 50.21   26.1   27.0   ~ 303 0
22 RX J0806.4-4123 N* 08 06 23.0 -41 22 33           ~ 80 0
23 Ginga 0834-430 HXB 08 35 54.9956514920 -43 11 17.497095048     20.4     B0-2III-Ve 104 0
24 V* GP Vel HXB 09 02 06.8608812864 -40 33 16.899168060 6.85 7.37 6.87 6.31 6.05 B0.5Ia 1505 0
25 M 81 Sy2 09 55 33.1726556496 +69 03 55.062505368   7.89 6.94     ~ 4449 3
26 GRO J1008-571 HXB 10 09 46.9642314696 -58 17 35.603851848       14.63   B0e 238 0
27 WRAY 15-793 HXB 11 20 57.1736884968 -61 55 00.166078020 12.81 13.06 12.12     O9.5III/Ve 208 0
28 V* V779 Cen HXB 11 21 15.0920532528 -60 37 25.630264596   14.4 12.27     O9III/Veq 1097 0
29 V* BP Cru HXB 12 26 37.5605188992 -62 46 13.261044684   12.482 10.803 10.304   B1Ia+ 688 0
30 V* V850 Cen HXB 13 01 17.0968941216 -61 36 06.637549788   15.6 14.40     B2Vne 333 0
31 RBS 1223 N* 13 08 48.7 +21 27 08   28.6 28.6     ~ 157 1
32 RX J133007+47110 UX? 13 30 07.55 +47 11 06.1   25.17 25.49   26.04 ~ 68 1
33 MAXI J1409-619 Psr 14 08 02.56 -61 59 00.3           ~ 31 0
34 V* QV Nor HXB 15 42 23.3633146128 -52 23 09.577395960   16.3 14.5     B0.2Ia:e 421 1
35 2S 1553-542 HXB 15 57 49.00 -54 24 54.0           Be 114 0
36 RBS 1556 N* 16 05 18.9 +32 49 07     26.8     ~ 101 1
37 SWIFT J1626.5-5156 HXB 16 26 36.5197704024 -51 56 30.600051936       16.03 14.59 B0V 86 0
38 V* KZ TrA LXB 16 32 16.79 -67 27 39.3 17.40 18.60 18.5     ~ 582 1
39 NAME AX J163904-4642 HXB 16 39 06 -46 42.2           BIV-V 98 1
40 2MASS J16492695-4349090 HXB 16 49 26.95 -43 49 09.0           B0.5Ib 59 0
41 V* HZ Her LXB 16 57 49.8110126616 +35 20 32.486555472 11.90 14.89 13.63 13.88   B3/6ep 2076 0
42 NAME OAO 1657-41 HXB 17 00 48.884 -41 39 21.46           Ofpe/WN9 248 0
43 HD 153919 HXB 17 03 56.7725629224 -37 50 38.913331452 6.06 6.78 6.51 6.08 5.90 O6Iafcp 814 1
44 V* V2116 Oph Sy* 17 32 02.1532435416 -24 44 44.129169096   20.78 18.4     M6IIIe 692 1
45 3FHL J1746.2-2852 LXB 17 44 33.09 -28 44 27.0           ~ 532 0
46 IGR J17544-2619 HXB 17 54 25.2722906112 -26 19 52.576928292   14.71 12.94 12.10 10.38 O9Ib 190 0
47 SAX J1802.7-2017 HXB 18 02 41.9407199832 -20 17 17.312648064   17.4 16.4     BIII 89 0
48 PSR J1808-2024 Psr 18 08 39.32 -20 24 40.1           ~ 1240 2
49 AX J1809.8-1943 Psr 18 09 51.07 -19 43 51.8           ~ 463 0
50 IGR J18179-1621 Psr 18 17 52.180 -16 21 31.68           ~ 18 0
51 V* V691 CrA LXB 18 25 46.8185061768 -37 06 18.529336656 14.30 15.20 15.1     ~ 436 0
52 1FGL J1829.6-1006c Psr 18 29 44.01 -09 51 23.0           ~ 39 1
53 Ginga 1843+009 HXB 18 45 36.8356591776 +00 51 47.437790184     20.6   16.616 B0-2IV-Ve 112 0
54 RX J1856.6-3754 Psr 18 56 35.11 -37 54 30.5     25.7     ~ 437 0
55 4U 1901+03 HXB 19 03 39.3926409480 +03 12 15.758070228           OB 108 0
56 4U 1907+09 HXB 19 09 38.0514267264 +09 49 47.270139132   19.41 16.35 15.570 12.53 O9.5Iab 345 0
57 4U 1908+075 HXB 19 10 48.2133201408 +07 35 51.707133960           O7.5/9.5If 125 0
58 IGR J19294+1816 HXB 19 29 55.9057395264 +18 18 38.248439004           B1Ve 43 1
59 XTE J1946+274 HXB 19 45 39.3568693200 +27 21 55.501637040   18.76 16.92 15.62 14.38 B0-1IV-Ve 126 0
60 KS 1947+300 HXB 19 49 35.4841147968 +30 12 31.775979852   15.16 14.22 13.53 12.88 B0Ve 174 0
61 HD 226868 HXB 19 58 21.6757355952 +35 12 05.784512688 9.38 9.72 8.91 8.42   O9.7Iabpvar 4337 0
62 V* V2246 Cyg HXB 20 32 15.2749858128 +37 38 14.843024844   22.16 19.41 17.32 15.18 B0Ve 440 0
63 SAX J2103.5+4545 HXB 21 03 35.7100848936 +45 45 05.568751692   15.34 14.20 13.991 12.75 B0Ve 185 0
64 V* V490 Cep HXB 21 39 30.6903047304 +56 59 10.421969280   15.2       B1.5Ve 169 1
65 RBS 1774 N* 21 43 03.8 +06 54 20           ~ 78 0
66 BD+53 2790 HXB 22 07 56.2366802328 +54 31 06.408879888 9.4 10.11 9.84 9.64 9.43 O9.5Vep 210 0
67 NAME Magnificent Seven ? ~ ~           ~ 70 1

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