1997A&AS..124..475M


Query : 1997A&AS..124..475M

1997A&AS..124..475M - Astron. Astrophys., Suppl. Ser., 124, 475-497 (1997/September-0)

Spectropolarimetry of magnetic stars. VI. Longitudinal field, crossover and quadratic field: New measurements.

MATHYS G. and HUBRIG S.

Abstract (from CDS):

New determinations of the mean longitudinal magnetic field, of the crossover, and of the mean quadratic magnetic field of Ap stars are presented. They are based on spectra recorded simultaneously in both circular polarizations at ESO with the CASPEC spectrograph fed by the 3.6 m telescope. This paper discusses 95 observations of 44 stars. A major result of this study is the discovery that HD 137509 has a predominantly quadrupolar magnetic field, a strucuture previously found in only a couple of stars. Improvement or revision of the determination of the rotation period has been achieved for 3 stars. The stars studied in this work include 14 rapidly oscillating Ap stars (for 6 of which no previous attempt to detect a magnetic field had ever been made) and 21 Ap stars with spectral lines resolved into their magnetically split components when observed at high enough dispersion in unpolarized light (for 9 of these stars, no determination of the longitudinal field had been performed before). The observations discussed in this paper have been performed between 1989 and 1994, a period during which CASPEC and its Zeeman analyzer have progressively undergone various configuration changes. The results reported here demonstrate that the polarimetric performance of the instrument has remained unaltered through these modifications. Thanks to the latter, the achieved resolving power was increased, which resulted in improved magnetic measurement accuracies.

Abstract Copyright:

Journal keyword(s): stars: chemically peculiar - stars: magnetic fields - stars: individual: HD 137509

Simbad objects: 44

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Number of rows : 44
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 V* GR And a2* 00 28 28.5694460472 +32 26 15.875756412   6.99 6.91     A5VpSiSrCr 144 0
2 * alf Scl Ro* 00 58 36.3592644040 -29 21 26.832190995 3.52 4.09 4.27 4.30 4.43 B7IIIp 250 0
3 V* AP Scl a2* 01 05 55.6980950160 -26 43 44.007202704   8.60 8.40     A2Vp 113 0
4 V* BT Hyi a2* 03 00 37.0849651248 -81 54 07.305942240   9.64 9.35     ApSrEuCr 51 0
5 * 22 Eri a2* 03 40 38.3331139440 -05 12 38.555731188 4.81 5.38 5.53     B9IIIpSi4200 129 0
6 V* DO Eri a2* 03 55 16.1313315312 -12 05 56.727712752 6.35 6.32 6.00     A9VpSrEuCr 397 0
7 * del02 Ori SB* 05 32 00.4064140728 -00 17 04.347484800 5.97 6.67 6.83     B2Vsn 284 0
8 HD 37058 Or* 05 35 33.3539646576 -04 50 15.181113696 6.40 7.18 7.30     B3/5II 163 0
9 HD 50169 Em* 06 51 59.2280506608 -01 38 40.392118428   9.01 8.98     ApEuSrCr 100 0
10 * E Pup SB* 07 12 15.8070021456 -40 29 55.755380940   5.38 5.31     A1/2V:+ApSrEu 105 0
11 HD 70331 * 08 19 17.3405180184 -48 04 09.936235560   8.79 8.85     B7/8II/III(pSi) 33 0
12 V* KU Hya a2* 09 22 50.8563427 -09 50 19.659199 6.86 6.75 6.53     ApEuCrSr 168 0
13 HD 83368 a2* 09 36 25.40686 -48 45 04.2549   6.480 6.232     A8VSrCrEu+F9V 267 0
14 HD 93507 * 10 45 50.6290991136 -68 07 49.572675228   8.47 8.44     ApSiCrpec 46 0
15 V* KQ Vel a2* 10 55 01.0131717072 -42 15 03.962480184 5.78 6.03 6.11     Ap(SiCr) 133 0
16 V* LS Hya a2* 11 19 25.9289118984 -30 19 22.753103016   7.88 7.94     ApSi 46 0
17 HD 116114 PM* 13 21 46.3079033856 -18 44 31.563482928   7.34 7.02     F0VpSrCrEu 139 0
18 * 67 Mus SB* 13 25 50.3011677024 -70 37 38.109211896   5.626 5.651     ApHg(Mn) 124 0
19 V* V827 Cen a2* 13 44 16.0025041176 -51 00 44.822666448   6.323 6.440     ApSiCr 107 0
20 V* CS Vir a2* 14 18 38.2505609712 -18 42 57.465294264 5.86 5.90 5.90     ApSi(Cr) 312 0
21 V* FF Vir a2* 14 25 55.8786309720 +00 59 33.756435456 7.07 7.09 7.07     ApEuSrCr 173 0
22 * alf Cir a2* 14 42 30.4206520931 -64 58 30.478845491 3.55 3.43 3.19 2.96 2.86 A7VpSrCrEu 364 0
23 V* HI Lib a2* 15 09 02.4051867312 -13 59 58.675373736   7.84 7.46     F2VpSrCrEu 131 0
24 * bet CrB a2* 15 27 49.7540595700 +29 06 20.494640434 4.08 3.97 3.68 3.50 3.45 F2VpSrCrEuSi 686 0
25 * 33 Lib a2* 15 29 34.7424021408 -17 26 27.377921220 7.22 7.07 6.69     F0VspEuGdSr 251 0
26 V* NN Aps a2* 15 31 27.1154643312 -71 03 43.664769144   6.76 6.87     Ap(SiCrFe) 92 0
27 HD 144897 * 16 09 51.1821697368 -41 09 27.768423492   8.81 8.59     ApEuCr 54 0
28 V* V933 Sco a2* 16 20 05.4927999744 -20 03 23.030685720   7.56 7.40     B8:VpSrTiSiEu 191 0
29 V* V451 Her a2* 17 01 33.0515292528 +14 56 58.988031648 6.39 6.35 6.31     A0VpSiSrCrEu 177 0
30 V* V970 Sco a2* 17 39 41.2405860216 -32 17 57.527626920   9.38 9.34     ~ 66 0
31 HD 165474 * 18 05 42.8401334904 +12 00 12.191017896   7.69 7.40     A6VpSrCrEuSi 99 0
32 V* V694 CrA a2* 18 12 25.8347418984 -37 45 09.271268532   8.34 7.92     ApSrCrEu 117 0
33 V* V4050 Sgr a2* 18 22 53.0754352224 -36 40 10.400061108   5.20 5.34     B7Ib/II 165 0
34 V* V686 CrA a2* 18 56 40.4859327624 -37 20 35.701261512 4.53 5.24 5.38     B3V 207 0
35 * 10 Aql a2* 18 58 46.9240671288 +13 54 23.941711692 6.23 6.14 5.89     A7VpSrEu_Ksn 284 0
36 V* V3961 Sgr a2* 19 51 50.6106718344 -39 52 27.738309468 5.05 5.27 5.33     ApCr(Si) 184 0
37 V* V1291 Aql a2* 19 53 18.7357174440 -03 06 52.063556976   5.837 5.619     F0VpSrCrEu 276 0
38 V* QR Tel a2* 20 24 11.7818561520 -51 43 25.270017456   9.56 9.18     ApSrCrEu 40 0
39 HD 335238 * 20 50 43.6655493504 +29 48 12.042715104   9.30 9.26     A2 43 0
40 * gam Equ a2* 21 10 20.5000721160 +10 07 53.691967776 5.03 4.94 4.68 4.43 4.32 A9VpSrCrEu 551 0
41 V* BI Mic a2* 21 26 03.8683509936 -29 55 48.145296468   9.10 8.81     ApSrEu 81 0
42 HD 216018 * 22 49 26.5144571184 -11 20 57.251608404   7.97 7.62     A(3)+F(m) 43 0
43 V* BP Gru a2* 23 01 46.8211202616 -44 50 26.878698672   7.99 7.52     ApSrSi: 129 0
44 V* CN Tuc a2* 23 09 27.7123518144 -63 39 12.107929716   9.62 9.38     ApEuSr 45 0

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