2000A&A...361.1011P


Query : 2000A&A...361.1011P

2000A&A...361.1011P - Astronomy and Astrophysics, volume 361, 1011-1022 (2000/9-3)

Ca II activity and rotation in F-K evolved stars.

PASQUINI L., DE MEDEIROS J.R. and GIRARDI L.

Abstract (from CDS):

Ca II H and K high resolution observations for 60 evolved stars in the field and in 5 open clusters are presented. From these spectra chromospheric fluxes are derived, and a homogeneous sample of more than 100 giants is built adding data from the literature. In addition, for most stars, rotational velocities were derived from CORAVEL observations. By comparing chromospheric emission in the cluster stars we confirm the results of Pasquini & Brocato (1992A&A...266..340P): chromospheric activity depends on the stellar effective temperature, and mass, when intermediate mass stars (M∼4M) are considered. The Hyades and the Praesepe clump giants show the same level of activity, as expected from stars with similar masses and effective temperatures. A difference of up to 0.4dex in the chromospheric fluxes among the Hyades giants is recorded and this sets a clear limit to the intrinsic spread of stellar activity in evolved giants. These differences in otherwise very similar stars are likely due to stellar cycles and/or differences in the stellar initial angular momentum. Among the field stars none of the giants with (V-R)0<0.4 and Ia supergiants observed shows a signature of Ca II activity; this can be due either to the real absence of a chromosphere, but also to other causes which preclude the appearance of Ca II reversal. By analyzing the whole sample we find that chromospheric activity scales linearly with stellar rotational velocity and a high power of stellar effective temperature: F'k∝Teff7.7(Vsini)0.9. This result can be interpreted as the effect of two chromospheric components of different nature: one mechanical and one magnetic. Alternatively, by using the Hipparcos parallaxes and evolutionary tracks, we divide the sample according to the stellar masses, and we follow the objects along an evolutionary track. For each range of masses activity can simply be expressed as a function of only one parameter: either the Teff or the angular rotation Ω, with laws F'kα, because angular velocity decreases with effective temperature along an evolutionary track. By using the evolutionary tracks and the observed Vsini we investigate the evolution of the angular momentum for evolved stars in the range 1-5M. For the 1.6-3 solar mass stars the data are consistent with the IΩ=const law while lower and higher masses follow a law similar to IΩ2=const, where I is the computed stellar momentum of inertia. We find it intriguing that Vsini remains almost constant for 1M stars along their evolution; if a similar behavior is shared by Pop II stars, this could explain the relatively high degree of activity observed in Pop II giants. Finally, through the use of models, we have verified the consistency of the F'k∝Ωα and the IΩβ=Const laws derived, finding an excellent agreement. This representation, albeit crude (the models do not consider, for instance, mass losses) represents the evolution of Ca II activity and of the angular momentum in a satisfactory way in most of the portion of HR diagram analyzed. Different predictions could be tested with observations in selected clusters.

Abstract Copyright:

Journal keyword(s): stars: chromospheres - stars: activity - stars: rotation - stars: evolution - Galaxy: open clusters and associations: general

VizieR on-line data: <Available at CDS (J/A+A/361/1011): position.dat table1.dat table2.dat table3.dat>

Simbad objects: 124

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Number of rows : 124
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 * eps Phe PM* 00 09 24.6400933968 -45 44 50.726069376 5.73 4.89 3.87 3.11 2.59 K0III 101 0
2 * alf Phe SB* 00 26 17.05140 -42 18 21.5539   3.47 2.38     K0.5IIIb 155 0
3 * bet Cet PM* 00 43 35.37090 -17 59 11.7827 3.90 3.02 2.01 1.29 0.78 G9.5IIICH-1 525 1
4 * eta Psc ** 01 31 29.0081880156 +15 20 44.994632991 5.320 4.600 3.620 2.90 2.40 G7IIIa 245 0
5 * chi Eri PM* 01 55 57.4597664541 -51 36 31.959325912   4.55 3.70     G8IIIbCNIV 140 0
6 * ksi01 Cet EB* 02 13 00.0003185160 +08 50 48.128462340 5.86 5.23 4.35 3.68 3.18 G7IIIBa0.4Fe-1 211 1
7 * mu. Hyi PM* 02 31 40.5230532192 -79 06 33.897895704   6.256 5.275     G8III 43 0
8 * bet For RG* 02 49 05.4189042528 -32 24 21.232006884 6.14 5.45 4.46 3.70 3.16 G9IIIb 80 0
9 * omi Tau SB* 03 24 48.7983185016 +09 01 43.930632036 5.090 4.490 3.600 2.92 2.47 G6III 226 0
10 * alf Ret PM* 04 14 25.4700044050 -62 28 25.692560378 4.90 4.27 3.36 2.71 2.27 G8IIIa: 119 0
11 * gam Tau ** 04 19 47.6039239005 +15 37 39.511385129 5.46 4.64 3.65 4.83   G9.5IIIabCN0.5 549 0
12 * del Tau SB* 04 22 56.0951595936 +17 32 33.049802364 5.56 4.74 3.76 5.56   G9.5IIICN0.5 525 0
13 * tet01 Tau SB* 04 28 34.4979222951 +15 57 44.221169423 5.510 4.780 3.840 5.48   G9IIIFe-0.5 490 0
14 * eps Tau ** 04 28 37.0002551195 +19 10 49.563140930 5.42 4.54 3.53     G9.5IIICN0.5 591 1
15 Cl Melotte 25 OpC 04 29 47.3 +16 56 53           ~ 3074 0
16 * alf Tau LP? 04 35 55.23907 +16 30 33.4885 4.32 2.40 0.86 -0.37 -1.31 K5+III 1255 2
17 * 2 Aur * 04 52 37.9803457176 +36 42 11.477114460   6.164 4.779     K3-IIIBa0.4 143 0
18 * bet Lep PM* 05 28 14.7228880318 -20 45 33.997988694 4.13 3.66 2.84 2.19 1.75 G5II-IIIa: 239 0
19 * del Lep PM* 05 51 19.2960278488 -20 52 44.730655825 5.54 4.83 3.85 2.99 2.43 K0IIIbFe-1.5CH0.5 213 0
20 * nu.02 CMa PM* 06 36 41.0376788353 -19 15 21.169452656 5.96 5.011 3.91 3.13 2.61 K1.5III-IVFe1 260 1
21 * eps Gem V* 06 43 55.9271511904 +25 07 52.057892524 5.85 4.39 2.98 2.01 1.40 G8Ib 393 0
22 * tau Pup SB* 06 49 56.1691452909 -50 36 52.339311041   4.13 2.93     K1III 105 0
23 * tet CMa PM* 06 54 11.3988612864 -12 02 19.061163780 7.20 5.51 4.08 2.95 2.17 K3/4III 218 0
24 * ome Gem Ce* 07 02 24.7799925192 +24 12 55.606511880   6.136 5.181     G5IIa 117 0
25 * del Vol * 07 16 49.8219490140 -67 57 25.749643138 5.23 4.78 3.99 3.33 2.95 F8Ib/II 89 0
26 HD 57146 * 07 18 51.2737383648 -26 35 09.081112236   6.258 5.288     G2Ib 80 0
27 HD 59890 * 07 30 42.6019759200 -30 57 44.209928016 6.21 5.58 4.65 3.98 3.51 G2Iab/b 62 0
28 * 25 Mon dS* 07 37 16.6910262168 -04 06 39.533872608   5.570 5.131     F6III 145 0
29 * kap Gem ** 07 44 26.8438122013 +24 23 52.787290890 5.19 4.49 3.57 2.86 2.41 G8III-IIIb 299 0
30 * bet Gem PM* 07 45 18.94987 +28 01 34.3160 3.00 2.14 1.14 0.39 -0.11 K0IIIb 1101 2
31 * ksi Pup * 07 49 17.6535518440 -24 51 35.221966694 5.72 4.56 3.30 2.43 1.88 G6Ib 190 0
32 HD 65662 * 07 56 18.6483286488 -60 31 35.166305856   7.266 5.717     K3+IIIa 57 0
33 * j Pup * 07 56 51.5423244834 -22 52 48.401855869   4.900 4.184     F7II 106 0
34 NGC 2516 OpC 07 58 06.5 -60 48 00           ~ 713 0
35 V* V460 Car LP* 07 59 37.5423065376 -60 35 13.423848216   6.91 5.18     M1.5IIb 90 0
36 * rho Pup dS* 08 07 32.6488235 -24 18 15.567946 3.43 3.24 2.81 2.46 2.25 F5IIkF2IImF5II 301 0
37 * mu.02 Cnc PM* 08 07 45.8562513552 +21 34 54.526814256 6.14 5.93 5.30     G1IVb 226 0
38 * zet Mon * 08 08 35.6480975954 -02 59 01.635577977 6.02 5.30 4.33 3.60 3.11 G2Ib 145 0
39 * 20 Pup * 08 13 19.9671571968 -15 47 17.608829604 6.84 6.06 4.99     G4Ib-II 84 0
40 * eps Car ** 08 22 30.83526 -59 30 34.1431 3.32 3.13 1.86     K3:III+B2:V 88 0
41 HD 73598 ** 08 39 50.7154795152 +19 32 26.919638988   7.53 6.60     G8III-IIIb 119 0
42 * 39 Cnc * 08 40 06.4182853944 +20 00 28.034963316 8.20 7.37 6.39 5.67 5.20 G8+III-IIIb 197 0
43 NGC 2632 OpC 08 40 13.0 +19 37 16           ~ 1564 0
44 HD 73710 * 08 40 22.0864518288 +19 40 11.771283936 8.290 7.410 6.390 5.70 5.21 G9III-IIIb 181 0
45 * F Hya * 08 43 40.3744846779 -07 14 01.422508229   5.441 4.625     G1Ib 165 0
46 NGC 2682 OpC 08 51 23.0 +11 48 50           ~ 2342 0
47 * w Vel SB* 09 00 05.4097493970 -41 15 12.986426432   5.088 4.446     G8/K1III+A 52 0
48 * G Car SB* 09 05 08.8131197868 -72 36 09.729210524   5.069 4.467     F8II+DA 72 0
49 * lam Vel s*r 09 07 59.75787 -43 25 57.3273 5.67 3.86 2.21 0.97 0.03 K4Ib 218 0
50 * k Vel * 09 15 45.0797665800 -37 24 47.317883724 5.17 5.07 4.62 4.24 3.96 F3/5V 76 0
51 * g Car V* 09 16 12.0725713844 -57 32 29.296098008   5.941 4.318     M0.5IIIa 38 0
52 * alf Hya * 09 27 35.24270 -08 39 30.9583 5.14 3.42 1.97 0.93 0.16 K3IIIa 434 1
53 * eps Leo V* 09 45 51.0736168507 +23 46 27.313597604 4.23 3.79 2.98 2.36 1.93 G1IIIa 339 0
54 * gam01 Leo PM* 10 19 58.354462 +19 50 29.35920 4.13 3.13 1.98 1.13 0.51 K1-IIIFe-1 281 1
55 * gam02 Leo PM* 10 19 58.619717 +19 50 26.70347   3.4   2.2   G7IIIbFe-1.5 146 0
56 * x Vel * 10 39 18.3925392553 -55 36 11.764722297   5.280 4.267     G5IIa 69 0
57 * mu. Vel ** 10 46 46.17877 -49 25 12.9244 4.16 3.59 2.69 2.01 1.52 G6III 184 0
58 HD 94481 * 10 54 17.7770384160 -13 45 28.935080424   6.487 5.651     G4III-IIIb 62 0
59 * x Car cC* 11 08 35.3887658400 -58 58 30.139080572 6.07 5.09 3.83 2.86 2.27 G5_0-Ia 149 0
60 * del Crt PM* 11 19 20.4473515372 -14 46 42.743409457 5.66 4.67 3.56 2.73 2.13 G9IIICH0.5 168 0
61 NGC 3680 OpC 11 25 34.1 -43 14 24   8.40 7.6     ~ 319 0
62 * omi01 Cen LP* 11 31 46.0686288120 -59 26 31.418490516   6.134 5.097 4.31 3.64 G3_0-Ia 78 0
63 * ksi Hya ** 11 33 00.1149306166 -31 51 27.447975478 5.17 4.47 3.54 2.84 2.36 G7IIIb 257 0
64 * 12 Mus RS* 11 39 29.5660962396 -65 23 52.099447484   5.863 5.095 6.31   G5/8IIIp+A0/1V 171 1
65 HD 101570 * 11 40 53.6337884256 -62 05 24.365478084 6.79 6.00 4.92     G3Ib 46 0
66 V* V810 Cen LP* 11 43 31.1923164072 -62 29 21.827165856 6.18 5.83 5.03 4.27 3.91 G0_0-IaFe1 151 0
67 HD 102350 Ce* 11 46 30.8228406163 -61 10 42.238603035   5.01 4.10     G5Ib/II 69 0
68 * eps Crv PM* 12 10 07.4805825 -22 37 11.161983 5.79 4.32 2.98 2.05 1.41 K2+IIIa 146 0
69 * bet Crv PM* 12 34 23.2349224335 -23 23 48.336778328 4.17 3.52 2.64 2.03 1.59 G5IIBa0.3 257 0
70 * 33 Vir PM* 12 46 22.5452871796 +09 32 22.869715907   6.66   5.1   G9 133 0
71 * 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
72 * gam Hya SB* 13 18 55.2976891983 -23 10 17.450424894 4.58 3.92 3.00 2.40 1.93 G8IIIa 178 0
73 * m Cen * 13 24 00.4826883840 -64 32 08.411490672 5.85 5.35 4.52     G5IIb 46 0
74 * 80 Vir PM* 13 35 31.2962831856 -05 23 46.288937688   6.661 5.706     K0III 49 0
75 * 7 Boo * 13 53 12.9300854664 +17 55 58.327270932   6.551 5.709     G5III 67 0
76 * tet Cen PM* 14 06 40.94752 -36 22 11.8371 3.94 3.04 2.05 1.29 0.76 K0-IIIb 252 1
77 * alf Boo RG* 14 15 39.67207 +19 10 56.6730 2.46 1.18 -0.05 -1.03 -1.68 K1.5IIIFe-0.5 2318 1
78 * iot Vir PM* 14 16 00.8682760805 -06 00 01.969483331 4.64 4.60 4.08     F7III 357 0
79 * phi Vir PM* 14 28 12.1389021744 -02 13 40.649015856   5.522 4.840     G2IV 191 0
80 * mu. Vir PM* 14 43 03.6239867612 -05 39 29.524956308 4.25 4.26 3.88 3.48 3.26 F2V 227 0
81 * 56 Hya * 14 47 44.8064191512 -26 05 15.001924020   6.165 5.229     G8/K0III 47 0
82 * 37 Lib PM* 15 34 10.7024841438 -10 03 52.317750492 6.48 5.63 4.62 3.85 3.33 K1III-IV 175 0
83 * alf Ser PM* 15 44 16.0741095811 +06 25 32.268792881 5.080 3.800 2.630 1.82 1.25 K2IIIbCN1 518 0
84 * phi Ser PM* 15 57 14.5708375584 +14 24 52.132920192   6.677 5.530     K1IV 114 0
85 * ome02 Sco PM* 16 07 24.3270139738 -20 52 07.551954425 5.68 5.17 4.33 3.68 3.25 G4II-III 124 0
86 CD-53 6474 s*r 16 12 56.9036999088 -54 13 13.513528128   10.595 8.753 9.15   K2Ib 33 0
87 NGC 6067 OpC 16 13 11.8 -54 13 37           ~ 211 0
88 V* V340 Nor cC* 16 13 17.3997630552 -54 14 05.586545400   9.61 8.47 8.83   G2Iab 160 1
89 CD-53 6487 * 16 13 21.0803980896 -54 09 54.680037768   11.220 9.937 9.85   G8II 24 0
90 * bet Her SB* 16 30 13.2003216885 +21 29 22.598684027 4.39 3.70 2.77 2.13 1.65 G7IIIaFe-0.5 319 0
91 * alf TrA * 16 48 39.89508 -69 01 39.7626   3.33 1.88     K2III_Ba1 242 0
92 * eps Sco PM* 16 50 09.8108127 -34 17 35.633735 4.61 3.45 2.29 1.43 0.83 K1III 217 0
93 * eta Sco PM* 17 12 09.1940948534 -43 14 21.082311424 3.83 3.74 3.33 2.97 2.77 F5IV 151 0
94 CD-49 11401 * 17 24 41.5351328856 -49 59 06.472009932   11.401 10.363     ~ 40 0
95 IC 4651 OpC 17 24 50.9 -49 55 01           ~ 350 0
96 CD-49 11413 * 17 25 04.2659268888 -49 58 24.720883788   10.0 10.19     G5 28 0
97 CD-49 11417 * 17 25 08.9395734624 -49 53 57.123001032   10.7 8.94     K2 35 0
98 * sig Oph V* 17 26 30.8807335272 +04 08 25.293765444 7.39 5.82 4.31 3.22 2.46 K2II 175 0
99 * bet Dra * 17 30 25.9616959 +52 18 04.999351 4.43 3.79 2.81 2.12 1.64 G2Ib-IIa 415 0
100 * 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
101 HD 162076 * 17 48 24.7678741632 +20 33 55.582920684   6.642 5.687     G5IV 85 0
102 * gam Dra * 17 56 36.36988 +51 29 20.0242 5.630 3.760 2.230 1.08 0.23 K5III 562 1
103 * eta Ser PM* 18 21 18.6004923875 -02 53 55.780691633 4.84 4.19 3.25 2.55 2.05 K0III-IV 377 0
104 * alf Sct PM* 18 35 12.4271571798 -08 14 38.653839451 6.70 5.17 3.83 2.86 2.18 K3III 182 0
105 * bet Sct SB* 18 47 10.4742156840 -04 44 52.342960488 6.15 5.31 4.22 3.43 2.86 G4IIa 187 0
106 HD 174474 PM* 18 53 02.3467978200 -48 21 39.296484288   6.277 6.168   6.03 A2V 24 0
107 * pi. Sgr ** 19 09 45.8329260 -21 01 25.010335 3.46 3.22 2.88 2.54 2.30 F2II-III 137 0
108 * f Aql SB* 19 20 32.9062014840 -05 24 56.764910088   5.927 4.990     G8/K0IV 124 0
109 * b Aql PM* 19 24 58.1999714302 +11 56 39.888480530 6.35 5.93   4.7   G7IVHdel1 490 0
110 * nu. Aql * 19 26 31.0892580000 +00 20 18.854897820 5.71 5.31 4.72 4.21 3.77 F2Ib 136 0
111 * bet Aql PM* 19 55 18.7928429719 +06 24 24.351242346 5.040 4.560 3.710 3.05 2.56 G8IV 552 0
112 * alf01 Cap ** 20 17 38.8691281056 -12 30 29.563869708 6.14 5.34 4.27 3.49 2.94 G3Ib 136 0
113 * bet Del SB* 20 37 32.94130 +14 35 42.3195 4.16 4.07 3.63 3.23 2.99 F5IV 279 0
114 * tet Del s*r 20 38 43.9865193912 +13 18 54.455461128 8.91 7.23 5.71 4.63 3.87 K3Ib 80 0
115 * kap Del PM* 20 39 07.7867477765 +10 05 10.291671448   5.77   4.6   G2IV 197 0
116 * ksi Cyg SB* 21 04 55.8599363125 +43 55 40.272058234 7.17 5.39 3.73 2.55 1.63 K4.5Ib-II 311 0
117 * iot Cap BY* 21 22 14.7959829093 -16 50 04.358014058 5.74 5.18 4.27 3.65 3.17 G7IIIFe-1.5 193 0
118 * zet Cap SB* 21 26 40.0306553034 -22 24 40.753242596 5.35 4.75 3.74 3.09 2.65 G4Ib:Ba2 280 1
119 * bet Aqr * 21 31 33.5320760349 -05 34 16.229381029 4.27 3.71 2.89 2.29 1.84 G0Ib 447 0
120 * eps Peg LP* 21 44 11.1561394 +09 52 30.031152 5.61 3.91 2.39 1.34 0.58 K2Ib-II 446 0
121 * 9 Peg V* 21 44 30.6958020785 +17 21 00.062899998 6.48 5.52 4.35 3.53 2.98 G5Ib 267 0
122 * alf Aqr * 22 05 47.0355458275 -00 19 11.463439527 4.65 3.90 2.94 2.27 1.76 G2Ib 437 0
123 * alf Tuc SB* 22 18 30.1124372937 -60 15 34.666361094 5.75 4.18 2.82 1.76 1.02 K3III 131 0
124 * 56 Peg SB* 23 07 06.7418870416 +25 28 05.773861158 7.20 6.06 4.74 3.74 3.07 K0.5II:Ba1CN-2CH-0.5 262 0

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