2013ApJ...776....4N


Query : 2013ApJ...776....4N

2013ApJ...776....4N - Astrophys. J., 776, 4 (2013/October-2)

The Gemini NICI planet-finding campaign: the frequency of giant planets around young B and A stars.

NIELSEN E.L., LIU M.C., WAHHAJ Z., BILLER B.A., HAYWARD T.L., CLOSE L.M., MALES J.R., SKEMER A.J., CHUN M., FTACLAS C., ALENCAR S.H.P., ARTYMOWICZ P., BOSS A., CLARKE F., DE GOUVEIA DAL PINO E., GREGORIO-HETEM J., HARTUNG M., IDA S., KUCHNER M., LIN D.N.C., REID I.N., SHKOLNIK E.L., TECZA M., THATTE N. and TOOMEY D.W.

Abstract (from CDS):

We have carried out high contrast imaging of 70 young, nearby B and A stars to search for brown dwarf and planetary companions as part of the Gemini NICI Planet-Finding Campaign. Our survey represents the largest, deepest survey for planets around high-mass stars (~1.5-2.5 M) conducted to date and includes the planet hosts β Pic and Fomalhaut. We obtained follow-up astrometry of all candidate companions within 400 AU projected separation for stars in uncrowded fields and identified new low-mass companions to HD 1160 and HIP 79797. We have found that the previously known young brown dwarf companion to HIP 79797 is itself a tight (3 AU) binary, composed of brown dwarfs with masses 58–20+21 MJup and 55–1920 MJup, making this system one of the rare substellar binaries in orbit around a star. Considering the contrast limits of our NICI data and the fact that we did not detect any planets, we use high-fidelity Monte Carlo simulations to show that fewer than 20% of 2 M stars can have giant planets greater than 4 M Jup between 59 and 460 AU at 95% confidence, and fewer than 10% of these stars can have a planet more massive than 10 MJup between 38 and 650 AU. Overall, we find that large-separation giant planets are not common around B and A stars: fewer than 10% of B and A stars can have an analog to the HR 8799 b (7 MJup, 68 AU) planet at 95% confidence. We also describe a new Bayesian technique for determining the ages of field B and A stars from photometry and theoretical isochrones. Our method produces more plausible ages for high-mass stars than previous age-dating techniques, which tend to underestimate stellar ages and their uncertainties.

Abstract Copyright:

Journal keyword(s): brown dwarfs - instrumentation: adaptive optics - planetary systems - planets and satellites: detection - stars: individual: HIP 79797

Simbad objects: 91

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Number of rows : 91
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 HD 1160C LM* 00 15 57.2397619248 +04 15 09.082197648           M3.5 16 0
2 HD 1160B LM* 00 15 57.26 +04 15 03.7           ~ 32 0
3 HD 1160 * 00 15 57.3019549776 +04 15 04.009943520   7.159 7.119     A0V 91 1
4 * kap Phe PM* 00 26 12.2013436436 -43 40 47.390371480 4.22 4.11 3.94 3.78 3.70 A5IVn 152 0
5 * 49 Cet PM* 01 34 37.7786780856 -15 40 34.898673000   5.667 5.607   5.54 A1V 303 0
6 * q02 Eri PM* 01 46 06.2629998768 -53 31 19.328527488   5.064 5.033     A1V 82 0
7 * eps Hyi PM* 02 39 35.3616474335 -68 16 01.008064791 3.91 4.047 4.096     B9Va 120 0
8 * s Eri SB* 02 39 47.9753006640 -42 53 30.519103344   4.81 4.75     A1Vb 81 1
9 * nu. Hor PM* 02 49 01.4872939344 -62 48 23.479025760   5.352 5.253     A2V 74 0
10 * tau03 Eri PM* 03 02 23.4993592222 -23 37 28.098204536 4.33 4.25 4.09 3.96 3.87 A3IV-V 161 0
11 * alf Per V* 03 24 19.3700924 +49 51 40.245455 2.64 2.27 1.79     F5Ib 833 1
12 HD 21997 PM* 03 31 53.6470102728 -25 36 50.940001116   6.501 6.372   6.25 A3IV/V 155 0
13 Cl Melotte 22 OpC 03 46 24.2 +24 06 50           ~ 3437 0
14 HD 24966 * 03 56 29.3766020328 -38 57 43.805016612   6.90 6.89   6.85 A0V 39 0
15 Cl Melotte 25 OpC 04 29 47.3 +16 56 53           ~ 3082 0
16 HD 31270 * 04 54 42.6168148776 +10 08 12.752337588   9.22 8.91     A0 5 0
17 * pi.01 Ori PM* 04 54 53.7280989194 +10 09 03.003446941   4.723 4.648     A0Va_lB 258 0
18 HD 32297 * 05 02 27.4358754192 +07 27 39.678553260   8.32 8.14     A0V 194 0
19 HD 35505 * 05 24 28.4869999272 -16 58 32.795612400   5.631 5.636     A0V 47 0
20 HD 38206 * 05 43 21.6709239120 -18 33 26.911637928   5.711 5.727   5.72 A0V 109 0
21 * zet Lep * 05 46 57.3413646658 -14 49 19.020570470   3.637 3.525     A2IV-V(n) 296 0
22 * bet Pic PM* 05 47 17.0876901 -51 03 59.441135 4.13 4.03 3.86 3.74 3.58 A6V 1908 1
23 * bet Pic b Pl 05 47 17.0876901 -51 03 59.441135           ~ 511 1
24 * tet Lep * 06 06 09.3238729536 -14 56 06.919393776   4.707 4.663     A0V 88 0
25 CD-35 2722 ** 06 09 19.2081174720 -35 49 31.065774636   12.61 11.083 10.682 9.337 M1Ve 79 0
26 HD 46190 Pu* 06 27 48.6170866512 -62 08 59.730215676   6.68 6.61     A0V 32 0
27 NAME AB Dor Moving Group MGr 06 38 53.4 -42 50 04           ~ 472 0
28 HD 54341 * 07 06 20.9326489128 -43 36 38.689716996   6.51 6.52     A0V 33 0
29 * bet CMi Be* 07 27 09.0417373 +08 17 21.536745 2.52 2.80 2.89 2.90 2.96 B8Ve 383 0
30 HD 70703 * 08 21 00.4597174128 -52 13 40.689101136   6.76 6.63     A0/1V 24 0
31 * 30 Mon PM* 08 25 39.6318651278 -03 54 23.137987255 3.85 3.88 3.90 3.87 3.92 A0Va 278 0
32 HD 71722 * 08 26 25.2055695408 -52 48 26.990371908   6.097 6.041     A0V 49 0
33 NGC 2632 OpC 08 40 13.0 +19 37 16           ~ 1567 0
34 IC 2391 OpC 08 41 10.1 -52 59 28           ~ 822 0
35 * 50 Cnc PM* 08 46 56.0189914848 +12 06 35.830080180   5.992 5.885 7.20 5.76 A1Vp 91 0
36 HD 79066 PM* 09 11 55.6335500784 +05 28 07.056944940   6.648 6.342     F1Vn 43 0
37 * tet Hya SB* 09 14 21.8600711562 +02 18 51.551915906   3.82   3.9   B9.5V+DA1.6 214 0
38 HD 85672 * 09 53 59.1495199248 +27 41 43.644926832   7.75 7.58   7.41 A0 28 0
39 * alf Leo PM* 10 08 22.31099 +11 58 01.9516 0.88 1.24 1.40 1.37 1.47 B8IVn 855 1
40 * q Vel PM* 10 14 44.1556880397 -42 07 18.988830783 3.98 3.90 3.85 3.83 3.81 A2Va 136 0
41 V* TW Hya TT* 11 01 51.9053285064 -34 42 17.033218380   11.94 10.50 10.626 9.18 K6Ve 1898 1
42 HD 97244 PM* 11 11 43.7559643248 +14 24 00.553026528   6.514 6.295     A5V 48 0
43 * del Leo PM* 11 14 06.50142 +20 31 25.3853 2.79 2.68 2.53 2.44 2.41 A5IV(n) 280 0
44 * ksi Vir PM* 11 45 17.0398282505 +08 15 29.209697989   5.003 4.842   4.67 A4V 97 0
45 * bet Leo dS* 11 49 03.57834 +14 34 19.4090 2.30 2.22 2.13 2.08 2.06 A3Va 577 1
46 * del Crv PM* 12 29 51.8551642 -16 30 55.552542 2.80 2.89 2.94 2.99 3.03 A0IV(n)kB9 206 0
47 HD 109573B Y*? 12 36 00.5491381248 -39 52 15.693558816         10.78 M2.5 84 0
48 HD 109573 PM* 12 36 01.0317461592 -39 52 10.220465388   5.786 5.774 7.25 5.81 A0V 634 1
49 HD 110058 * 12 39 46.1962525608 -49 11 55.550898744   8.12 7.97     A0V 85 0
50 * rho Vir dS* 12 41 53.0569475088 +10 14 08.252569320 5.00 4.97 4.88 4.80 4.78 A0Va_lB 224 0
51 * iot Cen PM* 13 20 35.8128156095 -36 42 44.296492410 2.77 2.76 2.73 2.68 2.69 kA1.5hA3mA3Va 209 0
52 HD 118878 * 13 40 37.6519716456 -44 19 48.858836736   6.62 6.57     A0V 30 0
53 * alf Cir a2* 14 42 30.4206520931 -64 58 30.478845491 3.55 3.43 3.19 2.96 2.86 A7VpSrCrEu 365 0
54 HD 130948 BY* 14 50 15.8109853464 +23 54 42.634220112   6.456 5.867     F9IV-V 286 0
55 HD 131835 * 14 56 54.4677661992 -35 41 43.658813184   8.05 7.86     A2IV 123 0
56 HD 135454 * 15 16 37.1496306960 -42 22 12.565909668   6.716 6.754     B9.5V 39 0
57 * bet Lib PM* 15 17 00.41382 -09 22 58.4919 2.14 2.51 2.62 2.67 2.76 B8Vn 272 0
58 * bet Cir PM* 15 17 30.8494520580 -58 48 04.345266926   4.153 4.057     A3Va 128 0
59 HD 136482 * 15 22 11.2555089192 -37 38 08.244115296   6.58 6.64     B8/9V 45 0
60 HD 138965 PM* 15 40 11.5557598920 -70 13 40.379510928   6.499 6.424     A1V 49 0
61 * 30 Ser * 15 48 56.7969566256 -03 49 06.637937808   5.646 5.524     A5IV-V 78 0
62 HD 141569 Y*O 15 49 57.7482550392 -03 55 16.341617064 7.22 7.20 7.12 7.00 7.04 A2VekB9mB9(_lB) 541 0
63 * ksi02 Lup * 15 56 54.1128088176 -33 57 51.338030580   5.61 5.55     B9V 51 0
64 HD 145964 * 16 14 28.8827284680 -21 06 27.491575572   6.407 6.405     B9V 85 0
65 HD 146514 * 16 16 55.3015567176 -03 57 12.053215260   6.464 6.165     F0IV 43 0
66 HD 145689B LM* 16 17 04.35 -67 56 26.3           M9 7 0
67 HD 145689 PM* 16 17 05.4106267752 -67 56 28.623022404   6.090 5.944     A3V 66 0
68 * d Sco PM* 16 18 17.8991603537 -28 36 50.471996469   4.804 4.782     A1Va 161 0
69 V* V872 Ara gD* 16 40 44.3994563352 -51 28 41.726953560   6.58 6.29     F1Vnnm-4 42 0
70 HD 156751 PM* 17 22 47.8854372504 -58 28 23.679597756   7.05 6.84 7.75   A7II/III 27 0
71 * b Oph PM* 17 26 22.2165408824 -24 10 31.105002217   4.437 4.153     kA5hA9mF1III 133 0
72 HD 159170 PM* 17 33 29.8450488456 -05 44 41.291576376   5.790 5.607     A5V 69 0
73 * gam Oph PM* 17 47 53.5605898827 +02 42 26.204838837 3.83 3.80 3.75 3.71 3.71 A1VnkA0mA0 391 0
74 HD 172555 PM* 18 45 26.9009806435 -64 52 16.534807985   4.967 4.767     A7V 278 0
75 CD-64 1208 SB* 18 45 37.0492713148 -64 51 45.888646069   10.518 9.433 9.694   K5Ve 69 0
76 V* PZ Tel BY* 18 53 05.8735056984 -50 10 49.897437168   9.22 8.342   7.464 G9IV 332 0
77 * zet CrA PM* 19 03 06.8768335825 -42 05 42.380397917   4.701 4.725   4.76 B9.5Vann 73 0
78 * lam Aql PM* 19 06 14.9386542192 -04 52 57.225885348 3.07 3.34 3.43 3.46 3.55 B8.5V 225 0
79 * eta Tel PM* 19 22 51.2060774616 -54 25 26.145617376   5.035 5.020   4.99 A0V 216 0
80 * eta Tel B LM* 19 22 51.3580284238 -54 25 31.569876496           M7.5V 72 0
81 HD 182681 PM* 19 26 56.4829971576 -29 44 35.617721496   5.635 5.644     B8.5V 71 0
82 * eps Pav PM* 20 00 35.5515303087 -72 54 37.812955563   3.927 3.940     A0Va 131 0
83 * iot Del SB* 20 37 49.1197657584 +11 22 39.630833580   5.466 5.418     A1IV 108 0
84 HD 200798 PM* 21 07 51.2212151520 -54 12 59.458400748   6.93 6.70     A5/6IV/V 38 0
85 * del Cap SB* 21 47 02.4442395 -16 07 38.233507 3.22 3.12 2.83 2.59 2.43 kA5hF0mF2III 272 0
86 HD 212728 PM* 22 28 37.6704330816 -67 29 20.619424428   5.757 5.564     A3/5V 59 0
87 V* TW PsA BY* 22 56 24.0525564918 -31 33 56.030584767   7.58 6.48     K4Ve 292 0
88 * alf PsA PM* 22 57 39.04625 -29 37 20.0533 1.31 1.25 1.16 1.11 1.09 A4V 1236 3
89 HD 218396 El* 23 07 28.7157209544 +21 08 03.310767492   6.21 5.953     F0+VkA5mA5 1141 0
90 * eta Tuc ** 23 57 35.0786487048 -64 17 53.627347464   5.046 4.989     A1V 87 0
91 NAME Argus Association As* ~ ~           ~ 230 0

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