ORBITAL COPLANARITY IN SOLAR-TYPE BINARY-SYSTEMS - IMPLICATIONS FOR PLANETARY SYSTEM FORMATION AND DETECTION

被引:234
作者
HALE, A [1 ]
机构
[1] NEW MEXICO STATE UNIV,DEPT ASTRON,LAS CRUCES,NM 88003
关键词
D O I
10.1086/116855
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The equatorial inclinations of solar-type stars within visual binary systems are computed by combining v sin i measurements with rotational period information, or with expected rotational velocities based upon the age of the star in question. These inclinations are then compared with the orbital inclinations of the systems to test the alignment between the equatorial and orbital planes, and how the tendency for or against coplanarity varies as a function of parameters such as spectral type, separation, eccentricity, etc. The results are extended to planetary systems in order to determine the appropriateness of basing planetary search strategies upon a parent star's equatorial inclination, and to address issues in planetary system formation and evolution, including the stability of planetary orbits within binary systems. During the course of this project new or improved v sin i measurements are made for over 30 solar-type stars within binary systems, and (for the purposes of the study) tentative orbits are computed for thirteen long-period systems. The results suggest that approximate coplanarity between the equatorial and orbital planes exists for solar-type binary systems with separations less than 30-40 AU. The coplanarity tendency, as well as this ''critical separation,'' is not significantly affected by most of the other parameters studied. The one significant exception occurs with hierarchical multiple systems, where noncoplanarity may exist at relatively small separations. If it is assumed that planetary distances in our solar system are typical, the results suggest there is no reason to expect planets to orbit in planes significantly different from that of the parent star's equator, in turn suggesting that planetary formation models and search strategies dependent upon this assumption are valid from this standpoint. The results also suggest that noncoplanarity between the components of a binary system is not a significant issue in addressing the stability of planetary orbits within the system.
引用
收藏
页码:306 / 332
页数:27
相关论文
共 116 条
[1]   MULTIPLICITY AMONG SOLAR-TYPE STARS [J].
ABT, HA ;
LEVY, SG .
ASTROPHYSICAL JOURNAL SUPPLEMENT SERIES, 1976, 30 (03) :273-306
[2]  
Allen C.W., 1973, ASTROPHYSICAL QUANTI
[3]  
[Anonymous], 1976, OBSERVATION ANAL STE
[4]   DISCOVERY OF A SHELL AROUND ALPHA-LYRAE [J].
AUMANN, HH ;
GILLETT, FC ;
BEICHMAN, CA ;
DEJONG, T ;
HOUCK, JR ;
LOW, FJ ;
NEUGEBAUER, G ;
WALKER, RG ;
WESSELIUS, PR .
ASTROPHYSICAL JOURNAL, 1984, 278 (01) :L23-L27
[5]  
BAIZE P, 1987, ASTRON ASTROPHYS SUP, V71, P177
[6]  
BALIUNAS SL, 1990, COMMUNICATION
[7]   A STUDY OF SHORT-PERIOD RS CANUM VENATICORUM AND W URSAE MAJORIS BINARY-SYSTEMS - THE GLOBAL NATURE OF H-ALPHA [J].
BARDEN, SC .
ASTROPHYSICAL JOURNAL, 1985, 295 (01) :162-170
[8]   STELLAR ANGULAR DIAMETERS AND VISUAL SURFACE BRIGHTNESS .1. LATE SPECTRAL TYPES [J].
BARNES, TG ;
EVANS, DS .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 1976, 174 (03) :489-502
[9]   STELLAR ANGULAR DIAMETERS AND VISUAL SURFACE BRIGHTNESS .3. IMPROVED DEFINITION OF RELATIONSHIP [J].
BARNES, TG ;
EVANS, DS ;
MOFFETT, TJ .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 1978, 183 (02) :285-304
[10]   CHROMOSPHERIC ACTIVITY AND AGES OF SOLAR-TYPE STARS [J].
BARRY, DC ;
CROMWELL, RH ;
HEGE, EK .
ASTROPHYSICAL JOURNAL, 1987, 315 (01) :264-272