加藤賢一データセンター


大阪市立科学館研究報告 6, 1-40 (1996)


恒星の有効温度カタログ(CASTET)


−予備報告−



カタログ(Table 3) は html ファイルで2.3MBと大きいので、別ファイルとして納めています。The final list of effective temperatures is available in another form. Please beware its file size (2.3MB, fairly large)!

 ● 画面上で眺める時はこちらをどうぞ(大きなファイルですので要注意。2.3MBあります)。Click here to see the temperature catalogue on the screen. Beware its file size!

 ■ ダウンロードする時はこちらをクリックして下さい。36KB あります(おすすめ)。 Click here to download the temperature catalogue (Recommended). Its compressed file size is 36KB.

 

採録されている星の一覧表と文献一覧表はこの画面の下にあります。


概 要

 恒星の有効温度を文献上から収集し,1231星,2335デ−タを納めたカタログCASTETを作成した.
 恒星を特徴づける基本的物理量として大事なのは,有効温度,表面の重力加速度,および元素の組成比である.なかでも有効温度は恒星全体から放射される輻射の総量を決めるパラメータとして最も重要な量と言うことができる.
 恒星からの放射を黒体放射と見なすと,地球表面で観測される全放射量 f は

f = θ^2σ(Teff)^4/4,

と書くことができる.ここで,θ は恒星の視直径,σ はステファン・ボルツマン定数,そしてTeff が有効温度である.全波長範囲に及ぶ恒星からの放射量を積分した値 f を求めるには地上における可視光の観測に加え,人工衛星等を用いて紫外線や赤外線領域の放射を測定しなければならない.そして,干渉法や月による星食などを利用して視直径が得られれば有効温度を決定することができる.この方法を直接法と呼ぶ.
 恒星の視直径の観測は容易なことではなく,利用できるデータは限られている.そこで,モデル大気を用いて間接的に視直径を得ることができることを利用して,上記の式から有効温度を決定する方法が案出された.この方法を半直接法と呼ぶ.
 これら2つの方法は有効温度の定義に忠実な決定法であるが,半直接法でさえ実行は容易ではない.そこでさらに簡便な手法として,可視光や赤外部など限られた波長範囲内の放射分布とモデル放射を比較して有効温度を決定する方法があり,これを間接法を呼んでいる.
 このカタログには以上の3つの方法で得られた有効温度の値を集録している.
 さらに簡便に有効温度を決定するのにしばしば色指数(B-V や b-y など)が用いられる.色指数の観測は放射量の測定に比較すれば圧倒的に容易であるから,これが適用できるならば大変便利なことである.ただし,この場合は先に有効温度と色指数の関係を確立しておかなければならない.そのためには,色指数を用いることなく,何らかの方法で有効温度を決定しなければならないが,本カタログの有効温度は色指数とは無関係に求められたものであり,そのための材料とすることができるであろう.これがこのカタログを作成した目的の一つである.
 表2に本カタログのもとになった文献(発表年は1971年から1992年)をあげておいた.必ずしも系統的に収集したわけではなく,たまたま筆者の目に止まったものに限定されている.完璧を期したかったのであるが,現在の筆者にはその余裕がなく,増して最新のデータを集録することなどなおさらおぼつかなく,不完全であることを承知の上で,試験的な予備版として発表することにした.
 筆者はすでに本研究報告誌に恒星の有効温度に関する論考を発表しており(加藤・黒田 1992),有効温度の決定法等について触れているので,併せて参照していただければ幸いである.
 なお,データ収集については,大阪教育大学天文研究室の横尾武夫教授,定金晃三教授,京都大学理学部宇宙物理学教室,兵庫県立西はりま天文台黒田武彦台長にお世話になりました.特に大阪教育大学天文研究室には(まだ天王寺校舎の時代でしたが)文献調査に多大の便宜をはかっていただきました.また,種々の議論に応じていただいたことは感謝に耐えません.改めて御礼申し上げます.

参考文献
加藤賢一・黒田武彦 1992,大阪市立科学館研究報告 2,61


Publ. Sci. Mus. Osaka 6, 1-40 (1996)
 

Catalogue of Stellar Effective Temperatures(CASTET)
- A Preliminary Version-

Ken-ichi Kato
Science Museum of Osaka, 4-2-1 Nakanoshima, Kita-ku, Osaka 530
E-mail kato@sci-museum.kita.osaka.jp

Abstract

A catalogue of stellar effective temperatures, listing 2335 data files for 1231 stars collected from literatures, is given.
Key words: Effective temperature, Model parameters, Star catalogue.

1. Introduction
We have compiled a catalogue of effective temperatures of stars (CASTET), obtained from direct, semidirect, and indirect methods (in the meaning of Bohm-Vitense(1982)) by various authors. Effective temperatures determined empirically from color indices such as B-V, b-y, and others are not included.
In this paper we present 1) a description of the catalogue with the outline of the classification of methods for the determination of stellar effective temperatures; 2) references of the data; 3) data of the catalogue.

2. Classfication of the methods
The methods for the determination of stellar effective temperatures have been classified as direct, semidirect, and indirect by Bohm-Vitense (1982).
The direct method is based on the observation of stellar fluxes for all the wavelength range atop of the terrestrial atmosphere in combination with angular diameter measurements. The effective temperature Teff is directly determined following its definition:

f = θ^2σ(Teff)^4/4,

where f is the total stellar flux received at the Earth, θ is the angular diameter of the star, and σ is the Stefan-Boltzmann constant.
   The semidirect method is based on the measurement of total fluxes and the indirect determination of angular diameters with the help of model atmospheres. The studies of Underhill et al. (1979) and of Blackwell and co-workers(e.g., Blackwell and Shallis 1976; Blackwell et al. 1979, 1980) are classified as semidirect methods.
   The indirect method is based on the comparison of the measured stellar energy distributions at a limited wavelngth range with model stellar fluxes. In this study, Kuruczユs(1979) ATLAS6 model atmospheres are preferred as reference model fluxes.
   Table 1 gives a schematized summary of this classification with the corresponding code numbers adopted in this catalogue.


Table 1. Classification of the methods.
---------------------------------------------------------------------------------
Code                        Method
---------------------------------------------------------------------------------
 1   direct angular diamaters are determined from the interferometry or lunar occultation
 2   semidirect angular diamaters are indirectly determined from the infrared flux method or
     any other similar procedure.
 3   indirect comparison of the measured fluxes with those of models in combination with
     other methods such as Balmer line profile fitting or ionization balances of
     some chemical elements.
 4   indirect comparison of the measured fluxes with those of models.
---------------------------------------------------------------------------------

3. Literature
The CASTET lists 2335 data for 1232 stars. All the data are collected from the literature listed in table 2. The search was not systematic, being limited to some issues of some journals published from 1971 to 1992.

4. Arrangement
The CASTET lists the stars in the following order:

1  Name : The Bayer or Flamsteed designations or other identifications. Most of them are taken from the Bright Star Catalogue (Hoffleit 1982).
2  HD/BD : HD number. HDE or BD numbers are cited when HD number is impossible.
3  HR : HR numbers in the Bright Star Catalogue.
4  Spectrum : Spectral types. They are taken from the Bright Star Catalogue and supplemented by the catalogue of MK Spectral Classifications(Kennedy and Bascombe 1974; Buscombe 1977, 1980).
5  B-V : B-V index taken from from the Bright Star Catalogue, supplemented by the catalogue of MK Spectral Classifications(Kennedy and Bascombe 1974; Buscombe 1977, 1980).
6  Rot : Rotational velocity V sin i in km s-1. Most of them are taken from the Bright Star Catalogue.
7  Teff : Effective temperature of the star in Kelvin. Temperatures with lower accuracy are marked with a colon(:), and those of mean values for variables are indicated with an exclamation mark (!).
8  lg g : Logarithmic surface gravity represented in cgs unit.
9  lg R : Logarithmic stellar radius with repect to the Sun.
10  lg M : Logarithmic stellar mass with repect to the Sun.
11  M : Method of determination. The code numbers are shown in table 1.
12  Ref : The source of effective temperature, corresponding to first letters of two authors followed by a published year. 

All the sources are listed in table 2.

The author wishes to thank Professor Takeo Yokoo and Professor Kozo Sadakane, Astronomical Institute of Osaka Kyoiku University, and to the library of Department of Astronomy, Kyoto University, for providing him a chance to search literature. Thanks are also due to Takehiko Kuroda, Director of Nishiharima Astronomical Observatory, for his kind advise and continuous encouragement.

References
Blackwell D. E., Shallis M. J. 1976, MNRAS 180, 177
Blackwell D. E., Shallis M. J., Selby M. J. 1979, MNRAS 188, 847
Blackwell D. E., Petford A. D., Shallis M. J. 1980, A&A 82, 249
Bohm-Vitense E. 1982, Ann. Rev. Astron. Astrophys. 19, 295
Buscombe W. 1977, MK Spectral Classifications, 3rd General Catalogue, Northwestern University, Evanston
Buscombe W. 1980, MK Spectral Classifications, 4th General Catalogue, Northwestern University, Evanston
Hoffleit D. 1982, The Bright Star Catalogue, Fourth edition, Yale University Observatory, New Haven
Kennedy P. M., Buscombe W. 1974, MK Spectral Classifications, Northwestern University, Evanston
Kurucz R. L. 1979, ApJS 40, 1
Underhill A. B., Divan L. Prevot-Burnichon M. L., Doazan V. 1979, MNRAS 189, 601

Table 2. Coded bibliographic references.
--------------------------------------------------------------------

A77 Adelman S. J. 1977, MNRAS181, 667
A78 Adelman S. J. 1978, ApJ 222, 547
A80 Adelman S. J. 1980, A&A 86, 149
A811 Adelman S. J. 1981, A&AS 43, 25
A812 Adelman S. J. 1981, A&AS 43, 183
A813 Adelman S. J. 1981, A&AS 44, 265
A814 Adelman S. J. 1981, A&AS 44, 309
A82 Adelman S. J. 1982, A&AS 49, 663
A841 Adelman S. J. 1984, A&A 141, 362
A842 Adelman S. J. 1984, A&AS 58, 585
A86 Adelman S. J. 1986, A&AS 64, 173
A87 Adelman S. J. 1987, MNRAS 228, 573
A88 Adelman S. J. 1988, MNRAS 230, 671
AB87 Adelman S. J., Bolcal C., Kocer D., Inelmen E. 1987, PASP 99, 130
AC89 Arribas S., Crivellari L. 1989, A&A 210, 211
AH87 Adelman S. J., Hill G. 1987, MNRAS 226, 581
AM87 Arribas S., Martinez Roger C. 1987, A&A 178, 106
AM88 Arribas S., Martinez Roger C. 1988, A&A 206, 63
AM89 Arribas S., Martinez Roger C. 1989, A&A 215, 305
AN80 Adelman S. J., Nasson M. A. 1980, PASP 92, 346
AP791 Adelman S. J., Pyper D. M. 1979, AJ 84, 1603
AP792 Adelman S. J., Pyper D. M. 1979, AJ 84, 1726
AP80 Adelman S. J., Pyper D. M., White R. E. 1980, ApJS 43, 491
AP831 Adelman S. J., Pyper D. M. 1983, ApJ 266, 732
AP832 Adelman S. J., Pyper D. M. 1983, A&A 118, 313
AP85 Adelman S. J., Pyper D. M. 1985, A&AS 62, 279
AT80 Augason G. C., Taylor B. J., Strecker D. W., Erickson E. F., Witteborn F. C.1980, ApJ 235, 138
AW80 Adelman S. J., White R. E. 1980, A&AS 42, 289
AY84 Adelman S. J., Young J. M., Baldwin H. E. 1984, M. N. 206, 649
B77 Beeckmans F. 1977, A&A 60, 1
B80 Bohm-Vitense E. 1980, ApJ 243, 213
BB82 Balega Y., Blazit A., Bonneau D., Koechlin L., Foy R., Lebeyrie A. 1982, A&A 115, 253
BB86 Blackwell D. E., Booth A. J., Petford A. D., Leggett S. K., MountainC. M., Selby M. J. 1986, MNRAS 221, 427
BF86 Di Benedetto G. P., Foy R. 1986, A&A 166, 204
BG89 Bell R. A., Gustafsson B. 1989, MNRAS 236, 653
BK82 Baschek B., Kudritzki R. P., Scholz M., Simon K. P. 1982, A&A 108, 387
BM74 Beeckmans F., Macau D., Malaise D. 1974, A&A 33, 93
BM79 Brune W. H., Mount G. H., Feldman P. D. 1979, ApJ 227, 884
BP80 Blackwell D. E., Petford A. D., Shaliis M. J. 1980, A&A 82, 249
BS77 Blackwell D. E., Shallis M. J. 1977, MNRAS 180, 177
BS79 Blackwell D. E., Shallis M. J., Selby M. J. 1979, MNRAS 188, 847
C89 Cugier H. 1989, A&A 214, 168
CD76 Code A. D., Davis J., Bless R. C., Hanbury Brown R. 1976, ApJ 203, 417
DP85 Dobias J. J., Plavec M. J.1985, PASP 97, 138
DS84 Drilling J. S., Schonberner D., Heber U., Lynas-Gray A. E. 1984, ApJ 278, 224
FB82 Frisk U., Bell R. A., Gustafsson B., North H. L., Olofsson S. G. 1982, M. N. 199, 471
FB83 Faucherre M., Bonneau D., Koechlin L., Vakili F. 1983, A&A 120, 263
FL89 Fernley J. A., Lynas-Gray A. E., Skillen I., Jameson R. F., Marang F., Kilkenney D., Longmore A. J. 1989, MNRAS 226, 447
FS89 Fernley J. A., Skillen I., Jameson R. F. 1989, MNRAS 237, 947
G83 Glushneva I. N. 1983, Astron. Zh. 60, 560
G84 Goraya P. S. 1984, A&A 138, 19
G85 Glushneva I. N. 1985, Astron. Zh. 62, 1132
GB80 Gustafsson B., Bell R. A., Fredga K., Gahm G. F. 1980, A&A 89, 255
GL88 Gass H., Liebert J., Wehrse R. 1988, A&A 189, 194
HC77 Holm A. V., Cassinelli J. P. 1977, ApJ 211, 432
HH84 Heber U., Hunger K., Jonas G., Kudritzki R. P. 1984, A&A 130, 119
HW85 Holberg J. B., Wesemael F., Wegner G., Bruhweiler F. C. 1985, ApJ 293, 294
K89 Kaiser D. 1989, A&A 222, 187 append 96.2.
KB87 Kocer D., Bolcal C., Inelmen E., Adelman S. J. 1987 A&AS 70, 49
KK92 Kato K., Kuroda T. 1992, Publ. Sci. Mus. Osaka 2, 62
KS82 Kato K., Sadakane K. 1982, A&A 113, 135
KT80 Kontizas E., Theodossio E. 1980, MNRAS 192, 745
L71 Leckrone D. S. 1971, A&A 11, 387
L851 Lanz T. 1985, A&A 144, 191
L852 Leggett S. K. 1985, A&A 153, 273
LL84 Lane M. C., Lester J. B. 1984, ApJ 281, 723
LM86 Leggett S. K., Mountain C. M., Selby M. J., Blackwell D. E., Booth A. J., Haddock D. J., Petford A. D. 1986, A&A 159, 217
LS84 Lynas-Gray A. E., Schonberne D., Hill P. W., Heber U. 1984, MNRAS 209, 387
M85 Magain P. 1985, A&A 146, 95
M87 Magain P. 1987, A&A 181, 323
M88 Megessier C. 1988, A&AS 72, 551
MC84 Muthsam H., Cowley C. R. 1984, A&A 130, 348
MF82 Malagnini M. L., Faraggiana R., Morossi C., Crivellari L. 1982, A&A 114, 170
MF83 Malagnini M. L., Faraggiana R., Morossi C. 1983, A&A 128, 375
MH75 Mackle R., Holweger H., Griffin R., Griffin R. 1975, A&A 38, 239
MM851 Malagnini M. L., Morossi C., Rossi L., Kurucz R. L. 1985, A&A 152, 117
MM852 Morossi C., Malagnini M. L. 1985, A&AS 60, 365
MS80 Muthsam H., Stepien K. 1980, A&A 86, 240
NS75 Nandy K., Schmidt E. G. 1975, ApJ 198, 119
O74 Oinas V. 1974, ApJS 27, 391
P76 Peters G. J. 1976, ApJS 30, 551
PA83 Pyper D. M., Adelman S. J. 1983, A&AS 51, 365
PA85 Pyper D. M., Adelman S. J. 1985, A&AS 59, 369
PC79 Peterson R., Carney B. W. 1979, ApJ 231, 762
PW79 Pottasch S. R., Wesselius P. R., van Duinen R. J. 1979, A&A 77, 189
R86 Ruban E. V. 1986, Astrofizika 25, 89
RH80 Ruland F., Holweger H., Griffin R., Griffin R., Biehl D. 1980, A&A 92, 70
RJ80 Ridgway S. T., Joyce R. R., White N. M., Wing R. F. 1980, ApJ 235, 126
RL82 Remie H., Lamers H. J. G. L. M. 1982, A&A 105, 85
S85 Steffen M. 1985, A&AS 59, 403
SB79 Shallis M. J., Blackwell D. E. 1979, A&A 79, 48
SB85 Shallis M. J., Baruch J. E. F., Booth A. J., Selby M. J. 1985, MNRAS 213, 307
SD89 Stepien K., Dominiczak R. 1989, A&A 219, 197
SG82 Sion E. M., Guinan E. F. 1982, ApJ 255, 232
SH85 Saxner M., Hammarback G. 1985, A&A 151, 372
SM81 Stepien K., Muthsam H. 1981, A&A 100, 159
T78 Tsuji T. 1978, PASJ 30, 435
T81 Tsuji T. 1981, A&A 99, 48
T84 Takeda Y. 1984, ASJ 36, 149
T85 Theodossiou E. 1985, MNRAS 214, 327
TK84 Tobin W., Kaufmann J. P. 1984, MNRAS 207, 369
TN82 Thompson G. I., Nandy K., Morgan D. H., Willis A. J., Wilson R., Houziaux L. 1982, MNRAS 200, 551
TN88 Thompson G. I., Nandy K., Morgan D. H., Houziaux L. 1988, MNRAS 230, 429
U79 Underhill A. B. 1979, ApJ 234, 528
U80 Underhill A. B. 1980, ApJ 239, 220
U81 Underhill A. B. 1981, ApJ 244, 963
U82 Underhill A. B. 1982, ApJ 263, 741
UD79 Underhill A. B., Divan L., Prevot-Burnichon M. L., Doazan V. 1979, MNRAS 189, 601
WC88 Waters L. B. F. M., Cote J., Geballe T. R. 1988, A&A 203, 348
WL80 Wehrse R., Liebert J. 1980, A&A 83, 184
WS82 Wallerstein G., Sneden C. 1982, ApJ 255, 577
ZM87 Zochling J., Muthsam H. 1987, A&A 176, 75
--------------------------------------------------------------------

Table3. A List of Stars
Name HD/BD HR
α And 358 15
β Cas 432 21
6 Cet 693 33
γ Peg 886 39
χ Peg 1013 45
θ And 1280 63
σ And 1404 68
β Hyi 2151 98
κ Phe 2262 100
47 Psc 2411 103
2421 104
2453 --
β1 Tuc 2884 126
β2 Tuc 2885 127
κ Cas 2905 130
ζ Cas 3360 153
3567 --
54 Psc 3651 166
α Cas 3712 168
η Phe 4150 191
18 Cet 4307 203
η Cas 4614 219
δ Psc 4656 224
Azz 65 4976 ---
5015 244
5291 ---
μ And 5448 269
α Scl 5737 280
5797 --
WW Psc 5820 284
5996 --
μ Cas 6582 321
6755 --
80 Psc 6763 330
β And 6860 337
6870 --
ζ Phe 6882 338
θ Cas 6961 343
υ Psc 7964 383
7983 --
8441 --
δ Cas 8538 403
α UMi 8890 424
48 Cet 9132 433
μ Psc 9138 434
υ And 9826 458
51 And 9927 464
α Eri 10144 472
10307 483
ν Psc 10380 489
107 Psc 10476 493
φ Per 10516 496
τ Cet 10700 509
10780 511
10894 --
11257 534
ε Cas 11415 542
β Ari 11636 553
φ Phe 11753 558
υ Cet 12274 585
12288 --
α Hyi 12311 591
12479 601
γ1 And 12533 603
ν For 12767 612
α Ari 12929 617
58 And 13041 620
13043 --
β Tri 13161 622
13403 --
γ Tri 14055 664
φ Eri 14228 674
14262 676
63 And 14392 682
14947 --
δ Hyi 15008 705
ρ Cet 15130 708
ξ2 Cet 15318 718
κ Eri 15371 721
26 Ari 15550 729
15558 --
15570 --
15629 --
σ Cet 15798 740
16397 --
δ Cet 16582 779
16691 --
16754 789
θ Per 16895 799
35 Ari 16908 801
γ Cet 16970 804
ε Hyi 16978 806
π Cet 17081 811
μ Cet 17094 813
τ1 Eri 17206 818
39 Ari 17361 824
41 Ari 17573 838
16 Per 17584 840
σ Ari 17769 847
17820 --
17925 857
18078 --
ρ2 Ari 18191 867
21 Per 18296 873
18331 875
π Per 18411 879
θ1 Eri 18622 897
α Cet 18884 911
τ3 Eri 18978 919
19034 --
ρ Per 19058 921
19275 932
ι Per 19373 937
19445 --
X Ari 19510 --
19767 --
56 Ari 19832 954
19954 --
ζ Ari 20150 972
BK Cam 20336 985
29 Per 20365 987
31 Per 20418 989
20430 --
HY 2 20439 --
20619 --
κ1 Cet 20630 996
20727 --
e Eri 20794 1008
20797 1009
α Per 20902 1017
21278 1034
ξ Tau 21364 1038
34 Per 21428 1044
17 Eri 21790 1070
κ Ret 22001 1083
ε Eri 22049 1084
ψ Per 22192 1087
τ5 Eri 22203 1088
9 Tau 22374 --
10 Tau 22484 1101
22879 --
δ Per 22928 1122
23246 ---
δ Eri 23249 1136
23326 ---
γ Cam 23401 1148
20 Tau 23408 1149
29 Tau 23466 1153
23 Tau 23480 1156
η Tau 23630 1165
HZ 1993 23791 --
30 Tau 23793 1174
23863 --
24132 --
24155 1194
24167 1197
24341 --
HR 1201 24357 1201
ζ Per 24398 1203
24479 1204
ε Per 24760 1220
ξ Per 24912 1228
γ Eri 25025 1231
τ9 Eri 25267 1240
25329 ---
ν Tau 25490 1251
40 Tau 25558 1253
41 Tau 25823 1268
48 Per 25940 1273
44 Tau 26322 1287
45 Tau 26462 1292
26710 ---
26764 1314
HY 19 26784 ---
48 Tau 26911 1319
μ Tau 26912 1320
ο2 Eri 26965 1325
51 Tau 27176 1331
27282 --
53 Tau 27295 1339
56 Tau 27309 1341
γ Tau 27371 1346
41 Eri 27376 1347
53 Per 27396 1350
57 Tau 27397 1351
27429 1354
58 Tau 27459 1356
HY 35 27524 --
60 Tau 27628 1368
63 Tau 27749 1376
δ2 Tau 27819 1380
HY 50 27836 --
27901 1385
κ1 Tau 27934 1387
δ3 Tau 27962 1389
υ Tau 28024 1392
28291 --
76 Tau 28294 1408
ε Tau 28305 1409
θ1 Tau 28307 1411
θ2 Tau 28319 1412
28497 1423
28527 1427
81 Tau 28546 1428
DZ Eri 28843 1441
δ Cae 28873 1443
ρ Tau 28910 1444
28992 --
29051 --
α Tau 29139 1457
88 Tau 29140 1458
ν Eri 29248 1463
υ2 Eri 29291 1464
α Dor 29305 1465
90 Tau 29388 1473
29587 --
59 Per 29722 1494
56 Eri 30076 1508
μ Eri 30211 1520
α Cam 30614 1542
30649 ---
π3 Ori 30652 1543
π2 Ori 30739 1544
π4 Ori 30836 1552
π5 Ori 31237 1567
π1 Ori 31295 1570
32147 1614
ψ Eri 32249 1617
32309 1621
11 Ori 32549 1638
32608 1639
η Aur 32630 1641
32633 --
32650 1643
ε Lep 32887 1654
104 Tau 32923 1656
β Eri 33111 1666
15 Ori 33276 1676
λ Eri 33328 1679
ι Lep 33802 1696
μ Lep 33904 1702
33948 1704
14 Aur 33959 1706
34078 1712
β Ori 34085 1713
16 Aur 34334 1726
λ Aur 34411 1729
34452 1732
τ Ori 34503 1735
ρ Aur 34759 1749
λ Lep 34816 1756
ψ1 Ori 35439 1789
γ Ori 35468 1790
β Tau 35497 1791
114 Tau 35708 1810
ψ2 Ori 35715 1811
35956 --
32 Ori 36267 1839
36395 --
δ Ori A 36486 1852
υ Ori 36512 1855
36591 1861
36760 --
38 Ori 36777 1872
36779 1873
121 Tau 36819 1875
φ1 Ori 36822 1876
36842 --
λ Ori A 36861 1879
36865 --
36895 --
36935 --
36936 --
36981 --
37016 1891
V1406 Ori 37017 1890
ι Ori 37043 1899
37061 --
37112 --
ε Ori 37128 1903
37129 --
φ2 Ori 37160 1907
ζ Tau 37202 1910
37209 1911
37356 1923
σ Ori 37468 1931
37470 --
σ Ori E 37479 1932
ω Ori 37490 1934
49 Ori 37507 1937
ζ Ori A 37742 1948
37744 1950
37776 --
α Col 37795 1956
37808 1957
ο Aur 38104 1971
γ Lep 38393 1983
129 Tau 38478 1985
τ Aur 38656 1995
ζ Lep 38678 1998
κ Ori 38771 2004
134 Tau 38899 2010
ν Aur 39003 2012
δ Dor 39014 2015
39045 2018
β Pic 39060 2020
ξ Aur 39283 2029
137 Tau 39317 2033
β Col 39425 2040
χ1 Ori 39587 2047
α Ori 39801 2061
δ Aur 40035 2077
139 Tau 40111 2084
η Lep 40136 2085
40259 ---
θ Aur 40312 2095
36 Aur 40394 2101
γ Col 40494 2106
1 Mon 40535 2107
μ Ori 40932 2124
3 Mon 40967 2128
64 Ori 41040 2130
χ2 Ori 41117 2135
41335 2142
41692 2154
θ Lep 41695 2155
ν Ori 41753 2159
42088 --
69 Ori 42545 2198
ξ Ori 42560 2199
42818 2209
2 Lyn 43378 2238
43445 2244
43819 2258
ζ CMa 44402 2282
44458 2284
μ Gem 44478 2286
β CMa 44743 2294
ε Mon A 44769 2298
45282 ---
α Car 45348 2326
45391 --
ν Gem 45542 2343
10 Mon 45546 2344
λ CMa 45813 2361
46150 --
46223 --
ξ1 CMa 46328 2387
γ Gem 47105 2421
53 Aur 47152 2425
ν Pup 47670 2451
15 Mon 47839 2456
48099 2467
12 Lyn 48250 2470
α CMa 48915 2491
10 CMa 48917 2492
κ CMa 50013 2538
θ Gem 50019 2540
50169 --
α Pic 50241 2550
15 CMa 50707 2571
θ CMa 50778 2574
50896 2583
16 Lyn 50973 2585
ι CMa 51309 2596
51418 --
ε CMa 52089 2618
52711 2643
19 Mon 52918 2648
ο2 CMa 53138 2653
γ CMa 53244 2657
53974 2678
54309 2690
δ CMa 54605 2693
55575 2721
27 CMa 56014 2745
ω CMa 56139 2749
56169 2751
λ Gem 56537 2763
π Pup 56855 2773
δ Gem 56986 2777
UW UMa 57060 2781
τ CMa 57061 2782
v1 Pup 57150 2787
57608 2801
57682 2806
57821 2812
21 Lyn 58142 2818
58343 2825
η CMa 58350 2827
58551 2835
β CMi 58715 2845
ρ Gem 58946 2852
58978 2855
64 Gem 59037 2857
60606 2911
74 Gem 61338 2938
α CMi 61421 2943
49 Cam 62140 2977
β Gem 62509 2990
62712 3001
11 CMi 62832 3008
63462 3034
63922 3055
64090 ---
φ Gem 64145 3067
64486 3082
64488 ---
64606 ---
64760 3090
1 Cnc 64960 3095
53 Cam 65339 3109
χ Car 65575 3117
65583 --
65869 --
66137 --
66194 3147
8 Cnc 66664 3163
ζ Pup 66811 3165
27 Lyn 67006 3173
16 Pup 67797 3192
68017 ---
γ2 Vel 68273 3207
15 Cnc 68351 3215
68980 3237
β Cnc 69267 3249
λ Cnc 70011 3268
30 Mon 71155 3314
ο UMa 71369 3323
71906 3348
π1 UMa 72905 3391
3 Hya 72968 3398
73161 --
δ Hya 73262 3410
73390 3415
73430 --
73450 --
73746 --
73854 --
73937 --
73952 3435
74000 --
74028 --
74071 3440
74146 3442
γ Cnc 74198 3449
74275 --
η Hya 74280 3454
74516 --
49 Cnc 74521 3465
74560 3467
α Pyx 74575 3468
74988 3486
75156 --
75311 3498
14 Hya 75333 3500
ρ1 Cnc 75732 3522
75811 3526
76151 3538
ι UMa 76644 3569
76728 3571
κ UMa 77327 3594
ν Cnc 77350 3595
κ Cnc 78316 3623
τ UMa 78362 3624
π1 Cnc 79096 3650
36 Lyn 79158 3652
79351 3659
θ Hya 79469 3665
β Car 80007 3685
80218 --
80718 --
θ Pyx 80874 3718
KU Hya 81009 3724
κ Vel 81188 3734
α Hya 81797 3748
23 UMa 81937 3757
24 UMa 82210 3771
θ UMa 82328 3775
6 Leo 82381 3779
26 UMa 82621 3799
11 LMi 82885 3815
κ Hya 83754 3849
83953 3858
ζ Cha 83979 3860
ε Leo 84441 3873
84737 3881
84816 3886
84937 --
υ UMa 84999 3888
μ Leo 85503 3905
85980 3925
π Leo 86663 3950
87140 --
21 LMi 87696 3974
η Leo 87737 3975
31 Leo 87837 3980
α Sex 87887 3981
α Leo 87901 3982
88206 3990
88661 4009
88725 --
88955 4023
λ UMa 89021 4033
ζ Leo 89025 4031
89069 --
40 Leo 89449 4054
89822 4072
30 LMi 90277 4090
μ Hya 90432 4094
90508 4098
90589 4102
36 UMa 90839 4112
β Sex 90994 4119
46 Leo 91232 4127
ρ Leo 91316 4133
PP Car 91465 4140
37 UMa 91480 4141
92664 4185
92740 4188
92783 --
TX UMa 93033 --
HD93128A 93128 --
HD93129A 93129 --
93131 --
93194 4205
93204 --
93205 --
93250 --
93403 --
93540 4219
93549 4220
93607 4222
93738 --
93843 --
94028 --
46 LMi 94264 4247
94367 4250
56 Leo 94705 4267
95241 4285
β UMa 95418 4295
60 Leo 95608 4300
α UMa 95689 4301
96548 --
96715 --
ψ UMa 96833 4335
β Crt 97277 4343
97484 --
δ Leo 97603 4357
θ Leo 97633 4359
97916 --
97991 --
φ Leo 98058 4368
ξ UMa 98231 4375
ν UMa 98262 4377
ι Leo 99028 4399
99264 4406
83 Leo 99491 4414
99556 4415
87 Leo 99998 4432
λ Cen 100841 4467
θ Crt 100889 4468
υ Leo 100920 4471
101227 --
61 UMa 101501 4496
62 UMa 101606 4501
ν Vir 102212 4517
χ UMa 102224 4518
λ Mus 102249 4520
β Leo 102647 4534
β Vir 102870 4540
CF UMa 103095 4550
γ UMa 103287 4554
95 Leo 103578 4564
103884 4573
104304 4587
104556 --
δ Cen 105435 4621
ε Crv 105707 4630
3 Crv 105850 4635
ρ Cen 105937 4638
δ Cru 106490 4656
106516 4657
δ UMa 106591 4660
γ Crv 106625 4662
106691 --
106946 --
107131 4684
η Vir 107259 4689
107326 4694
107513 --
4 CVn 107904 4715
13 Com 107966 4717
108177 --
γ Com 108381 4737
17 Com 108662 4752
108754 --
21 Com 108945 4766
γ Mus 109026 4773
β CVn 109358 4785
κ Dra 109387 4787
α Mus 109668 4798
τ Cen 109787 4802
109995 --
AX CVn 110066 4816
10 CVn 110897 4845
110956 4848
β Cru 111123 4853
EP Vir 111133 4854
HR 4874 111597 4874
111631 --
111721 --
31 Com 111812 4883
111980 --
λ Cru 112078 4897
μ1 Cru 112092 4898
112127 --
ψ Vir 112142 4902
ε UMa 112185 4905
δ Vir 112300 4910
α2 CVn 112413 4915
78 UMa 113139 4931
ε Vir 113226 4932
113703 4940
14 CVn 113797 4943
θ Vir 114330 4963
β Com 114710 4983
114762 --
DK Vir 115308 5005
20 CVn 115604 5017
115823 5026
ι Cen 115892 5028
ζ UMa A 116656 5054
α Vir 116658 5056
80 UMa 116842 5062
70 Vir 117176 5072
78 Vir 118022 5105
118100 --
BH CVn 118216 5110
24 CVn 118232 5112
118659 --
ε Cen 118716 5132
82 Vir 119149 5150
CQ UMa 119213 5153
83 UMa 119228 5154
119765 5169
τ Boo 120136 5185
84 UMa 120198 5187
ν Cen 120307 5190
η UMa 120315 5191
η Boo 121370 5235
φ Cen 121743 5248
τ Vir 122408 5264
122563 5270
χ Cen 122980 5285
π Hya 123123 5287
α Dra 123299 5291
123335 5292
BY Boo 123657 5299
123710 --
ET Vir 123934 5301
CU Vir 124224 5313
κ Vir 124294 5315
124448 --
κ2 Boo 124675 5329
124683 5332
ι Vir 124850 5338
α Boo 124897 5340
ι Boo 125161 5350
CS Vir 125248 5355
λ Vir 125337 5359
V761 Cen 125823 5378
125924 --
τ2 Lup 126354 5396
θ Boo 126660 5404
127304 5422
ρ Boo 127665 5429
γ Boo 127762 5435
σ Boo 128167 5447
μ Vir 129502 5487
109 Vir 130109 5511
α2 Lib 130841 5531
ξ Boo 131156 5544
β UMi 131873 5563
16 Lib 132052 5570
β Lup 132058 5571
132142 --
κ Cen 132200 5576
18 Lib 132345 5582
132475 --
δ Lib 132742 5586
RR UMi 132813 5589
BX Boo 133029 5597
β Boo 133208 5602
ν Lib 133774 5622
133880 5624
133937 5625
λ Lup 133955 5626
45 Boo 134083 5634
134439 --
134440 --
β Cir 135379 5670
γ TrA 135382 5671
χ Boo 135502 5676
δ Boo 135722 5681
β Lib 135742 5685
U CrB 136175 --
δ Lup 136298 5695
ε Lup 136504 5708
8 Ser 137006 5721
μ1 Boo 137391 5733
137569 --
β CrB 137909 5747
33 Lib 137949 --
37 Lib 138716 5777
θ CrB 138749 5778
α CrB 139006 5793
τ Lib 139365 5812
42 Lib 139663 5824
θ UMi 139669 5826
χ Ser 140160 5843
140283 --
γ CrB 140436 5849
α Ser 140573 5854
λ Ser 141004 5868
141653 5886
λ Lib 142096 5902
ζ UMi 142105 5903
θ Lib 142198 5908
39 Ser 142267 5911
3 Sco 142301 5912
χ Her 142373 5914
ξ1 Lup 142629 5925
ρ Sco 142669 5928
2 Her 142780 5932
γ Ser 142860 5933
142883 5934
48 Lib 142983 5941
ε CrB 143107 5947
η Lup 143118 5948
δ Sco 143275 5953
CL Dra 143466 5960
143584 5964
143699 5967
ι CrB 143807 5971
144061 --
ξ Sco B 144069 5977
ξ Sco A 144070 5978
υ Her 144206 5982
θ Dra 144284 5986
144334 5988
ω1 Sco 144470 5993
144515 --
144579 --
144661 5998
φ Her 145389 6023
ψ Sco 145570 6031
145958 --
δ Oph 146051 6056
ε Oph 146791 6075
σ Sco 147165 6084
τ Her 147394 6092
σ Ser 147449 6093
γ Her 147547 6095
147550 6096
ω Her 148112 6117
χ Oph 148184 6118
148330 6127
148703 6143
30 Her 148783 6146
148816 --
λ Oph 148857 6149
μ Nor 149038 6155
15 Dra 149212 6161
149382 --
149414 --
τ Sco 149438 6165
149499 --
12 Oph 149661 6171
ζ Oph 149757 6175
V773 Her 149822 6176
149881 --
ζ Her 150680 6212
150898 6219
η Her 150997 6220
45 Her 151525 6234
20 Oph 151769 6243
151804 6245
μ1 Sco 151890 6247
V919 Sco 151932 6249
μ2 Sco 151985 6252
21 Oph 152127 6255
ζ1 Sco 152236 6262
152723 --
κ Oph 153210 6299
60 Her 154494 6355
η Oph 155125 6378
ζ Dra 155763 6396
α Her A 156014 6406
δ Her 156164 6410
π Her 156283 6418
68 Her 156633 6431
69 Her 156729 6436
ν Ser 156928 6446
θ Oph 157056 6453
157089 --
γ Ara 157246 6462
157950 6493
σ Oph 157999 6498
δ Ara 158094 6500
υ Sco 158408 6508
α Ara 158427 6510
158614 6516
51 Oph 158643 6519
158809 --
λ Sco 158926 6527
β Dra 159181 6536
159358 6544
α Oph 159561 6556
ξ Ser 159876 6561
μ Oph 159975 6567
κ Sco 160578 6580
160641 --
160693 --
ι Her 160762 6588
β Oph 161096 6603
μ Her 161797 6623
161817 --
γ Oph 161868 6629
162374 6647
162515 6652
30 Dra 162579 6656
HR 6657 162586 6657
162679 --
V906 Sco 162724 6662
162780 --
ν Oph 163917 6698
OP Her 163990 6702
γ Dra 164058 6705
ζ Ser 164259 6710
66 Oph 164284 6712
68 Oph 164577 6723
9 Sgr 164794 6736
96 Her 164852 6738
θ Ara 165024 6743
V986 Oph 165174 6747
165401 --
165475 6758
165763 --
72 Oph 165777 6771
165955 --
ο Her 166014 6779
102 Her 166182 6787
δ UMi 166205 6789
166620 6806
μ Sgr 166937 6812
15 Sgr 167264 6822
167756 6839
168076 --
168112 --
168476 --
V4028 Sgr 168574 6861
η Ser 168723 6869
V4050 Sgr 168733 6870
168797 6873
ε Sgr 169022 6879
38 Dra 169027 --
169454 --
α Tel 169467 6897
μ Lyr 169702 6903
λ Sgr 169916 6913
39 Dra 170073 6923
χ Dra 170153 6927
γ Sct 170296 6930
δ1 Tel 170465 6934
170973 6958
45 Dra 171635 6978
172044 6997
α Lyr 172167 7001
XY Lyr 172380 7009
HR 7012 172555 7012
V3879 Sgr 172816 7023
172910 7029
φ Sgr 173300 7039
4 Aql 173370 7040
110 Her 173667 7061
β Sct 173764 7063
111 Her 173880 7069
λ Pav 173948 7074
174262 7086
112 Her 174933 7113
σ Sgr 175191 7121
V686 Cra 175362 7129
θ1 Ser 175638 7141
175744 7147
ξ2 Sgr 175775 7150
R Lyr 175865 7157
176124 --
10 Aql 176232 7167
γ Lyr 176437 7178
ζ Sgr 176687 7194
176871 7202
14 Aql 176984 7209
177003 7210
ζ Aql 177724 7235
λ Aql 177756 7236
β CrA 178253 7254
ι Lyr 178475 7262
π Sgr 178524 7264
19 Lyr 179527 7283
21 Aql 179761 7287
η Lyr 180163 7298
1 Vul 180554 7306
δ Dra 180711 7310
θ Lyr 180809 7314
RS Vul 180939 --
U Sge 181182 7326
28 Aql 181333 7331
ρ1 Sgr 181577 7340
182488 7368
π Dra 182564 7371
2 Cyg 182568 7372
31 Aql 182572 7373
δ Aql 182640 7377
4 Cyg 183056 7395
183362 7403
ι2 Cyg 184006 7420
8 Cyg 184171 7426
184266 --
μ Aql 184406 7429
184499 --
9 Vul 184606 7437
184905 --
κ Aql 184915 7446
ι Aql 184930 7447
σ Dra 185144 7462
θ Cyg 185395 7469
α Sge 185758 7479
185780 --
14 Cyg 185872 7483
16 Cyg A 186408 7503
16 Cyg B 186427 7504
γ Aql 186791 7525
δ Cyg 186882 7528
ζ Sge 187362 7546
V1339 Aql 187567 7554
α Aql 187642 7557
12 Vul 187811 7565
η Aql 187929 7570
9 Sge 188001 7574
188209 7589
13 Vul 188260 7592
58 Aql 188350 7596
188510 --
β Aql 188512 7602
S Sge 188727 7609
φ Aql 188728 7610
22 Cyg 188892 7613
η Cyg 188947 7615
θ1 Sgr 189103 7623
25 Cyg 189687 7647
15 Vul 189849 7653
190603 7678
17 Vul 190993 7688
28 Cyg 191610 7708
θ Aql 191692 7710
191742 --
191765 --
192103 --
192163 --
192281 --
ρ Aql 192425 7724
29 Cyg 192640 7736
V1372 Cyg 192678 --
192685 7739
33 Cyg 192696 7740
κ Cep 192907 7750
192913 --
P Cyg 193237 7763
193322 7767
ν Cap 193432 7773
β Cap 193495 7776
κ1 Sgr 193571 7779
193682 --
α Pav 193924 7790
γ Cyg 194093 7796
39 Cyg 194317 7806
194335 7807
194598 --
ρ Cap 194943 7822
ω1 Cyg 195556 7844
195633 --
θ Cep 195725 7850
ε Del 195810 7852
η Del 195943 7858
196178 7870
ζ Del 196180 7871
β Del 196524 7882
29 Vul 196724 7891
υ Cap 196777 7900
α Del 196867 7906
β Pav 197051 7913
197076 7914
α Cyg 197345 7924
V568 Cyg 197419 7927
X Cyg 197572 7932
ψ Cap 197692 7936
ε Aqr 198001 7950
η Cep 198149 7957
55 Cyg 198478 7977
5 Aqr 198667 7985
T Vul 198726 7988
198820 7996
199476 --
199802 --
59 Cyg 200120 8047
η Cap 200499 8060
200527 8062
61 Cyg A 201091 8085
61 Cyg B 201092 8086
γ Equ 201601 8097
201889 --
201891 --
τ Cyg 202444 8130
ε Mic 202627 8135
υ Cyg 202904 8146
α Cep 203280 8162
6 Cep 203467 8171
β Equ 203562 8178
γ Pav 203608 8181
203803 8190
203842 8191
203925 8198
69 Cyg 204172 8209
70 Cyg 204403 8215
204411 8216
β Cep 205021 8238
72 Cyg 205512 8255
ξ Aqr 205767 8264
5 Peg 205852 8267
4 Peg 205924 8270
9 Cep 206165 8279
206267 8281
π1 Cyg 206672 8301
κ Peg 206901 8315
11 Cep 206952 8317
47 Cap 207005 8318
θ PsA 207155 8326
11 Peg 207203 8328
γ Gru 207971 8353
16 Peg 208057 8356
208906 --
20 Peg 209166 8392
ο Aqr 209409 8402
21 Peg 209459 8404
32 Aqr 209625 8410
ι Aqr 209819 8418
α Gru 209952 8425
ι Peg 210027 8430
λ Cep 210839 8469
θ Aqr 211391 8499
γ Aqr 212061 8518
2 Lac 212120 8523
π Aqr 212571 8539
4 Lac 212593 8541
212978 8553
δ Cep 213306 8571
σ Aqr 213320 8573
6 Lac 213420 8579
α Lac 213558 8585
η Aqr 213998 8597
214279 8607
10 Lac 214680 8622
30 Cep 214734 8627
ε PsA 214748 8628
ζ Peg 214923 8634
ο Peg 214994 8641
215191 8651
ε Gru 215789 8675
216048 8681
216057 8682
μ Peg 216131 8684
ι Cep 216228 8694
λ Aqr 216386 8698
216533 --
δ Aqr 216627 8709
ρ Peg 216735 8717
216777 --
α PsA 216956 8728
ο And 217675 8762
2 And 217782 8766
β Psc 217891 8773
β Peg 217906 8775
217926 8776
α Peg 218045 8781
218209 --
1 Cas 218376 8797
218396 8799
7 And 219080 8830
219134 8832
φ Aqr 219215 8834
219487 8845
γ Tuc 219571 8848
219617 --
ψ2 Aqr 219688 8858
219927 8873
65 Peg 220318 8891
υ Peg 220657 8905
κ Psc 220825 8911
CG Tuc 221006 8919
221148 8924
ι Phe 221760 8949
16 Psc 221950 8954
222095 8959
ι And 222173 8965
κ And 222439 8976
λ Psc 222603 8984
222670 8989
δ Scl 223352 9016
108 Aqr 223640 9031
XZ Psc 224062 9047
ε Tuc 224686 9076
85 Peg 224930 9088
ζ Scl 224990 9091
225239 9107
242908 --
HDE 303308 --
vA 156 Hyades
vA 384 Hyades
vA 400 Hyades
vA 459 Hyades
vA 495 Hyades
vA 547 Hyades
Azz 151
Azz 18
Azz 215
Azz 235
Azz 242
Azz 264
Azz 289
Azz 362
Azz 373
Azz 393
Azz 398
Azz 456
Azz 488
Azz 56
Azz 78
BD +10゚2179
BD +17゚4708
BD +20゚2161
BD +20゚3876
BD +34゚2476
BD +42゚2667
BD +41゚3306
BD +54゚2761
BD +60゚2552
LS IV 2゚13 +1゚438
BD +4゚4674
BD -1゚306
BD -1゚3438
BD -9゚4395
CD-38゚10980 Gr 274
CPD-72 1184
Feige 15
G128-7
G77-61
H II 2195
H II 3031
H II 344
H II 530
LB 1559
LB 3241
LS II +33゚5(
LS II +33゚5(
LS IV -1゚2
LS IV 14゚109
LSE 78
LSS 3378
M3 155
M3 26
M3 311
M3 313
M3 33
M3 428
M3 444
M3 46
M3 464
M3 496
M3 525
M3 53
M3 557
M3 567
M3 586
M3 605
M3 617
M3 650
M3 659
M3 675
M3 68
MV Sgr
SB 290
SB 410
SB 459
SB 485
SB 707
SB 815
SK 191
SK-65 9
SK-65 11
SK-67 2
SK-67 110
SK-68 14
SK-68 107
SK-68 135
SK-68 140
SK-68 177
SK-69 68
SK-69 108
SK-69 213
SK-69 215
SK-69 228
SK-69 247
SK-69 253
SK-69 274
SK-69 274
SK-69 280
SK-70 32
SK-70 116
SK-71 17
V652 Her +13゚3224 ---