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HATS-11b

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Rabus, M.; Jordån, A.; Hartman, J. D.; Bakos, G. Á.; Espinoza, N.; Brahm, R.; Penev, K.; Ciceri, S.; Zhou, G.; Bayliss, D.; Mancini, L.; Bhatti, W.; de Val-Borro, M.; Csbury, Z.; Sato, B.; Tan, T.-G.; Henning, T.; Schmidt, B.; Bento, J.; Suc, V.; Noyes, R.; Låzår, J.; Papp, I.; Såri, P. (21 September
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survey, which aims to discover exoplanets using the transit method. Since 2009 (when the HATSouth project began), 61 exoplanets have been discovered, as of 10th Feb 2020. The mass of HATS-11b was found using the
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of around 6,060 K (5,790 Â°C). HATS-11 is roughly 7.7 billion years old and has an
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Stuhr, Andrew M.; Feigelson, Eric D.; Caceres, Gabriel A.; Hartman, Joel D. (15 July 2019).
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of around -3.09 , which is roughly one-thousandth the abundance of iron relative to the
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of around 3.6 Earth days and its temperature has been calculated to be 1,637 
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star which is about 2,955 light-years (906 parsecs) distant. This planet has an
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HATS-11b orbits around the star HATS-11. HATS-11 has a solar mass of 1
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HATS-11b has been described as similar to Jupiter and orbits a low
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star, of about medium heat. HATS-11 is very metal-poor; it has a
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It orbits the star HATS-11. 1: 1273:Exoplanets discovered in 2016 548:(X-ray observatory; Feb 2016) 1247:Category:2017 in outer space 1242:Category:2016 in outer space 1237:Category:2015 in outer space 1157:45P/Honda–Mrkos–PajduĆĄĂĄkovĂĄ 716:atmospheric composition of 1294: 937:2MASS J11193254–1137466 AB 358:10.3847/0004-6256/152/4/88 1215: 617:Asteroid close approaches 565: 552:ExoMars Trace Gas Orbiter 505: 150: 88:Orbital period (sidereal) 1058:WISE J080822.18-644357.3 554:(Mars orbiter; Mar 2016) 427:10.3847/1538-3881/ab26b3 396:The Astronomical Journal 327:The Astronomical Journal 108:Physical characteristics 1208:(Mars lander; Oct 2016) 58:Orbital characteristics 1227:Outer space portal 870:OGLE-2007-BLG-349(AB)b 190:radial velocity method 1268:Transiting exoplanets 1132:C/2016 R2 (PANSTARRS) 270:effective temperature 875:OGLE-2012-BLG-0950Lb 533:Space probe launches 232:orbital eccentricity 223:and a radius of 1.49 1195:(end of mission to 1152:43P/Wolf–Harrington 741:(retracted in 2022) 418:2019AJ....158...59S 349:2016AJ....152...88R 291:Lists of exoplanets 37:Discovery date 18: 1127:53P/Van Biesbroeck 880:Proxima Centauri b 671:469219 KamoÊ»oalewa 274:apparent magnitude 268:. The star has an 28:Discovered by 1255: 1254: 1166:Space exploration 154: 153: 1285: 1235: 1234: 1225: 1224: 1223: 1181:orbit; Jul 2016) 1110: 1054: 1051: 1049: 1048: 1039: 1036: 1034: 1033: 1029:(471325) 2011 KT 1014: 1011: 1009: 1008: 999: 976: 963: 942:2MASS J2126–8140 742: 705: 690: 688: 687: 683:(164121) 2003 YT 673: 666: 664: 663: 654: 652: 651: 642: 640: 639: 630: 628: 627: 583: 577: 571: 539: 522: 515: 494: 487: 480: 471: 464: 458: 452: 451:catalog HATS-11b 446: 440: 439: 429: 411: 387: 381: 380: 370: 360: 342: 317: 183:(HATNet) in the 47:Detection method 19: 1293: 1292: 1288: 1287: 1286: 1284: 1283: 1282: 1258: 1257: 1256: 1251: 1221: 1219: 1211: 1161: 1100: 1067: 1052: 1046: 1045: 1042: 1037: 1031: 1030: 1027: 1018:BOSS Great Wall 1012: 1006: 1005: 1002: 997: 985:SDSS J1240+6710 974: 961: 947: 740: 693: 685: 684: 681: 669: 661: 660: 657: 649: 648: 645: 637: 636: 633: 625: 624: 623:(85990) 1999 JV 621: 602: 584: 578: 572: 563: 527: 524: 518: 516: 511: 501: 498: 468: 467: 459: 455: 447: 443: 389: 388: 384: 319: 318: 309: 304: 282: 255: 252: 248: 245: 240: 230:. The planet's 229: 226: 222: 219: 198: 196:Characteristics 179:method, by the 177:primary transit 173: 136: 123: 117: 90: 68: 66:Semi-major axis 52:primary transit 49: 12: 11: 5: 1291: 1289: 1281: 1280: 1275: 1270: 1260: 1259: 1253: 1252: 1250: 1249: 1229: 1216: 1213: 1212: 1210: 1209: 1200: 1182: 1169: 1167: 1163: 1162: 1160: 1159: 1154: 1149: 1144: 1139: 1134: 1129: 1124: 1122:460P/PanSTARRS 1119: 1113: 1111: 1102: 1101: 1099: 1098: 1093: 1088: 1083: 1077: 1075: 1069: 1068: 1066: 1065: 1060: 1055: 1040: 1025: 1020: 1015: 1000: 992: 987: 982: 977: 975:(hypothesized) 969: 964: 955: 953: 949: 948: 946: 945: 939: 934: 929: 924: 923: 922: 917: 912: 902: 897: 892: 887: 882: 877: 872: 867: 862: 857: 852: 847: 842: 837: 832: 827: 822: 817: 816: 815: 810: 805: 800: 790: 785: 780: 779: 778: 773: 768: 763: 758: 748: 743: 735: 730: 725: 720: 714: 708: 706: 695: 694: 692: 691: 679: 674: 667: 655: 643: 631: 619: 613: 611: 604: 603: 601: 600: 594: 592: 586: 585: 566: 564: 562: 561: 555: 549: 542: 540: 529: 528: 526: 525: 517: 509: 506: 503: 502: 499: 497: 496: 489: 482: 474: 466: 465: 453: 441: 382: 306: 305: 303: 300: 299: 298: 293: 288: 286:HATNet Project 281: 278: 253: 250: 246: 243: 239: 236: 227: 224: 220: 217: 206:orbital period 197: 194: 172: 169: 152: 151: 148: 147: 144: 138: 137: 134: 131: 125: 124: 121: 118: 113: 110: 109: 105: 104: 101: 95: 94: 91: 86: 83: 82: 79: 73: 72: 69: 64: 61: 60: 54: 53: 50: 45: 42: 41: 38: 34: 33: 32:HATNet Project 30: 24: 23: 13: 10: 9: 6: 4: 3: 2: 1290: 1279: 1276: 1274: 1271: 1269: 1266: 1265: 1263: 1248: 1244: 1243: 1238: 1230: 1228: 1218: 1217: 1214: 1207: 1205: 1201: 1198: 1194: 1193: 1188: 1187: 1183: 1180: 1176: 1175: 1171: 1170: 1168: 1164: 1158: 1155: 1153: 1150: 1148: 1145: 1143: 1140: 1138: 1135: 1133: 1130: 1128: 1125: 1123: 1120: 1118: 1115: 1114: 1112: 1109: 1103: 1097: 1094: 1092: 1089: 1087: 1084: 1082: 1079: 1078: 1076: 1074: 1070: 1064: 1061: 1059: 1056: 1050: 1041: 1035: 1026: 1024: 1021: 1019: 1016: 1010: 1001: 996: 993: 991: 988: 986: 983: 981: 978: 973: 970: 968: 965: 960: 957: 956: 954: 950: 943: 940: 938: 935: 933: 930: 928: 925: 921: 918: 916: 913: 911: 908: 907: 906: 903: 901: 898: 896: 893: 891: 888: 886: 883: 881: 878: 876: 873: 871: 868: 866: 863: 861: 858: 856: 853: 851: 848: 846: 843: 841: 838: 836: 833: 831: 828: 826: 823: 821: 818: 814: 811: 809: 806: 804: 801: 799: 796: 795: 794: 791: 789: 786: 784: 781: 777: 774: 772: 769: 767: 764: 762: 759: 757: 754: 753: 752: 749: 747: 744: 739: 736: 734: 731: 729: 726: 724: 721: 719: 715: 713: 712:38 Virginis b 710: 709: 707: 704: 700: 696: 689: 680: 678: 675: 672: 668: 665: 656: 653: 644: 641: 632: 629: 620: 618: 615: 614: 612: 610: 605: 599: 596: 595: 593: 591: 590:Impact events 587: 582: 576: 570: 559: 556: 553: 550: 547: 544: 543: 541: 538: 534: 530: 521: 514: 508: 507: 504: 500:2016 in space 495: 490: 488: 483: 481: 476: 475: 472: 462: 457: 454: 450: 445: 442: 437: 433: 428: 423: 419: 415: 410: 405: 401: 397: 393: 386: 383: 378: 374: 369: 364: 359: 354: 350: 346: 341: 336: 332: 328: 324: 316: 314: 312: 308: 301: 297: 294: 292: 289: 287: 284: 283: 279: 277: 275: 271: 267: 263: 259: 237: 235: 233: 215: 211: 207: 203: 195: 193: 191: 186: 182: 178: 170: 168: 166: 162: 158: 149: 145: 143: 139: 132: 130: 126: 119: 116: 111: 106: 103:88.31 degrees 102: 100: 96: 92: 89: 84: 80: 78: 74: 70: 67: 62: 59: 55: 51: 48: 43: 39: 35: 31: 29: 25: 20: 1240: 1204:Schiaparelli 1203: 1190: 1184: 1172: 1147:144P/Kushida 932:V830 Tauri b 865:Kepler-1647b 860:Kepler-1638b 855:Kepler-1625b 850:Kepler-1520b 845:Kepler-1229b 738:HD 131399 Ab 728:Gliese 536 b 456: 444: 399: 395: 385: 330: 326: 241: 212:(1,364  199: 174: 156: 155: 77:Eccentricity 1199:; Sep 2016) 1117:252P/LINEAR 1096:ASASSN-16ma 1091:ASASSN-16kt 1081:ASASSN-15lh 1053:(announced) 1038:(announced) 1023:GRB 160625B 1013:(announced) 998:(announced) 972:Planet Nine 962:(announced) 952:Discoveries 927:TW Hydrae b 840:Kepler-737b 746:HD 164922 c 718:55 Cancri e 598:DN160822 03 463:Simbad data 368:1885/152012 262:metallicity 202:metallicity 142:Temperature 115:Mean radius 99:Inclination 1262:Categories 1086:SN 2016aps 905:TRAPPIST-1 835:Kepler-56d 830:Kepler-20g 733:HD 19467 b 723:BD+20 594b 699:Exoplanets 558:OSIRIS-REx 409:1905.03766 340:1603.02894 302:References 71:0.04614 AU 1197:comet 67P 1177:(entered 1142:9P/Tempel 967:IDCS 1426 944:as planet 751:HIP 41378 607:Selected 436:148574209 402:(2): 59. 333:(4): 88. 256:. It's a 171:Discovery 161:exoplanet 22:Discovery 1137:81P/Wild 995:GW151226 990:Crater 2 959:GW150914 900:Qatar-5b 895:Qatar-4b 890:Qatar-3b 885:Pr0211 c 825:KELT-11b 788:K2-332 b 523: Â» 377:44027206 280:See also 254:☉ 247:☉ 185:HATSouth 157:HATS-11b 17:HATS-11b 1186:Rosetta 1179:Jupiter 1105:Comets 1063:Virgo I 1044:2014 UZ 1004:2015 RR 820:KELT-9b 677:2016 PQ 659:2016 EU 647:2013 TX 635:1994 WR 510:«  414:Bibcode 345:Bibcode 321:2016). 258:type G0 165:Jupiter 1192:Philae 980:GN-z11 783:K2-33b 546:Hitomi 434:  375:  1073:Novae 793:K2-72 432:S2CID 404:arXiv 373:S2CID 335:arXiv 146:1637K 1174:Juno 609:NEOs 520:2017 513:2015 238:Star 133:0.85 129:Mass 120:1.51 93:~3.6 81:0.34 40:2016 1206:EDM 1047:224 1007:245 422:doi 400:158 363:hdl 353:doi 331:152 266:Sun 1264:: 1245:— 1239:— 1189:/ 1032:19 662:85 650:68 638:12 430:. 420:. 412:. 398:. 394:. 371:. 361:. 351:. 343:. 329:. 325:. 310:^ 214:°C 192:. 135:Mj 122:Rj 920:d 915:c 910:b 813:e 808:d 803:c 798:b 776:f 771:e 766:d 761:c 756:b 686:1 626:6 493:e 486:t 479:v 438:. 424:: 416:: 406:: 379:. 365:: 355:: 347:: 337:: 251:R 244:M 228:J 225:R 221:J 218:M 210:K

Index

Discovered by
Detection method
Orbital characteristics
Semi-major axis
Eccentricity
Orbital period (sidereal)
Inclination
Mean radius
Mass
Temperature
exoplanet
Jupiter
primary transit
Hungarian Automated Telescope Network
HATSouth
radial velocity method
metallicity
orbital period
K
°C
orbital eccentricity
type G0
metallicity
Sun
effective temperature
apparent magnitude
HATNet Project
Lists of exoplanets
Methods of detecting exoplanets

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