Английская Википедия:HIP 65426 b
Шаблон:Short description Шаблон:Infobox planet
HIP 65426 b, formally named Najsakopajk,[1] is a super-Jupiter exoplanet orbiting the star HIP 65426. It was discovered on 6 July 2017 by the SPHERE consortium using the Spectro-Polarimetric High-Contrast Exoplanet Research (SPHERE) instrument belonging to the European Southern Observatory (ESO).[2][3] It is 385 light-years from Earth.[4] It is the first planet discovered by ESO's SPHERE instrument.[5]
Nomenclature
In August 2022, this planet and its host star were included among 20 systems to be named by the third NameExoWorlds project.[6] The approved names, proposed by a team from Mexico, were announced in June 2023. HIP 65426 b is named Najsakopajk and its host star is named Matza, after Zoque words for "Mother Earth" and "star".[1]
Overview
The exoplanet HIP 65426 b orbits its host star HIP 65426, an A2V star with apparent magnitude 7.01 and a mass of Шаблон:Val.[7] This planetary system is located in the constellation Centaurus. The planet is around 14 million years old. However, it is not associated with a debris disk, despite its young age,[3][4] causing it to not fit current models for planetary formation.[8] It is around 92 AU from its parent star, with a possible dusty atmosphere.[9] It was discovered as part of the SHINE program, which aimed to find planetary systems around 600 new stars.[10]
In September 2022, HIP 65426 b became the first exoplanet directly observed by the James Webb Space Telescope.[11]
Planetary atmosphere
The spectrum taken in 2020 has indicated that HIP 65426 b is carbon-poor and oxygen-rich compared to Solar System gas giants.[12]
Spectral analysis of data from the James Webb Space Telescope revealed strong evidence of silicate clouds containing enstatite with no evidence of a dusty atmosphere.[13]
James Webb Space Telescope observation
In August 2022, a pre-print of the James Webb Space Telescope (JWST) observations was published. The JWST direct imaging observations between 2-16 μm of HIP 65426 b tightly constrained its bolometric luminosity to <math>\log(L_{bol}/L_{sun})=-4.23\plusmn0.02</math>, which provides a robust mass constraint of 7.1±1.1 Шаблон:Jupiter mass. The atmospheric fitting of both temperature and radius are in disagreement with evolutionary models. The team also constrained the semi-major axis and the inclination of the planet, but the new JWST astrometry of the planet did not significantly improve the orbit of the planet, especially the eccentricity remains unconstrained.[14]
HIP 65426 b is the first exoplanet to be imaged by JWST and the first exoplanet to be detected beyond 5 μm. The observations[15] demonstrate that the James Webb Space Telescope will exceed its nominal predicted performance by a factor of 10 and that it will be able to image 0.3 Шаблон:Jupiter mass planets at 100 au for main-sequence stars, Neptune and Uranus-mass objects at 100-200 au for M-dwarfs and Saturn-mass objects at 10 au for M-dwarfs. For α Cen A JWST might be able to push the limit to a 5 Шаблон:Earth radius planet at 0.5 to 2.5 au.[14]
See also
References
- ↑ 1,0 1,1 Ошибка цитирования Неверный тег
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; для сносокNEW2022
не указан текст - ↑ Ошибка цитирования Неверный тег
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; для сносокIndependent
не указан текст - ↑ 3,0 3,1 Ошибка цитирования Неверный тег
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; для сносокscinews
не указан текст - ↑ 4,0 4,1 Ошибка цитирования Неверный тег
<ref>
; для сносокnasa
не указан текст - ↑ Шаблон:Cite web
- ↑ Шаблон:Cite web
- ↑ Шаблон:Cite EPE
- ↑ Шаблон:Cite web
- ↑ Шаблон:Cite web
- ↑ Ошибка цитирования Неверный тег
<ref>
; для сносокChauvin2017
не указан текст - ↑ Шаблон:Cite web
- ↑ Ошибка цитирования Неверный тег
<ref>
; для сносокPetrus2020
не указан текст - ↑ Шаблон:Cite journal
- ↑ 14,0 14,1 Ошибка цитирования Неверный тег
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; для сносокCarter et al
не указан текст - ↑ Шаблон:Cite web
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