AstronomyAstronomers discover a new 'warm Jupiter'

Astronomers discover a new ‘warm Jupiter’

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Per-sector Normalized TESS PDCSAP gentle curves for TOI-4641. Credit score: arXiv (2023). DOI: 10.48550/arxiv.2312.03971

Astronomers from the Harvard–Smithsonian Heart for Astrophysics (CfA) and elsewhere, report the invention of a brand new ‘heat Jupiter’ exoplanet orbiting a quickly rotating F-type star. The newfound alien world, designated TOI-4641 b could possibly be almost 4 instances as large as Jupiter. The discovering was detailed in a paper published December 7 on the pre-print server arXiv.

Usually, heat Jupiters are fuel giant planets with orbital periods between 10 and 200 days. This makes them difficult targets for transit detection, and radial velocity follow-up research, in comparison with their shorter-orbit counterparts often known as scorching Jupiters.

Now, a bunch of astronomers led by CfA’s Allyson Bieryla has discovered a brand new exoplanet of this sort. Utilizing NASA’s Transiting Exoplanet Survey Satellite tv for pc (TESS), which is conducting an all-sky survey looking for transiting extrasolar worlds, they recognized a transit sign within the gentle curve of TOI-4641—a shiny and quickly rotating F-star (with a projected rotational velocity of roughly 86.3 km/s). The planetary nature of this sign was confirmed by follow-up photometric and spectroscopic observations.

“A candidate exoplanet orbiting TOI-4641 with a interval of twenty-two.1d was recognized in gentle curves together with information by way of Sector 43 in each SPOC and QLP pipelines,” the researchers wrote within the paper.

The newfound planet has a radius of about 0.73 Jupiter radii and its most mass was calculated to be 3.87 Jupiter lots. The observations point out that TOI-4641 b orbits its host star each 22.09 days at a well-aligned orbit, at a distance of some 0.173 AU from it. TOI-4641 b is due to this fact among the many longest interval planets, to be completely characterised, that orbits a scorching quickly rotating star.

The guardian star TOI-4641 (often known as TIC 436873727), situated some 286 light years away, has a radius of about 1.72 solar radii and is roughly 41% extra large than the sun. The star is estimated to be 2.69 billion years previous, has a metallicity at a degree of -0.09, and its efficient temperature was discovered to be 6,560 Ok.

The authors of the paper underlined that long-period exoplanets like TOI-4641 b could possibly be essential for testing mechanisms that induce primordial misalignment in planetary systems, provided that at such orbital distances, star-planet tidal interactions are assumed to be too weak to change the orbital obliquity.

“Testing these predictions encourage full characterizations of planets in long-period orbits about early-type stars,” the scientists concluded.

All in all, Bieryla’s staff proposes just a few mechanisms behind such misalignment, together with chaotic accretion, magnetic warping, or adjustments to the spin axes of early-type stars, in addition to stellar or planetary companions in the course of the primordial phase of formation.

Extra info:
Allyson Bieryla et al, TOI-4641b: An Aligned Heat Jupiter Orbiting a Vibrant (V=7.5) Quickly Rotating F-star, arXiv (2023). DOI: 10.48550/arxiv.2312.03971

Journal info:
arXiv


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Astronomers uncover a brand new ‘heat Jupiter’ (2023, December 15)
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