TOI-201 d
Lava WorldUninhabitable372 light years awayFound 2026
TOI-201 d, from the NASA Exoplanet Archive (found 2026). Measured: 5.8 Earth masses, 0.0698 AU, a 6423 K F-type star. Composition inferred from a measured bulk density of 2.16x Earth's, far too high for silicates alone — an iron-rich world, with a day locked to its 5.8-day year, as anything orbiting this close would be.
TOI-201
- Type
- F-type (White)
- Spectral type
- F
- Temperature
- 6,423 K
- Radius
- 1.31 ☉
- Mass
- 1.32 ☉
- Known planets
- 3, including this one
- Luminosity
- 2.61 ☉
Published by the NASA Exoplanet Archive. This world’s temperature and habitability score are computed from this star’s measured luminosity, not from a stand-in for its class.
Lava World
Extreme Activity
Why is this a Lava World?Your planet's proximity to its star (0.07 AU) results in extreme surface temperatures of 1337K.
Lava worlds orbit so close to their stars that rocky surfaces melt into oceans of molten rock. Recent planet formation can also create temporary lava worlds.
Classification Criteria:
✓ Temperature: 1337K (>1000K)
Habitability ScoreUninhabitable
Contributing Factors
temperature0
Inferno world - temperatures exceed all possibility of life
atmosphere10
No atmosphere - exposed to radiation and temperature extremes
water0
No water - the recipe has no hydrogen and oxygen to form it
magnetic Field30
No magnetic field - vulnerable to solar radiation
geology40
Extreme volcanic activity may be hazardous
Organic Chemistry20
Limited organic chemistry potential
rotation30
Very slow rotation - extreme temperature swings between eternal day and night sides
Physical Properties
Mass
5.80x Earth (3.46e+25 kg)Radius
1.80x Earth (11,447 km)Surface Gravity
1.80x Earth (17.6 m/s²)Surface Temperature
1,337 K (1,064 °C / 1,948 °F)Rotation Period
140.4 hours/day (slower than Earth)Orbital Environment
Star Type
F-type (White)Distance from Star
0.07 AU (10.4 million km)Orbital Period
6 daysTime Dilation
Clocks run 8.7 seconds per year slower than deep space — about 12 minutes over a lifetimeAtmosphere
Minimal - too hot to retain
Elemental Composition
Si - Silicon
36.6%
Fe - Iron
24.4%
Mg - Magnesium
12.2%



