Why is this a Exotic Terrestrial?Your planet builds its crust from exotic minerals (30.3% calcium/titanium/aluminum-family rock formers) instead of the silicate-iron recipe every standard rocky world uses.
Exotic terrestrials are temperate solid worlds whose geology skipped the silicate playbook - carbonate plains, titanium-gray mesas, alkali flats. They can hold air, water ingredients, and real habitability, but with no silicate continents or iron core they are their own class, not earth-likes.
Classification Criteria:
✓ Exotic rock formers: 30.3% (>=12% Ca/Ti/Al/K/Ni/U)✓ Standard rock: 12.8% (<15% - silicate rules never claimed it)✓ Temperature: 278K (240-380K temperate band)✓ Air + water ingredients: 44.1% O+H (>=15%) with an atmosphere
Habitability ScoreUninhabitable
13
Contributing Factors
water89
Abundant water (low gravity lets water escape to space)
geology90
Active geology recycles nutrients and drives carbon cycle
rotation10
Near tidally locked - one hemisphere perpetually scorched, other frozen, narrow habitable twilight zone only
Organic Chemistry20
Limited organic chemistry potential
atmosphere16
Atmosphere present but composition not ideal for life (partially stripped by slow rotation)
temperature100
Optimal temperature range for liquid water and life
magnetic Field30
No magnetic field - vulnerable to solar radiation — but the pulsar's beams bathe this orbit in hard X-rays
Physical Properties
Mass
0.60x Earth (3.58e+24 kg)
Radius
0.84x Earth (5,374 km)
Surface Gravity
0.84x Earth (8.3 m/s²)
Surface Temperature
278 K (5 °C / 41 °F)
Rotation Period
2,000.0 hours/day (slower than Earth)
Orbital Environment
Star Type
NS-type (Neutron Star)
Distance from Star
0.10 AU (15 million km)
Orbital Period
10 days
Time Dilation
Clocks run 6.5 seconds per year slower than deep space — about 9 minutes over a lifetime
Atmosphere
Thin trace-gas atmosphere
Elemental Composition
H - Hydrogen
25.6%
O - Oxygen
18.5%
Al - Aluminum
9.5%
Surface Characteristics
Pale mineral plains — carbonate flats, chalk mesas, and crusts no silicate world can build
Matched on physical properties only — but pulsar planets are real: the first exoplanets ever confirmed (PSR B1257+12, 1992) orbit a neutron star.Discovered 2023 via transit · 101 light-years awaySource: NASA Exoplanet Archive
✓ Conditions suitable for life detectedThis planet exhibits the necessary conditions to support biological processes, including stable temperatures, liquid water, and protective magnetic fields.