Magnetic Field High Activity
Why is this a Rocky Terrestrial? Your planet is dominated by silicate (7.6%) and iron (12.4%) content, forming a rocky terrestrial body. Rocky terrestrial planets are primarily composed of silicate rocks and metals. They're the most common type of small planet in the universe.
✓ Silicon: 7.6% + Iron: 12.4% + Magnesium: 10.0% ✓ Mass: 1.5x Earth (terrestrial range)
Habitability Score Extremely Harsh
Contributing Factors water 38
Limited water content - mostly frozen geology 90
Active geology recycles nutrients and drives carbon cycle rotation 100
Optimal rotation period - balanced day/night cycle, moderate weather, and good heat distribution Organic Chemistry 100
All CHNOPS elements present - building blocks of life atmosphere 70
Nitrogen atmosphere provides protection but not breathable temperature 40
Extreme temperature - very difficult for life magnetic Field 100
Magnetic field provides radiation protection — but the pulsar's beams bathe this orbit in hard X-rays Physical Properties Mass
1.50x Earth (8.96e+24 kg) Radius
1.14x Earth (7,293 km) This planet: 1.14× Earth radius Earth: 1× (baseline)
Surface Gravity
1.14x Earth (11.2 m/s²) Surface Temperature
244 K (-29 °C / -21 °F) Rotation Period
18.0 hours/day (faster than Earth) This planet: 18 h/day Earth: 24 h/day Orbital Environment Star Type
NS-type (Neutron Star) Distance from Star
0.13 AU (19.4 million km) Time Dilation
Clocks run 5.0 seconds per year slower than deep space — about 7 minutes over a lifetime Atmosphere Thin CO₂ and nitrogen atmosphere
Surface Characteristics Rocky surface with impact craters, possible volcanic features Closest Real Exoplanet Orbiting GJ 1061 Yours GJ 1061 d Mass 1.50 × Earth 1.67 × Earth Radius 1.13 × Earth 1.16 × Earth Density (composition) 5.72 g/cm³ 5.90 g/cm³ Temperature 243.8 K 242.0 K Starlight received 0.59 × Earth 0.60 × Earth Star temperature — 2,953 K
Matched on physical properties only — but pulsar planets are real: the first exoplanets ever confirmed (PSR B1257+12, 1992) orbit a neutron star. Discovered 2020 via radial velocity · 12 light-years away Source: NASA Exoplanet Archive Browse all 5,568 real exoplanets Learn more about exoplanets Moons
Moon 1 rings 0.00071% - 4.6 radii
Inside the synchronous orbit: it spiraled inward and was torn apart at the Roche limit (Phobos's fate).
Moon 2 rings 0.00050% - 5.1 radii
Inside the synchronous orbit: it spiraled inward and was torn apart at the Roche limit (Phobos's fate).
Moon 3 stable 0.00022% - 6.1 radii
Small and distant: a quiet, stable companion.
Moon 4 rings 0.0020% - 2.0 radii
Inside the Roche limit (2.80 planet radii): torn apart into a ring system.
Moon 5 merged 0.010% - 5.1 radii
Merged with an adjacent moon: too close for both to hold a stable orbit.
Moon 6 merged 0.020% - 4.7 radii
Merged with an adjacent moon: too close for both to hold a stable orbit.