Calculated by the lab
- Red-dwarf orbital flux
- Global climate values
- Simplified locked-world local temperature
Place a slow-rotating world close to a red dwarf and inspect its fixed heating pattern.
A locked-world temperature pattern is shown, not a portrait of Proxima b.
Many red dwarfs have compact habitable zones where tides may drive planets toward synchronous rotation. With enough heat transport, such a world could retain a temperate region between a warm star-facing side and a cold dark side.
This scenario selects an M dwarf, a 0.16ย AU orbit, and a very slow rotation input that activates the lab's locked-world approximation. The local temperature texture then concentrates heating near the substellar point while the headline temperature remains a simplified global result.
Proxima b may be tidally locked, but its spin state, atmosphere, oceans, and surface remain uncertain. Calling it an eyeball world is one possible interpretation, not an observation.
Each step is labeled so you can tell a calculated result from an explanatory visual or wider scientific context.
The scenario selects an M dwarf, a close orbit, low tilt, and a very slow rotation rate.
The locked-world approximation computes a warmer substellar region and a colder far side.
Temperature color and stylized surface ice make the fixed heating geometry visible.
Atmosphere and ocean circulation could redistribute heat in ways the local texture does not solve.
Model scope: The local pattern is a simplified locked-world approximation. It is not a circulation model or evidence about Proxima b's surface.