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Type Ia supernovae—explosions caused by the remnants of low-mass stars being reignited—brighten and dim so consistently that they are used as cosmic rulers to measure distances across the universe.

Findings
Additional insights we found via NASA
Just as identical lightbulbs exhibit the same color but appear dimmer with distance—a relationship that can be matched to a mathematical equation—a new white dwarf explosion that has been identified by its spectral properties can be compared with other mapped white dwarf explosions to reverse-engineer the unknown distance.
The consistency of type Ia supernovae results from being triggered at the same critical mass—about 1.44 times that of the sun—which white dwarfs can reach by funneling matter from a nearby star onto their surface.
Because of the consistency of the trigger mechanism and the underlying mathematics used to calculate distance, type Ia supernovae are referred to as "standard candles" and are one component of the cosmic distance ladder, which astronomers use to map distances across the cosmos.
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