An international research team has found that primordial black holes may trigger white dwarf stars to explode as Type Ia supernovae. These unusual explosions could also help explain a chemical abundance pattern observed among stars in the Milky Way, according to a recent study published in The Astrophysical Journal.
Primordial black holes (PBH) are hypothetical remnants of the universe's earliest moments. Scientists think they may have formed during cosmic inflation, when rapid expansion amplified small fluctuations in the distribution of matter.
These black holes have been proposed as possible candidates for dark matter, the invisible material thought to account for about 90% of all matter in the Universe by mass. Although dark matter cannot be seen directly, its gravitational effects can be detected throughout galaxies and across the wider cosmos.
Primordial black holes could travel through stars as they move across the universe. Earlier research suggested that if one passed through a white dwarf, its gravity could create powerful tidal forces inside the star. Those forces might destabilize the white dwarf and cause it to explode as a Type Ia supernova (SNe Ia).
A white dwarf is the dense stellar remnant left behind after a low-mass star runs out of fuel. Type Ia supernovae are extremely bright explosions that are generally believed to occur when a white dwarf becomes unstable and undergoes a runaway thermonuclear reaction.










