IISc study says strong magnetic fields could allow white dwarfs to grow beyond the Chandrasekhar limit

Researchers at the Indian Institute of Science have simulated how strong internal magnetic fields allow white dwarfs to exceed the traditional Chandrasekhar mass limit. The study suggests that some white dwarfs can reach up to 2.4 times the mass of the Sun.
Why it matters
This discovery challenges long-standing astrophysical models and provides new insights into the evolution of stars and the nature of supernovae.
Simulations by researchers of Indian Institute of Science (IISc) and their collaborators show that strong internal magnetic fields could allow some white dwarfs to grow to substantially higher masses than determined by the Chandrasekhar limit.
When a dying star runs out of fuel and sheds its outer layers, its remaining core can become an approximately Earth-sized, extremely dense stellar remnant called a “white dwarf”. For a white dwarf that is not strongly rotating or magnetised, there is a well-known upper mass limit of about 1.4 times the mass of the Sun, known as the “Chandrasekhar limit”.
In one of their simulations, the researchers found that a magnetised carbon-oxygen white dwarf can reach about 2.4 times the mass of the Sun – well above the limit.
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