---
title: "Scientists Find “One in Ten Billion” Star System Primed to Explode in Titanic Kilonova"
description: "A rare form of binary star system containing a neutron star and a massive companion star is the first ever example of a system doomed to end in a kilonova."
date: "2023-02-06"
modified: "2023-02-06"
authors:
  - name: "Frank Landymore"
    job_title: "Contributing Writer"
    link: "https://futurism.com/authors/flandymore"
url: "https://futurism.com/the-byte/star-system-explode-kilonova"
categories:
  - "Off-World"
  - "Space"
tags:
  - "binary star system"
  - "kilonova"
  - "stars"
  - "the digest"
---

# Scientists Find “One in Ten Billion” Star System Primed to Explode in Titanic Kilonova

![A rare form of binary star system containing a neutron star and a massive companion star is the first ever example of a system doomed to end in a kilonova.](<https://futurism.com/wp-content/uploads/2023/02/spaceexplosion.jpg>)
*\<em\>Image: Getty / Futurism\</em\>*

## Stellar Rarity

Astronomers have found the first known example of a binary star system doomed to meet its end in an explosive collision known as a [kilonova](<https://futurism.com/eso-unprecedented-discovery-gravitational-waves>), a phenomenon so rare that it's estimated there are only ten binary systems in our entire galaxy capable of producing one, according to their [study](<https://www.nature.com/articles/s41586-022-05618-9>) published last week in the journal *Nature*.

"We know that the Milky Way contains at least 100 billion stars and likely hundreds of billions more. This remarkable binary system is essentially a one-in-ten-billion system," said astronomer and co-author of the study André-Nicolas Chené, in a [statement](<https://noirlab.edu/public/news/noirlab2303/>). "Prior to our study, the estimate was that only one or two such systems should exist in a spiral galaxy like the Milky Way."

## Danse Macabre

The binary system, CPD-29 2176, comprises a massive star that closely orbits a neutron star. Both are victims of each other's gravity. The neutron star formed as the result of an ultra-stripped supernova, a less explosive form of a typical supernova that occurs in stars that have had their atmospheres siphoned by the gravity of a nearby stellar companion.

But the massive companion star will eventually share the same fate, too. The neutron star it created is incredibly dense, wielding a gravitational pull nearly as terrifying as a black hole. Thus, over time, the companion star will also lose its atmosphere, succumbing to an ultra-stripped supernova and diminishing into a neutron star itself.

And eventually, those two neutron stars will collide, resulting in a mega-powerful kilonova that has [seldom been observed](<https://news.northwestern.edu/stories/2022/02/kilonova-afterglow-potentially-spotted-for-first-time/>).

"For quite some time, astronomers speculated about the exact conditions that could eventually lead to a kilonova," Chené said. "These new results demonstrate that, in at least some cases, two sibling neutron stars can merge when one of them was created without a classical supernova explosion."

## Heavy News

Even short cosmic timelines are lengthy in human terms, of course. According to the astronomers, it will be at least another million years until the companion star collapses into a second neutron star, and from there, millions more until the two neutron stars collide.

So while we may not be able to witness a colossal kilonova for ourselves, the discovery still provides an invaluable insight into the formation of the universe's heaviest elements.

"Those heavy elements allow us to live the way that we do," explained astronomer and lead author of the study, Noel D. Richardson, in a [statement](<https://www.eurekalert.org/news-releases/977887>). "Most gold was created by stars similar to the supernova relic or neutron star in the binary system that we studied. Astronomy deepens our understanding of the world and our place in it."

**More on stars:** *[Scientist Releases Amazing Video of Exoplanets Orbiting Distant Star](<https://futurism.com/the-byte/video-exoplanets-orbiting-distant-star>)*

## Author
At Futurism, my work has often centered on bringing a sense of clarity and insight to complex topics ranging from the regulation of emerging technologies to the esoteric ideologies of Silicon Valley executives, while striving not to lose the poetic sense of awe inspired by often-obscure fields like astrophysics and quantum computing. I broke the story of CNET using AI to produce articles that turned out to be riddled with factual errors and plagiarism — a dam-breaking inflection point, as I've reported, that's inspired copycats and endless discourse while beguiling stakeholders ranging from tech giants to purveyors of spam around the web. My work at Futurism has been cited by publications including CBS News, the Los Angeles Times, Vice, Gizmodo, Engadget, the Verge, and Vanity Fair. I grew up in locales ranging from India to China, and now live in the exotic suburbs of Virginia. In my free time, I'm an avid reader of weird sci-fi literature, an aficionado of East Asian cinema, and, regrettably, a relapsed gamer. Allegedly, I’m working on a debut novel, currently untitled.

### Author social links  
[Bluesky](<https://bsky.app/profile/f-w-l.bsky.social>)