---
title: "Amazing Simulation Shows the Moment That a Star First Ignites"
description: "A team of researchers from Northwestern University have created a high-resolution 3D simulation of the moment a star is formed."
date: "2021-05-19"
modified: "2021-05-19"
authors:
  - name: "Victor Tangermann"
    job_title: "Senior Editor"
    link: "https://futurism.com/authors/victor"
url: "https://futurism.com/amazing-simulation-star-formation"
categories:
  - "Space"
tags:
  - "northwestern university"
  - "star formation"
  - "star origin"
---

# Amazing Simulation Shows the Moment That a Star First Ignites

![A team of researchers from Northwestern University have created a high-resolution 3D simulation of the moment a star is formed.](<https://futurism.com/wp-content/uploads/2021/05/amazing-simulation-star-formation.jpg>)
*\<em\>Image: Mike Grudić via YouTube\</em\>*

A team of researchers from Northwestern University have [created a high-resolution 3D simulation](<https://phys.org/news/2021-05-stunning-simulation-stars-born-realistic.html>) of the moment a star is formed.

The gorgeous animation is the most realistic of its kind to date, according to the team, and could teach us valuable lessons about how stars are formed in the universe.

https://youtu.be/Aehqb-vDV_w

The computational framework, called STARFORGE (Star Formation in Gaseous Environments), simulates a gas cloud 100 times the mass of any simulation previously possible and includes details such as jets of energy escaping out of the star's poles, supernova activity, and radiation.

Stellar jets are massive fountains of gas that escape while a star is forming. They also play a significant role in determining the eventual mass of a given star.

"People have been simulating star formation for a couple decades now, but STARFORGE is a quantum leap in technology," said Claude-André Faucher-Giguère, astrophysicist at Northwestern, and senior author of an [accompanying paper](<https://academic.oup.com/mnras/advance-article-abstract/doi/10.1093/mnras/stab1347/6276745?redirectedFrom=fulltext>) that was accepted into the journal Monthly Notices of the Royal Astronomical Society, in [a statement](<https://phys.org/news/2021-05-stunning-simulation-stars-born-realistic.html>).

"It's been a very challenging question to explore because of the range of physical processes involved," he added. "This new simulation will help us directly address fundamental questions we could not definitively answer before."

It's exceedingly difficult to follow the process of a star forming, as it can take tens of millions of years and is often obscured from view.

"When we observe stars forming in any given region, all we see are star formation sites frozen in time," co-author Michael Grudić said. "Stars also form in clouds of dust, so they are mostly hidden."

To render the stunning animation, the team took an astronomical amount of data into account, including gas dynamics, magnetic fields, and gravitational forces. In fact, the finished product was so computer intensive that it took up to three months to run a single animation using one of the most powerful supercomputers in the world.

STARFORGE has already led to tangible results, allowing the researchers to better understand the role of stellar jets in the creation of stars.

"Jets disrupt the inflow of gas toward the star," Grudić said in the statement. "They essentially blow away gas that would have ended up in the star and increased its mass."

While it's not an entirely new discovery, the simulation allowed them to solidify what they already knew.

"People have suspected this might be happening, but, by simulating the entire system, we have a robust understanding of how it works," Grudić said.

The insights it provides could have even greater consequences on our understanding of the universe, the scientists say.

"If we can understand star formation, then we can understand galaxy formation," Grudić explained. "And by understanding galaxy formation, we can understand more about what the universe is made of."

"Understanding where we come from and how we're situated in the universe ultimately hinges on understanding the origins of stars," he added.

**READ MORE:** [Stunning simulation of stars being born is most realistic ever](<https://phys.org/news/2021-05-stunning-simulation-stars-born-realistic.html>) \[Northwestern University\]

**More on star formation:** *[Astronomers Surprised to Find That Stars Compete With Each Other](<https://futurism.com/the-byte/astronomers-surprised-find-stars-compete>)*

## Author
I've been at Futurism since 2017, where my role has evolved to encompass design, writing, and increasingly editing. I've always been fascinated by space exploration and advanced transportation, which I've leaned into by interviewing luminaries in those fields while closely following the dimensions of policy and regulation that allow next-generation projects to succeed -- or, sometimes, to fail. I'm also keenly interested in the effects of generative AI on society, policies, and democratic institutions, as well as clean energy, physics and biology, and the vagaries of tech leadership. My work for Futurism has been cited by publications including Ars Technica, Gizmodo, PC Magazine, Jalopnik, Fox News, and the New York Post. I spent my childhood living in locations including Manila, the Philippines, and Geneva, Switzerland, attended McGill University, and now live in Toronto, Canada. Before Futurism I worked at AskMen and a small photography studio. In my free time, I'm an avid gardener, foodie, and craft beer lover, as well as a maker of artisanal hot pepper sauces. I have a magnificent dog named Freida.

### Author social links  
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