Interesting simulation of a spiral galaxy evolution.

In summary, the conversation is discussing a simulation of galaxy formation where changes in the direction of rotation are observed, as well as the development of a clear axis of rotation. The presence of jets and the limitations of gravitational acceleration are also mentioned. The origin of the simulation and its accuracy are questioned.
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  • #2
VERY cool. Thanks for posting.
 
  • #3
Interesting.

at about 0:45 counterclockwise rotation is clearly visible. by 1:30 the direction of rotation is clockwise. Between 1:05 and 1:30 direction of rotation seems to be dependant on the distance from the center.

I'm curious if this sort of change in the direction of rotation is a real phenomena or just a feature of this simulation.

Does anyone know of any observational evidence one way or the other?
 
  • #4
Also interesting is after about 20 seconds a clear axis of rotation develops and stays pointing in the same direction even though the mass of the galaxy changes many times. Does that seem typical or must it be from initial conditions of the initial matter cloud? I assume we are viewing from some point with fixed orientation (what the hell does that mean)?

Thanks for any help!
 
  • #5
No jets. Early formation should produce jets.

I'm assuming from that model that gravitational acceleration wasn't limited, it would be nice to see a simulation where it was. /1+limit+R² (there is no observation that shows acceleration -> infinity as r->0, it's only an assumption, if you accept frame dragging then the assumption must be incorrect anyway)
 
  • #6
Do you know how they created the stimulation? Was it a custom program or one already made?
 

1. What is a spiral galaxy evolution simulation?

A spiral galaxy evolution simulation is a computer-generated model that illustrates the development and changes of a spiral galaxy over time, based on scientific theories and observations.

2. How does a spiral galaxy evolve over time?

A spiral galaxy evolves through various processes such as gravitational interactions with neighboring galaxies, star formation, and the growth of its central supermassive black hole. These processes can affect the shape, size, and structure of the galaxy.

3. What factors are considered in a spiral galaxy evolution simulation?

A spiral galaxy evolution simulation takes into account various factors such as the galaxy's initial conditions, the distribution of dark matter, gas, and stars, the effects of gravity, and the role of other galaxies in the cluster.

4. How accurate are these simulations in predicting real-life galaxy evolution?

Spiral galaxy evolution simulations are based on our current understanding of astrophysics and cosmology, so they can provide accurate predictions. However, the accuracy may vary depending on the complexity of the model and the assumptions made.

5. What can we learn from spiral galaxy evolution simulations?

Spiral galaxy evolution simulations can help us understand the formation and evolution of galaxies, the role of dark matter and dark energy, and the influence of neighboring galaxies on a galaxy's development. These simulations can also provide insights into the origins of the universe and the fundamental laws of physics.

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