What dictates the differences between realms within string theory?

In summary, the many-worlds theory is the idea that there are multiple universes that are each different. The difference is based on the random choices that were made when the particle went into the experiment.
  • #1
noodliz
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0
If string theory asserts that a particle can be in more than place and theoretically there are different realms / universes etc. where this occurs but each one is different, how do these differences occur? If it's based the assertion that complete hard determinism does not exist (for every realm would be identical) then does this mean that it is down to randomization of what differs, or does this imply a concept of free will where the differences are based within humans?

EDIT: woops just realized I posted in the wrong sub-forum, terribly sorry!
 
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Thread moved.

Zz.
 
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Your question is actually about quantum theory and not just string theory. Quantum mechanics is the original approach to physics in which randomness exists. Originally you had quantum theories of particles, then you had quantum theories of fields, and now we have quantum theories of strings. A string vibrates, a non-quantum string vibrates deterministically, but a quantum string has some randomness to its vibrations.

But for a moment you should just forget about strings and concentrate on the simpler forms of quantum theory. There are experiments where a particle goes in, it can go left or right, and the theory doesn't definitely say what will happen, it just gives probabilities. The old debate was whether the actual outcome had a hidden cause or not. Suppose the particle went left: was that because there's an extra level to physics, which causes it to go left, or did it really just go left for no reason at all?

For about fifty years we've had a third option, the many-worlds theory: the particle goes left in some worlds and it goes right in other worlds. This must be what you're talking about.
 
  • #4
mitchell porter said:
Your question is actually about quantum theory and not just string theory. Quantum mechanics is the original approach to physics in which randomness exists. Originally you had quantum theories of particles, then you had quantum theories of fields, and now we have quantum theories of strings. A string vibrates, a non-quantum string vibrates deterministically, but a quantum string has some randomness to its vibrations.

But for a moment you should just forget about strings and concentrate on the simpler forms of quantum theory. There are experiments where a particle goes in, it can go left or right, and the theory doesn't definitely say what will happen, it just gives probabilities. The old debate was whether the actual outcome had a hidden cause or not. Suppose the particle went left: was that because there's an extra level to physics, which causes it to go left, or did it really just go left for no reason at all?

For about fifty years we've had a third option, the many-worlds theory: the particle goes left in some worlds and it goes right in other worlds. This must be what you're talking about.

Yes that's perfect, thank you so much.
 

What is string theory?

String theory is a theoretical framework in physics that seeks to explain the fundamental nature of particles and forces in the universe. It proposes that these particles are not point-like objects, but rather tiny, one-dimensional strings that vibrate at different frequencies. These vibrations are thought to give rise to the different particles and forces that we observe.

What are the different realms within string theory?

There are several different realms or dimensions proposed within string theory. These include the three dimensions of space we are familiar with, as well as additional dimensions that are curled up and invisible to us. The number of these extra dimensions can vary depending on the specific version of string theory being studied.

How are the different realms within string theory related?

The different realms within string theory are thought to be interconnected through a process known as compactification. This means that the extra dimensions are curled up and hidden, but still play a role in determining the properties of the observable dimensions. The vibrations of the strings in these extra dimensions can also affect the behavior of particles in our observable universe.

What dictates the differences between realms within string theory?

The differences between realms within string theory are dictated by the vibrational patterns of the strings. Each string vibrates at a specific frequency, which determines the type of particle it will create. Additionally, the number and shape of the extra dimensions also influence the properties of particles and forces in our observable universe.

Can we observe or test the different realms within string theory?

There is currently no experimental evidence for the existence of string theory or its proposed extra dimensions. However, scientists are actively working on ways to test and verify the predictions of string theory through experiments and observations. It is a highly complex and ongoing area of research in the field of theoretical physics.

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