Gravity's effect on electromagnetic field

In summary,Gravity bends light because all charged particles have mass and all electric field starts and ends on some charge particle. Is that a viable explanation for this phenomenon?All electric field lines start and end, which is one of the surprising results of the vacuum solutions, such as plane waves. Can electric field exist if there are no charged particles?Yes, that is what a vacuum solution is. Vacuum solutions describe the behavior of electromagnetic fields in the absence of any charges or currents. And on the other hand, Einstein said that there is no space without light. Isn't light electromagnetic wave?Light is indeed a propagating electromagnetic wave, but do you have a reference to support the claim about
  • #1
alv799
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Gravity bends light because all charged particles have mass and all electric field starts and ends on some charge particle. Is that a viable explanation for this phenomenon?
 
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  • #2
alv799 said:
all electric field starts and ends on some charge particle
Not all electric field lines start or end. That is one of the surprising results of the vacuum solutions, such as plane waves.
 
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  • #3
Can electric field exist if there are no charged particles?
 
  • #4
alv799 said:
Can electric field exist if there are no charged particles?
Yes, that is what a vacuum solution is. It is an electromagnetic field that exists in the absence of any charges or currents.
 
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  • #5
Hello

I do not understand.
How can we have an electromagnetic field without any charge or current.

Dylan
 
  • #6
Dylanden said:
How can we have an electromagnetic field without any charge or current.
Well, lowest energy state is not zero (it's positive value). So we have some fields in that state - QM says its electromagnetic fields.
And on the other hand, Einstein said that there is no space without light. Isn't light electromagnetic wave?
 
  • #7
Dylanden said:
How can we have an electromagnetic field without any charge or current.
That's what light is: electrical and magnetic fields propagating through a vacuum. To see how this can be, you'll have to look at some of the solutions of Maxwell's equations which describe the behavior of electromagnetic fields in the most general case.
 
  • #8
MarekKuzmicki said:
Well, lowest energy state is not zero (it's positive value). So we have some fields in that state - QM says its electromagnetic fields.
The non-zero ground state energy that appears in quantum mechanics doesn't work that way, and it does not imply the existence of a non-zero electromagnetic field. Fortunately, none of this has anything to do with OP's question - classical electrodynamics and Maxwell's equations are sufficient to explain electromagnetic fields in a vacuum.
And on the other hand, Einstein said that there is no space without light. Isn't light electromagnetic wave?
Light is indeed a propagating electromagnetic wave, but do you have a reference to support the claim about Einstein?
 
  • #9
alv799 said:
Gravity bends light because all charged particles have mass and all electric field starts and ends on some charge particle. Is that a viable explanation for this phenomenon?
I think it's better to say that light goes in the straight lines in space-time as it is distorted by a massive object. The distortion of space-time is a consequence of general relativity.(see https://en.wikipedia.org/wiki/Gravi...tion_in_terms_of_space.E2.80.93time_curvature )
 
  • #11
Several very low quality posts were distracting from the thread and have been removed
 

Related to Gravity's effect on electromagnetic field

1. How does gravity affect electromagnetic fields?

Gravity does not directly affect electromagnetic fields. However, gravity can indirectly influence electromagnetic fields by causing changes in the distribution of matter and energy in space.

2. Can gravity bend or distort electromagnetic fields?

Yes, gravity can bend or distort electromagnetic fields. This is known as gravitational lensing, where the gravity of massive objects like stars or black holes can bend the path of light and distort the appearance of electromagnetic fields.

3. Does gravity have a stronger influence on electromagnetic fields than other forces?

No, gravity does not have a stronger influence on electromagnetic fields than other forces. In fact, gravity is the weakest of the four fundamental forces of nature, with electromagnetism being significantly stronger.

4. How do scientists study the effects of gravity on electromagnetic fields?

Scientists study the effects of gravity on electromagnetic fields through various experiments and observations. This includes measuring the bending of light around massive objects, studying the behavior of electromagnetic waves in strong gravitational fields, and using mathematical models to predict the interactions between gravity and electromagnetism.

5. Is there a relationship between gravity and the strength of electromagnetic fields?

There is no direct relationship between gravity and the strength of electromagnetic fields. However, the distribution of matter and energy in space, which is influenced by gravity, can indirectly affect the strength of electromagnetic fields in that region.

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