How Does Hawking Radiation Affect Black Hole Temperature?

AI Thread Summary
The formula T = (ħc³)/(8πGK_BM) describes the temperature of radiation emitted by a black hole, indicating that this radiation follows a blackbody spectrum. This temperature is influenced by the gravitational gradient near the event horizon. The mass (M) in the equation refers to the total mass of the black hole, not just the singularity. Understanding these concepts requires careful consideration of both relativity and quantum mechanics. The discussion emphasizes the importance of precise language in these complex topics.
AbsoluteZer0
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Hi,

I recently came across this formula:

T = \frac{\hbar c^3}{8 \pi GK_BM}

As I understand it deals with the radiation that is believed to be emitted by a black hole.
Does it describe the temperature of the radiation?

Thanks
 
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It describes the statistics of the radiation coming from close to the event horizon of a black-hole due to the large gravity gradient there.
"Temperature" is a common way of describing such statistics - the model says that the radiation coming from the black hole follows a blackbody spectrum with a characteristic temperature given by that equation.
 
Thanks.

One more question I have regarding this equation is: how can we quantify the mass of a black hole (M)? Is it the mass of the singularity?
 
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No worries.

In relativity or QM it helps to be carefully pedantic about what things are saying - and that goes squared for when when both of them are used together :)
 
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