I How Can Photons Be Massless Yet Have Energy According to Einstein's Equations?

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Photons are massless particles that still possess energy, which can be explained through the general equation E^2 = p^2c^2 + m^2c^4. The equation E = mc^2 applies only to stationary massive objects, while the energy of massless particles like photons is derived from their momentum, leading to E = pc. This clarifies that photons can have energy despite having zero mass, resolving the apparent contradiction. The concept of rest energy, E_o = mc^2, is crucial for understanding energy in massive particles but does not apply to massless particles. Thus, photons exemplify how energy and mass are related differently in the context of Einstein's theories.
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How can photons be massless if they have energy?
Since E = mc^2, how can photons be massless? If a photon has no mass, then, according to Einstein's formula, its energy is given by E = 0 x c^2, which is 0. Yet, photons do have energy. This seems to be a complete contradiction. Please explain! Thank you.
 
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ginevradabenci said:
Since E = mc^2, how can photons be massless?
That formula is only correct for stationary massive objects. The general formula is ##m^2c^4=E^2-p^2c^2##, from which you can see that you can have zero mass objects with non-zero energy as long as their momentum, ##p##, satisfies ##E=|p|c##.
 
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ginevradabenci said:
TL;DR Summary: How can photons be massless if they have energy?

Since E = mc^2, how can photons be massless? If a photon has no mass, then, according to Einstein's formula, its energy is given by E = 0 x c^2, which is 0. Yet, photons do have energy. This seems to be a complete contradiction. Please explain! Thank you.
The equation ##E = mc^2## only applies to a particle with mass. And, indeed, that's its energy only when it is at rest. The full equation is:
$$ E^2 = p^2c^2 + m^2c^4$$Where ##p## is the magnitide of the particle's momentum. This equation applies to all particles, whether they have mass or not, and whether they have kinetic energy or not. For a photon with zero mass, the equation reduces to ##E = pc##.
 
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ginevradabenci said:
Since E = mc^2, how can photons be massless?
Because the correct equation is ##E_o=mc^2## where ##E_o## is the so-called rest energy. Rest energy is one of Einstein's greatest discoveries.
 
Theoretical physicist C.N. Yang died at the age of 103 years on October 18, 2025. He is the Yang in Yang-Mills theory, which he and his collaborators devised in 1953, which is a generic quantum field theory that is used by scientists to study amplitudes (i.e. vector probabilities) that are foundational in all Standard Model processes and most quantum gravity theories. He also won a Nobel prize in 1957 for his work on CP violation. (I didn't see the post in General Discussions at PF on his...

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