The core
Gamma ray photons are produced in the core of the Sun through the process of nuclear fusion. The core is where the temperature and pressure are high enough to drive these reactions, leading to the release of gamma ray photons.
The core
Gamma rays in the sun primarily come from the sun's outermost layer, called the chromosphere, where high-energy processes such as nuclear reactions and particle interactions produce these extremely energetic photons.
The primary means of energy transfer inside the sun is through radiation. Energy produced in the core of the sun is emitted in the form of electromagnetic radiation, primarily in the form of gamma rays and photons. These high-energy photons gradually lose energy as they travel through the layers of the sun, eventually reaching the surface and being emitted as visible light.
The convection zone.
Gamma ray photons are produced in the core of the Sun through the process of nuclear fusion. The core is where the temperature and pressure are high enough to drive these reactions, leading to the release of gamma ray photons.
The core
The core
the core
Photons do not come in different types like infared-photons etc. they are just the wavelength that the photons are at and nuclear fusion just happens to emit photons at a particular wavelength
Gamma rays in the sun primarily come from the sun's outermost layer, called the chromosphere, where high-energy processes such as nuclear reactions and particle interactions produce these extremely energetic photons.
The highest energy photons are described as Gamma. But in terms of the strength, there are more light sources that we encounter everyday of a greater intensity than gamma, as intensity is a measure of the number of photons arriving over an area in a given time. Therefore, visible light and infra-red from the sun are much more intense than the gamma we encounter everyday, as gamma photons are few and far between.
The primary means of energy transfer inside the sun is through radiation. Energy produced in the core of the sun is emitted in the form of electromagnetic radiation, primarily in the form of gamma rays and photons. These high-energy photons gradually lose energy as they travel through the layers of the sun, eventually reaching the surface and being emitted as visible light.
It escapes as photons, which we see as sunlight.
The Core
The second innermost layer of the sun is the radiative zone. This layer is where energy generated in the sun's core is conveyed through radiation as the photons bounce between atoms until they reach the convective zone.
The convection zone.