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  1. Compton Scattering. *. Compton scattered high energy photons from (essentially) free electrons in 1923. He measured the wavelength of the scattered photons as a function of the scattering angle. The figure below shows both the initial state (a) and the final state, with the photon scattered by an angle and the electron recoiling at an angle .

  2. 콤프턴 산란 ( Compton scattering )이란 X선 이나 감마선 의 파장을 가진 광자 가 전자 와 상호작용하여 에너지를 잃는 탄성 산란 과정이다. 1923년 아서 콤프턴 이 최초로 이론적으로 설명하였다. 콤프턴 산란 실험은 빛이 파동-입자 이중성 을 따른다는 사실을 ...

  3. Apr 13, 2020 · Compton scattering is one of the fundamental interaction processes of light with matter. When discovered1, it was described as a billiard-type collision of a photon ‘kicking’ a quasi-free ...

  4. 康普頓散射. 在 原子物理学 中, 康普顿散射 ,或称 康普顿效应 (英語: Compton effect ),是指当 X射线 或 伽马射线 的光子跟物质相互作用,因失去 能量 而导致波长变长的现象。. 相应的还存在 逆康普顿效应 ——光子获得能量引起波长变短。. 这一波长变化的 ...

  5. Jan 1, 2023 · Compton scattering is the process whereby a photon (usually a gamma-ray or X-ray) transfers a nonzero fraction of its energy to a charged particle, usually an electron. The particles in the initial and final states are the same (a photon and an electron), making this is a scattering process. For the purposes of this entry, it is assumed that ...

  6. Compton scattering is known as an interaction between a free electron at rest and a high-energy photon (which is typically an x-ray or gamma-ray). Compton (1923) presented the first semi-quantum-mechanical treatment of such an interaction in 1923. In contrast, inverse Compton scattering (ICS) is known as an interaction between a high-energy ...

  7. Compton scattering was discovered in 1922 by Arthur H. Compton (1892-1962) while conducting research on the scattering of X-rays by light elements. In 1922 he subsequently reported his experimental and theoretical results and received the Nobel prize in 1927 for this discovery.

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