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The Compton effect: Transition to quantum mechanics

2000/11/01 by R.H. Stuewer, Roger H. Stuewer
Arts and Humanities · #Bohr model #Compton scattering #Einstein #Event (particle physics) #History of Science and Natural History #Philosophy, Science, and History #Photon #Physics #Quantum #Quantum mechanics #Theoretical physics #Twentieth Century Scientific Developments

paper · doi:10.1002/andp.200051211-1216

openalex publication_date 2000/11/01 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/04

Abstract

Abstract The discovery of the Compton effect at the end of 1922 was a decisive event in the transition to the new quantum mechanics of 1925‐1926 because it stimulated physicists to examine anew the fundamental problem of the interaction between radiation and matter. I first discuss Albert Einstein's light‐quantum hypothesis of 1905 and why physicists greeted it with extreme skepticism, despite Robert A. Millikan's confirmation of Einstein's equation of the photoelectric effect in 1915. I then follow in some detail the experimental and theoretical research program that Arthur Holly Compton pursued between 1916 and 1922 at the University of Minnesota, the Westinghouse Lamp Company, the Cavendish Laboratory, and Washington University that culminated in his discovery of the Compton effect. Surprisingly, Compton was not influenced directly by Einstein's light‐quantum hypothesis, in contrast to Peter Debye and H.A. Kramers, who discovered the quantum theory of scattering independently. I close by discussing the most significant response to that discovery, the Bohr‐Kramers‐Slater theory of 1924, its experimental refutation, and its influence on the emerging new quantum mechanics.

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