Stellar structure and compact objects before 1940: Towards relativistic astrophysics

Строение звезд и компактные объекты до 1940 года: на пути к релятивистской астрофизике
Luisa Bonolis
2017-04-28

dense stellar coresgeneral relativityneutron star collapsenuclear physicsstellar structure
Since the mid-1920s, different strands of research used stars as “physics laboratories” for investigating the nature of matter under extreme densities and pressures, impossible to realize on Earth. To trace this process this paper is following the evolution of the concept of a dense core in stars, which was important both for an understanding of stellar evolution and as a testing ground for the fast-evolving field of nuclear physics. In spite of the divide between physicists and astrophysicists, some key actors working in the cross-fertilized soil of overlapping but different scientific cultures formulated models and tentative theories that gradually evolved into more realistic and structured astrophysical objects. These investigations culminated in the first contact with general relativity in 1939, when J. Robert Oppenheimer and his students George Volkoff and Hartland Snyder systematically applied the theory to the dense core of a collapsing neutron star. This pioneering application of Einstein’s theory to an astrophysical compact object can be regarded as a milestone in the path eventually leading to the emergence of relativistic astrophysics in the early 1960s.
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Cross-disciplinary work between physicists and astrophysicists progressively produced more realistic models and theories of dense astrophysical objects.
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In 1939, Oppenheimer, Volkoff, and Snyder systematically applied general relativity to the dense core of a collapsing neutron star.
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Since the mid-1920s, stars served as laboratories for studying matter at extreme densities and pressures inaccessible on Earth.
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The concept of a dense stellar core developed as a framework for understanding stellar evolution and testing emerging nuclear physics.
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This application marked a milestone toward relativistic astrophysics, which emerged as a distinct field in the early 1960s.

Dense stellar cores and compact astrophysical objects, particularly collapsing neutron stars, before 1940

The evolution of models and theories of dense stellar cores, including their role in stellar evolution, nuclear physics, and the application of general relativity to collapsing neutron stars

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2017-04-28
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Luisa Bonolis
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