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Inelastic electron scattering from fluctuations in the nuclear charge distribution

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TLDR
In this article, the cross section σ ( q, ω ) for scattering of electrons through momentum transfer q and energy loss ω from heavy nuclei is derived, which is related to the four-dimensional Fourier transform of the nuclear time-dependent pair correlation function.
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This article is published in Annals of Physics.The article was published on 1963-01-01. It has received 78 citations till now. The article focuses on the topics: Scattering length & Nuclear cross section.

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Electron Scattering and Nuclear Structure

T. De Forest, +1 more
- 01 Jan 1966 - 
TL;DR: In this paper, the authors discuss the role of electron scattering and nuclear structure in the development of the first-order particle beamforming and nuclear nuclear nuclear structures, and propose a method for their analysis.
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A study of the nuclear response function

TL;DR: In this article, the authors examined the excitation properties of spherical nuclei in the Random Phase Approximation using the Green's function method and found that the level of agreement with empirical properties is as follows: energies of low-lying states, ≈ 25%; positions of giant resonances, ≉ 10%; transition rates of low states, factor of 2 typical.
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Inclusive quasielastic electron-nucleus scattering

TL;DR: In this article, a review on the field of inclusive quasielastic electron-nucleus scattering is presented, which includes the approach used to measure the data and includes a compilation of data available in numerical form.
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New approach in the microscopic Fermi systems theory

TL;DR: In this paper, a new version of the microscopic theory of non-relativistic Fermi systems based on functional relations between the ground state energy of a system and its linear response function is presented.
References
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Correlations in Space and Time and Born Approximation Scattering in Systems of Interacting Particles

TL;DR: In this paper, a natural time-dependent generalization for the well-known pair distribution function $g(mathrm{r})$ of systems of interacting particles is given, which gives rise to a very simple and entirely general expression for the angular and energy distribution of Born approximation scattering by the system.
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Theory of Many-Particle Systems. I

TL;DR: In this paper, a series of papers dealing with many-particle systems from a unified, nonperturbative point of view is presented, which includes derivations and discussions of various field-theoretical techniques which will be applied in subsequent papers.
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Conservation laws and correlation functions

TL;DR: In this paper, a method for generating conserving approximations was developed based on a consideration of the equations of motion obeyed by the propagator G, defined in the presence of a nonlocal external scalar field U.
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Nuclear forces and the properties of nuclear matter

TL;DR: In this paper, the Brueckner theory was applied to the nuclear many-body problem and it was shown that if the two-nucleon interaction (for any given state and relative momentum) is separated into a short range part vs and a long range part vl, then the Pauli principle drastically reduces the induced correlations due to vl.
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