Journal•ISSN: 0393-697X
Rivista Del Nuovo Cimento
Springer Science+Business Media
About: Rivista Del Nuovo Cimento is an academic journal. The journal publishes majorly in the area(s): Neutrino oscillation & Quantum chromodynamics. Over the lifetime, 492 publications have been published receiving 15160 citations.
Topics: Neutrino oscillation, Quantum chromodynamics, Quantum gravity, Inelastic scattering, Quantization (physics)
Papers published on a yearly basis
Papers
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1,136 citations
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483 citations
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TL;DR: In this paper, the generalized single-particle Green's function is considered and the Bethe-Salpeter equation for the two-particles Green's functions is defined.
Abstract: 75 APPENDIX E. 77 APPENDIX F. 79 APPENDIX G. 82 APPENDIX H. Introduction. Generalized Green's functions. Equations of motion for the generalized single-particle Green's function. Bethe-Salpeter equation for the two-particle Green's function. Connection with linear-response theory. Conserving approximations. Gauge invariance, current conservation, and the Ward identities. Optical properties of semiconductors. Single-particle energy levels. Screening of static impurities. Excitonic states. A functional derivative identity. Dyson's equation. Reducible vs. irreducible parts of the correlation functions. Elimination of the spin variables and transformation to the energy-momentum representation. The Thomas-Reiche-Kuhn sum rule. The Clausius-Mossotti relation. The particle-hole Green's function. The Haken potential.
410 citations
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TL;DR: In this article, the authors propose a method to solve the problem of "uniformity" and "uncertainty" in the context of video games.2.3.2
Abstract: 2
331 citations
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CERN1
TL;DR: In this article, the phase transition hadron → quark-gluon plasma (predicted by so many models) at pp collider energies was shown to be realizable at ISR energies.
Abstract: Do we see the phase transition hadron → quark-gluon plasma (predicted by so many models) at pp collider energies? Yes; we even see it alrealy at ISR energies. This conclusion might only be escaped if all speculations and calculations about this phase transition and the use of statistical thermodynamics in this context are senseless and if the consistency (though not detailed agreement) of their predictions with the experiment is due to some most unlikely accident. The various distorting mechanisms entering between idealized thermodynamics and real collisions may affect numerical values; they cannot invalidate our conclusion.
301 citations