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Titlebook: Advances in Nuclear Dynamics; Wolfgang Bauer,Alice Mignerey Book 1996 Plenum Press, New York 1996 cluster.collision.hadron.heavy ion.ion.n

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发表于 2025-3-21 17:23:54 | 显示全部楼层 |阅读模式
期刊全称Advances in Nuclear Dynamics
影响因子2023Wolfgang Bauer,Alice Mignerey
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图书封面Titlebook: Advances in Nuclear Dynamics;  Wolfgang Bauer,Alice Mignerey Book 1996 Plenum Press, New York 1996 cluster.collision.hadron.heavy ion.ion.n
影响因子The study of nuclear dynamics is now in one of its most interesting phases. The theory is in the process of establishing an increasingly reliable transport description of heavy ion reactions from the initial violent phase dominated by first collisions to the more thermalized later stages of the reaction. This is true for the low-to-medium energy reactions, where the dynamics is formulated in terms of nucleonic, or in general hadronic, degrees of freedom. And it is also becoming a reality in ultrarelativistic heavy-ion reactions, where partonic elementary degrees of freedom have to be used. Experiments are now able to ‘utilize the existing accelerators and multiparticle detec­ tion systems to conduct unprecedented studies of heavy-ion collisions on an event-by-event basis. In addition, the field anticipates the completion of the construction of the Relativistic Heavy Ion Collider and the proposed upgrade of the National Superconducting Cyclotron Laboratory, promising qualitatively new data for the near future. All of these efforts are basically directed to the exploration of the change the nuclear medium provides for the properties and interactions of individual nucleons and, ultima
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Comparative Vertebrate Cognitionall measured transverse energies. From these distributions a single binary event probability can be extracted that has a thermal dependence. A strong thermal signature is also found in the charge distributions. The .-fold charge distributions are reducible to the 1-fold charge distributions through
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https://doi.org/10.1007/978-1-4419-8913-0ll charged reaction products. The moments of the resulting charged fragment distribution and fluctuations therein provide strong evidence that nuclear matter possesses a critical point observable in finite nuclei. Values of the critical exponents γ, β, and τ have been determined. These values are cl
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Comparative Vertebrate Reproductionairs of detected particles. The model takes particular care of the details of the detector array geometry and reproduces the observed singles and coincidence spectra. Three different forms of correlation functions are studied for their sensitivity to emission time, emission order and source size. Th
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Ovuliparity and Modes of Embryo Retention,or the annihilation of antiprotons at rest and in flight. The results show that fairly excited nuclei are formed under much better controlled experimental conditions than in the case of heavy-ion collisions. The data are reasonably well accounted for by INC simulations coupled with statistical model
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https://doi.org/10.1007/978-94-009-4153-3or the first time, the experimental correlation distributions .(..) and .(..), as functions of the relative momentum and energy of the two detected photons, have been separately analyzed in order to extract both the spatial size and lifetime of the emitting source. The found values are in agreement
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