Conventional BCS, unconventional BCS, and non-BCS hidden dineutron phases in neutron matter

被引:0
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作者
V. A. Khodel
J. W. Clark
V. R. Shaginyan
M. V. Zverev
机构
[1] National Research Centre “Kurchatov Institute”,McDonnell Center for the Space Sciences and Department of Physics
[2] Washington University,Centro de Ciências Matemáticas
[3] University of Madeira,Petersburg Nuclear Physics Institute
[4] NRC “Kurchatov Institute”,undefined
[5] Moscow Institute of Physics and Technology (State University),undefined
来源
Physics of Atomic Nuclei | 2014年 / 77卷
关键词
Atomic Nucleus; Fermi Surface; Pairing Correlation; Neutron Matter; Cooper Channel;
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摘要
The nature of pairing correlations in neutron matter is re-examined. Working within the conventional approximation in which the nn pairing interaction is provided by a realistic bare nn potential fitted to scattering data, it is demonstrated that the standard BCS theory fails in regions of neutron number density, where the pairing constant λ, depending crucially on density, has a non-BCS negative sign. We are led to propose a non-BCS scenario for pairing phenomena in neutron matter that involves the formation of a hidden dineutron state. In low-density neutron matter, where the pairing constant has the standard BCS sign, two phases organized by pairing correlations are possible and compete energetically: a conventional BCS phase and a dineutron phase. In dense neutron matter, where λ changes sign, only the dineutron phase survives and exists until the critical density for termination of pairing correlations is reached at approximately twice the neutron density in heavy atomic nuclei.
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页码:1145 / 1156
页数:11
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