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Kaon condensation and lambda-nucleon loop in the relativistic mean-field approach

机译:相对论平均场方法中的Kaon凝聚和λ-核子环

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摘要

The possibility of kaon condensation in high-density symmetric nuclear matter is investigated including both s- and p-wave kaon-baryon interactions within the relativistic mean-field (RMF) theory. Above a certain density, we have a collective (D) over bar (S) state carrying the same quantum numbers as the antikaon. The appearance of the (K) over bar (S) state is caused by the time component of the axial-vector interaction between kaons and baryons. It is shown that the system becomes unstable with respect to condensation of K-(K) over bar (S) pairs. We consider how the effective baryon masses affect the kaon self-energy coming from the time component of the axial-vector interaction. Also, the role of the spatial component of the axial-vector interaction on the possible existence of the collective kaonic states is discussed in connection with A-mixing effects in the ground state of high-density matter: Implications of K (K) over bar (S) condensation for high-energy heavy-ion collisions are briefly mentioned. (c) 2005 Elsevier B.V. All rights reserved.
机译:在相对论平均场(RMF)理论中,研究了高密度对称核物质中ka凝聚的可能性,包括s波和p波kaon-重子相互作用。在一定密度以上,我们有一个集体(D)于棒(S)态,其量子数与抗钾离子相同。横条(S)状态上(K)的出现是由kaon和重子之间的轴向矢量相互作用的时间分量引起的。结果表明,该系统对于在棒(S)对上的K-(K)缩合变得不稳定。我们考虑有效的重子质量如何影响来自轴矢量相互作用的时间分量的kaon自能。此外,结合高密度物质基态中的A混合效应,讨论了轴矢量相互作用的空间分量对集体钾离子态可能存在的作用:K(K)对棒的影响简要提到了高能重离子碰撞的(S)冷凝。 (c)2005 Elsevier B.V.保留所有权利。

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