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An effective chiral lagrangian approach to kaon-nuclear interactions: kaonic atom and kaon condensation

机译:一种有效的手性拉格朗日方法,用于钾-核相互作用:钾原子和钾缩合

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摘要

On-shell kaon-nucleon scattering, kaonic atom and kaon condensation are treated on the same footing by means of a chiral perturbation expansion to the next-to-next-to-leading order (``N^2LO"). Constraining the low-energy constants in the chiral Lagrangian by on-shell KN scattering lengths and kaonic atom data, the off-shell s-wave scattering amplitude up to one-loop order corresponding to N^2LO and the critical density of kaon condensation up to in-medium two-loop order are computed. The effects on kaon-proton scattering of the quasi-bound \Lambda (1405) and on kaonic atoms and kaon condensation of \Lambda (1405)-proton-hole excitations through four-Fermi interactions are studied to all orders in density within the in-medium two-loop approximation. It is found that the four-Fermi interaction terms in the chiral Lagrangian play an essential role in providing attraction for kaonic atoms, thereby inducing condensation but the critical density is remarkably insensitive to the strength of the four-Fermi interaction that figures in kaonic atoms. The prediction for the critical density is extremely robust and gives -- for ``natural" values of the four-Fermi interactions -- a rather low critical density, \rho_c \lsim 4 \rho_0. When the BR scaling is suitably implemented, the condensation sets in at \rho_c\simeq 2\, \rho_0 with loop corrections and four-Fermi interactions playing a minor role.
机译:通过手性扰动扩展到下一个到前一个阶(“ N ^ 2LO”),在相同的位置上处理壳上的钾-核子散射,钾原子和钾缩合。壳上KN散射长度和钾离子数据,在手性拉格朗日方程中的能量常数,壳外s波散射幅度高达对应于N ^ 2LO的单环阶数,以及钾离子凝结的临界密度直至-计算了中间的两环级,研究了通过四费米相互作用对准键\ Lambda(1405)的质子-质子散射和对Lambda(1405)-质子-空穴的质子激发和钾离子凝结的影响。中等二环近似中所有密度的阶数,发现手性拉格朗日方程中的四费米相互作用项在提供对钾离子的吸引方面起着至关重要的作用,从而引起凝聚,但临界密度非常不敏感达到t的强度他的四费米相互作用以钾原子表示。临界密度的预测非常稳健,并且对于四费米相互作用的“自然”值,给出了相当低的临界密度\ rho_c \ lsim 4 \ rho_0。缩合设置为\ rho_c \ simeq 2 \,\ rho_0,其中循环校正和四费米相互作用较小。

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