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Left-Handed Nuclei

机译:左手核

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摘要

The orientation of the angular momentum vector with respect to the triaxial density distribution selects a left-handed or right-handed system principal axes. This breaking of chiral symmetry manifests itself as pairs of nearly identical ΔI = 1-bands. The chiral structures combine high-j particles and high-j holes with a triaxial rotor. Tilted axis cranking calculations predict the existence of such configurations in different mass regions. There is experimental evidence in odd-odd nuclei around mass 134. The quantized motion of the angular momentum vector between the left- and right-handed configurations, which causes the splitting between the chiral sister bands, can be classified as tunneling (chiral rotors) or oscillation (chiral vibrators).
机译:角动量矢量相对于三轴密度分布的方向选择左手系或右手系主轴。手性对称性的这种破坏将其自身表现为成对的几乎相同的ΔI= 1波段。手性结构将高j粒子和高j孔与三轴转子结合在一起。倾斜轴启动计算可预测在不同质量区域中此类配置的存在。在质量134周围奇数原子核中有实验证据。导致左旋和右旋构型之间的角动量矢量的量化运动导致手性姊妹能带分裂,可归类为隧穿(手性转子)或振荡(手性振动器)。

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