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Generalised Ramachandran pairing interaction in helium-4 and helium-3 superfluids

机译:氦-4和氦-3超流体中的广义Ramachandran配对相互作用

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We make use of the ionisation energy theory, Ramachandran interaction theory and the energy-level spacing renormalisation group technique to extend the Drude Hamiltonian to derive the Ramachandran pairing mechanism. This particular mechanism is exploited to explain the notorious discontinuous jumps in the specific heat data at critical points in both He-4 and He-3 superfluids. The well-known spin states (due to Balian–Werthamer and Anderson–Brinkman–Morel theories) and the Leggett’s spontaneously broken spin-orbit symmetry are shown to enhance Ramachandran attraction between two He-3 atoms without the need to invoke the spin-induced pairing or the phonon-mediated Cooper pairing mechanism in superconductors. In addition, we shall show physically that the spin-exchange mechanism can neither cause pairing between electrons nor between He-3 atoms.
机译:我们利用离子化能源理论,朗走银行相互作用理论和能级间距重新定位组技术来延长博德·哈密尔顿人来推导雷兰德勒配对机制。 这种特殊的机制被利用来解释HE-4和HE-3 Superfluids的关键点处的特定热数据中的臭名昭着的不连续跳跃。 众所周知的旋转状态(由于巴利人 - 喝酒和Anderson-Brinkman-Morel理论)和Leggett的自发性破碎轨道对称性被证明可以增强两个HE-3原子之间的Ramachandran吸引力,而无需调用旋转引起的诱导的 配对或子位介导的超导体中的Cooper配对机制。 此外,我们将在物理上表明自旋交换机制既不会导致电子之间也不会在HE-3原子之间配对。

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