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- W2967626972 abstract "It was shown recently that the discrete scaling symmetry, which underlies the Efimov effect in the three identical boson system with two-body short-range interactions, survives when single-particle one-dimensional (1D) spin-orbit coupling terms are added to the Hamiltonian. Each three-body energy level in the ordinary Efimov scenario turns into an energy manifold that contains four energy levels in the presence of 1D spin-orbit coupling (equal mixture of Rashba-Dresselhaus coupling). This work provides a detailed characterization of the energy levels in these manifolds. The two-boson energies, which enter into the three-boson scattering threshold, are analyzed in detail. Moreover, the structural properties, e.g., momentum distributions of the two- and three-boson systems, are analyzed for various parameter combinations." @default.
- W2967626972 created "2019-08-22" @default.
- W2967626972 creator A5026750921 @default.
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- W2967626972 date "2019-10-21" @default.
- W2967626972 modified "2023-09-25" @default.
- W2967626972 title "Energetics and structural properties of two- and three-boson systems in the presence of one-dimensional spin-orbit coupling" @default.
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- W2967626972 doi "https://doi.org/10.1103/physreva.100.042708" @default.
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