- Richard A. Battye, P. M. Sutcliffe, “Knots as Stable Soliton Solutions in a Three-Dimensional Classical Field Theory”, Phys. Rev. Lett., 81, № 22, 1998, 4798
- R.S Ward, “The interaction of two Hopf solitons”, Physics Letters B, 473, № 3-4, 2000, 291
- Mark Hale, Oliver Schwindt, Tom Weidig, “Simulated annealing for topological solitons”, Phys. Rev. E, 62, № 3, 2000, 4333
- Elisabeth R. Shanblatt, David G. Grier, “Extended and knotted optical traps in three dimensions”, Opt. Express, 19, № 7, 2011, 5833
- C. Adam, J. M. Queiruga, J. Sanchez-Guillen, A. Wereszczynski, “Supersymmetrickfield theories and defect structures”, Phys. Rev. D, 84, № 6, 2011, 065032
- Xuguang Shi, “The shapes of the knots corresponding to the special Hopfions”, Eur. Phys. J. C, 83, № 8, 2023, 691
- Muneto Nitta, “Knots from wall-antiwall annihilations with stretched strings”, Phys. Rev. D, 85, № 12, 2012, 121701
- Ludvig Faddeev, Antti J. Niemi, Ulrich Wiedner, “Glueballs, closed fluxtubes, andη(1440)”, Phys. Rev. D, 70, № 11, 2004, 114033
- Vipul Kumar Pandey, Bhabani Prasad Mandal, “BRST symmetry for a torus knot”, EPL, 119, № 3, 2017, 31003
- X.-X. Yuan, L. He, S.-T. Wang, D.-L. Deng, F. Wang, W.-Q. Lian, X. Wang, C.-H. Zhang, H.-L. Zhang, X.-Y. Chang, L.-M. Duan, “Observation of Topological Links Associated with Hopf Insulators in a Solid-State Quantum Simulator”, Chinese Phys. Lett., 34, № 6, 2017, 060302