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The approach by Ettore Majorana for non-adiabatic transitions between two quasi-crossing levels is revisited.
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G. F. Bassani, ed., “Ettore Majorana scientific papers. On occasion of the centenary of his birth,” (Springer, Berlin, 2006) Chap. Oriented atoms in a variable magnetic field, pp. 125–132
2006
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B. Damski and W. H. Zurek, “Adiabatic-impulse approximation for avoided level crossings: from phase-transition dynamics to Landau-Zener evolutions and back again,” Phys. Rev. A 73
2006
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F. Wilczek, “Majorana and condensed matter physics,” in The Physics of Ettore Majorana: Theoretical, Mathematical, and Phenomenological (Cambridge University Press, 2014) pp. 279–302
2014
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S. Esposito, The Physics of Ettore Majorana: Theoretical, Mathematical, and Phenomenological (Cambridge University Press, 2014)
2014
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Y. I. Rodionov, K. I. Kugel, and F. Nori, “Floquet spectrum and driven conductance in Dirac materials: Effects of Landau-Zener-Stückelberg-Majorana interferometry,” Phys. Rev. B 94
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2019
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M. Sillanpää, T. Lehtinen, A. Paila, Y. Makhlin, and P. Hakonen, “Continuous-time monitoring of Landau-Zener interference in a Cooper-pair box,” Phys. Rev. Lett. 96
2006
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S. N. Shevchenko, S. Ashhab, and F. Nori, “Landau–Zener–Stückelberg interferometry,” Phys. Rep. 492
2010
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2010
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H. Nakamura, Nonadiabatic Transition (World Scientific, 2011)
2011
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M. V. Moskalets, Scattering matrix approach to non-stationary quantum transport (World Scientific, 2011)
2011
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L. Landau, “Zur theorie der Energieubertragung,” Phyz. Z. Sowjetunion 1
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L. Landau, “Zur theorie der Energieubertragung II,” Phyz. Z. Sowjetunion 2
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S. Dogra, A. Vepsäläinen, and G. S. Paraoanu, “Majorana representation of adiabatic and superadiabatic processes in three-level systems,” Phys. Rev. Research 2
2020
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L. Cifarelli, ed., “Scientific Papers of Ettore Majorana,” (Springer, Berlin, 2020) Chap. Oriented atoms in a variable magnetic field, pp. 77–84
2020
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L. Cifarelli, ed., “Scientific Papers of Ettore Majorana,” (Springer, Berlin, 2020) Chap. Comment on: ”Oriented atoms in a variable magnetic field”, by M. Inguscio, pp. 85–88
2020
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2022
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T. Suzuki and H. Nakazato, “Generalized adiabatic impulse approximation,” Phys. Rev. A 105
2022
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