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Tunneling in Chemical Reactions
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As for recent progress in the tunneling in chemical reactions, see (a) A special issue on Tunneling in Chemical Reactions, edited by V. A. Benderskii, V. I. Goldanskii and J. Jortner [Chem. Phys. 170 (1993)] (b) V. A. Benderskii, D. Makarov, and C. A. Wight, Adv. Chem. Phys. 88, 1 (1994).
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Benderskii, V.A.1
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As for recent progress in the tunneling in chemical reactions, see (a) A special issue on Tunneling in Chemical Reactions, edited by V. A. Benderskii, V. I. Goldanskii and J. Jortner [Chem. Phys. 170 (1993)] (b) V. A. Benderskii, D. Makarov, and C. A. Wight, Adv. Chem. Phys. 88, 1 (1994).
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Benderskii, V.A.1
Makarov, D.2
Wight, C.A.3
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Recently, H. Nakamura and C. Zhu have solved analytically a one-dimensional tunneling problem the barrier of which is caused by the nonadiabatic coupling, which was one of the ultimate problems in semiclassical theory for tunneling and nonadiabatic transitions; C. Zhu and H. Nakamura, J. Chem. Phys. 102, 7448 (1995); See for a review, H. Nakamura and C. Zhu, Comments At. Mol. Phys. 32, 249 (1996).
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Zhu, C.1
Nakamura, H.2
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Recently, H. Nakamura and C. Zhu have solved analytically a one-dimensional tunneling problem the barrier of which is caused by the nonadiabatic coupling, which was one of the ultimate problems in semiclassical theory for tunneling and nonadiabatic transitions; C. Zhu and H. Nakamura, J. Chem. Phys. 102, 7448 (1995); See for a review, H. Nakamura and C. Zhu, Comments At. Mol. Phys. 32, 249 (1996).
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Comments At. Mol. Phys.
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Nakamura, H.1
Zhu, C.2
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K. Takatsuka (unpublished). For the Maslov type semiclassical theory, see K. Takatsuka and A. Inoue, Phys. Rev. Lett. 78, 1404 (1997); see also Ref. 17.
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