dorsal/arxiv
View SchemaThe Exotic Molecular Ion H_4^{3+} in a Strong Magnetic Field
| Authors | H. Olivares Pilón |
|---|---|
| Categories | |
| ArXiv ID | physics/0604081 |
| URL | https://arxiv.org/abs/physics/0604081 |
Abstract
Using the variational method, a detailed study of the lowest m = 0,-1 electronic states of the exotic molecular ion H_4^{3+} in a strong magnetic field, in the linear symmetric configuration parallel to the direction of the magnetic field is carried out. A extended study of the 1\sigma_g ground state (J.C. L\'opez and A. Turbiner, Phys. Rev. A 62, 022510, 2000) was performed obtaining that the potential energy curve displays a sufficiently deep minimum for finite internuclear distances, indicating the possible existence of the molecular ion H_4^{3+}, for magnetic fields of strength B \gtrsim 3x10^{13}G. It is demonstrated that the excited state 1\pi_u can exist for a magnetic field B = 4.414 x 10^{13}G corresponding to the limit of applicability of the non-relativistic theory.
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"abstract": "Using the variational method, a detailed study of the lowest m = 0,-1\nelectronic states of the exotic molecular ion H_4^{3+} in a strong magnetic\nfield, in the linear symmetric configuration parallel to the direction of the\nmagnetic field is carried out. A extended study of the 1\\sigma_g ground state\n(J.C. L\\\u0027opez and A. Turbiner, Phys. Rev. A 62, 022510, 2000) was performed\nobtaining that the potential energy curve displays a sufficiently deep minimum\nfor finite internuclear distances, indicating the possible existence of the\nmolecular ion H_4^{3+}, for magnetic fields of strength B \\gtrsim 3x10^{13}G.\nIt is demonstrated that the excited state 1\\pi_u can exist for a magnetic field\nB = 4.414 x 10^{13}G corresponding to the limit of applicability of the\nnon-relativistic theory.",
"arxiv_id": "physics/0604081",
"authors": [
"H. Olivares Pil\u00f3n"
],
"categories": [
"physics.atom-ph"
],
"title": "The Exotic Molecular Ion H_4^{3+} in a Strong Magnetic Field",
"url": "https://arxiv.org/abs/physics/0604081"
},
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