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Заглавие документа: Foldy-Wouthuysen transformation and multiwave states of a graphene electron in external fields and free (2+1)-space
Авторы: Silenko, A.J.
Тема: ЭБ БГУ::ЕСТЕСТВЕННЫЕ И ТОЧНЫЕ НАУКИ::Физика
Дата публикации: 2024
Издатель: IOPscience
Библиографическое описание источника: Phys. Scr. 2024; 99: 025905
Аннотация: The relativistic Foldy-Wouthuysen transformation is used for an advanced description of planar graphene electrons in external fields and free (2+1)-space. It is shown that the initial Dirac equation should by based on the usual (4 × 4) Dirac matrices but not on the reduction of matrix dimensions and the use of (2 × 2) Pauli matrices. Nevertheless, the both approaches agree with the experimental data on graphene electrons in a uniform magnetic field. The pseudospin of graphene electrons is not the one-value spin and takes the values ±1/2. The exact Foldy-Wouthuysen Hamiltonian of a graphene electron in uniform and nonuniform magnetic fields is derived. The exact energy spectrum agreeing with the experiment and exact Foldy-Wouthuysen wave eigenfunctions are obtained. These eigenfunctions describe multiwave (structured) states in the (2+1)-space. It is proven that the Hermite-Gauss beams exist even in the free space. In the multiwave Hermite-Gauss states, graphene electrons acquire nonzero effective masses dependent on a quantum number and move with group velocities which are less than the Fermi velocity. Graphene electrons in a static electric field also can exist in the multiwave Hermite-Gauss states defining non-spreading coherent beams. These beams can be accelerated and decelerated.
URI документа: https://elib.bsu.by/handle/123456789/324700
DOI документа: 10.1088/1402-4896/ad16c9
Финансовая поддержка: Support by the Chinese Academy of Sciences President’s International Fellowship Initiative (Grant No. 2019VMA0019) and hospitality and support by the Institute of Modern Physics of the Chinese Academy of Sciences.
Лицензия: info:eu-repo/semantics/openAccess
Располагается в коллекциях:Статьи НИУ «Институт ядерных проблем»

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