Coulomb Problem for Z > Zcr in Doped Graphene
- Авторлар: Kuleshov V.M.1, Mur V.D.1, Fedotov A.M.1, Lozovik Y.E.1,2
-
Мекемелер:
- National Research Nuclear University MEPhI
- Institute of Spectroscopy
- Шығарылым: Том 125, № 6 (2017)
- Беттер: 1144-1162
- Бөлім: Electronic Properties of Solid
- URL: https://journals.rcsi.science/1063-7761/article/view/191704
- DOI: https://doi.org/10.1134/S1063776117120160
- ID: 191704
Дәйексөз келтіру
Аннотация
The dynamics of charge carriers in doped graphene, i.e., graphene with a gap in the energy spectrum depending on the substrate, in the presence of a Coulomb impurity with charge Z is considered within the effective two-dimensional Dirac equation. The wave functions of carriers with conserved angular momentum J = M + 1/2 are determined for a Coulomb potential modified at small distances. This case, just as any two-dimensional physical system, admits both integer and half-integer quantization of the orbital angular momentum in plane, M = 0, ±1, ±2, …. For J = 0, ±1/2, ±1, critical values of the effective charge Zcr(J, n) are calculated for which a level with angular momentum J and radial quantum numbers n = 0 and n = 1 reaches the upper boundary of the valence band. For Z < Zcr (J, n = 0), the energy of a level is presented as a function of charge Z for the lowest values of orbital angular momentum M, the level with J = 0 being the first to descend to the band edge. For Z>Zcr (J, n = 0), scattering phases are calculated as a function of hole energy for several values of supercriticality, as well as the positions ε0 and widths γ of quasistationary states as a function of supercriticality. The values of ε0* and width γ* are pointed out for which quasidiscrete levels may show up as Breit–Wigner resonances in the scattering of holes by a supercritical impurity. Since the phases are real, the partial scattering matrix is unitary, so that the radial Dirac equation is consistent even for Z > Zcr. In this single-particle approximation, there is no spontaneous creation of electron–hole pairs, and the impurity charge cannot be screened by this mechanism.
Авторлар туралы
V. Kuleshov
National Research Nuclear University MEPhI
Хат алмасуға жауапты Автор.
Email: kuleshov.val@gmail.com
Ресей, Kashirskoe sh. 31, Moscow, 115409
V. Mur
National Research Nuclear University MEPhI
Email: kuleshov.val@gmail.com
Ресей, Kashirskoe sh. 31, Moscow, 115409
A. Fedotov
National Research Nuclear University MEPhI
Email: kuleshov.val@gmail.com
Ресей, Kashirskoe sh. 31, Moscow, 115409
Yu. Lozovik
National Research Nuclear University MEPhI; Institute of Spectroscopy
Email: kuleshov.val@gmail.com
Ресей, Kashirskoe sh. 31, Moscow, 115409; Troitsk, Moscow oblast, 142190
Қосымша файлдар
