Finite element method for calculating spectral and optical characteristics of axially symmetric quantum dots

We present new calculation schemes using high-order finite element method implemented on unstructured grids with triangle elements for solving boundary-value problems that describe axially symmetric quantum dots. The efficiency of the algorithms and software is demonstrated by benchmark calculations of the energy spectrum, the envelope eigenfunctions of electron, hole and exciton states, and the direct interband light absorption in conical and spheroidal impenetrable quantum dots. © 2018 SPIE.

Авторы
Gusev A.A.1 , Chuluunbaatar O. 1, 2 , Vinitsky S.I. 1, 3 , Derbov V.L.4 , Hai L.L.5 , Kazaryan E.M.6 , Sarkisyan H.A.6, 7
Сборник материалов конференции
Издательство
SPIE
Язык
Английский
Статус
Опубликовано
Номер
1071712
Том
10717
Год
2018
Организации
  • 1 Joint Institute for Nuclear Research, Dubna, Russian Federation
  • 2 Institute of Mathematics, National University of Mongolia, Ulaanbaatar, Mongolia
  • 3 RUDN University, 6 Miklukho-Maklaya st, Moscow, 117198, Russian Federation
  • 4 N.G. Chernyshevsky Saratov National Research State University, Saratov, Russian Federation
  • 5 Ho Chi Minh City University of Education, Ho Chi Minh city, Viet Nam
  • 6 Russian-Armenian (Slavonic) University, H. Emin 123, Yerevan, 0051, Armenia
  • 7 Peter the Great Saint-Petersburg Polytechnic University, Polytechnicheskaya 29, St.-Petersburg, 195251, Russian Federation
Ключевые слова
Conical and spheroidal quantum dots; Energy spectra; Finite element method; Light absorption
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