<link rel="stylesheet" href="styles.f3b1fba60ec7970c.css">

Потенціал поля зарядженого квантового нанокільця

Вантажиться...
Ескіз

Дата

Назва журналу

Номер ISSN

Назва тому

DOI

Анотація

As a rule, the potential that confines the carriers of charge has a model character and concerns the localization of particles inside the quantum rings (QR). In practice some spatial charge turns off accumulating there and I can be controlled by special electrodes. Formed by this charge potential is determining factor for quantum dynamics of carriers belonged to the surrounding QR matrix. But studies of energetic spectra created by the appointed potential can not be considered as completed yet because of the applied model potentials are still very distant from reality. That is why in this work the potential of electric field created by uniform distributed in QR charge has been found beginning of the basic principles. The Poisson’s equation was resolved with Fourier’s transformation technique and the potential has been expressed in terms of elliptic integrals. Their parameters were established for small as well as large distances of QR.

Опис

УДК

Тип документа

Мова

ISSN

Бібліографічний опис

Бурдейний В. М., Касіяненко В. Х. Потенціал поля зарядженого квантового нанокільця // Матеріали LІII науково-технічної конференції підрозділів ВНТУ, Вінниця, 20-22 березня 2024 р. Електрон. текст. дані. 2024. URI: https://conferences.vntu.edu.ua/index.php/all-feeem/all-feeem-2024/paper/view/20476.

Схвалення

Рецензія

Доповнено

Цитується в

Список використаної літератури (12)

  1. Eigler D.M. Positioning single atoms with a scanning tunneling microscope /D.M.Eigler and E.K.Shweizer // Nature.−1990.−344.−P. 524-526.
  2. Crommie M. Confinement of electrons to quantum corrals on a metal surface/ M.F.Crommie, C.P.Lutz and D.M.Eigler// Science.−1993.−262(5131).−P. 218220.
  3. Pham Van Dong Quantum rings engineered by atom manipulation/ Van Dong Pham, Kiyoshi Kanisava and Stefan Fölsch // Phys Rev Lett.−2019.− 123.−P. 066801.
  4. .Vinasco J.A. Electronic states in Ga-As-(Al,GaA) eccentric quantum rings under nonresonant intense laser and magnetic fields/ Vinasco J.A., A.Radu, E.Nicolescu,M.E.Mora-Ramos,E.Feddi, V.Tulupenko, R.L.Restrepo, E.Kasapoglu, A.L.Morales and C.A.Duque// Scientific Reports.−2019.− 9.−1427.−Mode of access: https://doi.org/10.1038/s41598-018-38114-0
  5. Yun-Ran Wang Fabrication of quantum dot and ring arrays by direct laser interference patterning for nanophotonics/ Yun-Ran Wang, Im Sik Han and Mark Hopkinson //− Nanophotonics .−2023.−Vol.12, no.8,−P.1469-1479.− Mode of access:, https://DOI.org/10.1515/nanoph-2022-0584
  6. Garcia J.M. Intermixing and shape changes during the formation of InAs self-assembled quantum dots/J.M.Garcia, G.Medeiros-Ribeiro, K.Schmidt, T.Ngo,J.L.Feng, A.Lorke, J.Kotthaus and P.M.Petroff//Appl.Phys.Lett.−1997.−Vol.71.− P. 2014-2016.
  7. Climente J.I.Nanoscopic semiconductor quantum rings/ J.I.Climente and J.Planelles, Contributions to Science//.− 2007.−Vol.3, no.4.− P.447-457.−Mode of access: DOI:10.2436/20.7010.01.21
  8. Viefers S. Quantum rings for beginners: energy spectra and persistent currents/ S.Viefers, P.Koskinen, P.Singha Deo, Manninn// Physica E: Low-dimensional Systems and Nanostructures.−2004.−Vol.21, no.1.− P.1-45.
  9. Raphael J. The quantum mechanical problem of a particle on a ring with delta well/ J.Raphael, F.Berger// arXiv:2211.16149v1 [quant-ph] 29 Nov 2022.
  10. Cordeiro dos Santos Wylter Quantum problem of potential of a ring charged on the symmetry axis/ Wytler Cordeiro dos Santos, Bruno Carmo Nunes, and Ronni G.G.Amorim// arXiv:2304. 10378v1 [quan-ph], 17Apr 2023