2025-02-23T00:23:00-05:00 DEBUG: VuFindSearch\Backend\Solr\Connector: Query fl=%2A&wt=json&json.nl=arrarr&q=id%3A%22irk-123456789-121161%22&qt=morelikethis&rows=5
2025-02-23T00:23:00-05:00 DEBUG: VuFindSearch\Backend\Solr\Connector: => GET http://localhost:8983/solr/biblio/select?fl=%2A&wt=json&json.nl=arrarr&q=id%3A%22irk-123456789-121161%22&qt=morelikethis&rows=5
2025-02-23T00:23:00-05:00 DEBUG: VuFindSearch\Backend\Solr\Connector: <= 200 OK
2025-02-23T00:23:00-05:00 DEBUG: Deserialized SOLR response

Light absorption by excited exciton states in layered InSe crystals

We investigated spectra of light absorption by excitons in InSe crystals of different thicknesses, both pure and doped with iron group impurities, at temperatures from 4.5 up to 100 К. It was shown that, along with the traditional direct optical transition (photon → exciton → photon) at k = 0, excit...

Full description

Saved in:
Bibliographic Details
Main Authors: Zhirko, Yu.I., Zharkov, I.P.
Format: Article
Language:English
Published: Інститут фізики напівпровідників імені В.Є. Лашкарьова НАН України 2002
Series:Semiconductor Physics Quantum Electronics & Optoelectronics
Online Access:http://dspace.nbuv.gov.ua/handle/123456789/121161
Tags: Add Tag
No Tags, Be the first to tag this record!
Description
Summary:We investigated spectra of light absorption by excitons in InSe crystals of different thicknesses, both pure and doped with iron group impurities, at temperatures from 4.5 up to 100 К. It was shown that, along with the traditional direct optical transition (photon → exciton → photon) at k = 0, exciton production and annihilation (accompanied with photon emission) occurs also via indirect vertical transition (photon ± phonon → exciton → photon ± phonon) at k ~ 0. For the n = 1 exciton state the direct and indirect vertical transitions were found to be compatible. For excited exciton states these transitions are not compatible; as a result, the integral intensity of absorption bands for excited exciton states, Kn, is over K⁰/n³ (where K⁰ is the classic value for the n = 1 exciton absorption band) and grows with temperature. For the n = 1 exciton state both symmetric and asymmetric (with phonon absorption only) indirect vertical transitions are considered.