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Pisma v Zhurnal Tekhnicheskoi Fiziki, 2022 Volume 48, Issue 7, Pages 12–15 (Mi pjtf7274)

Lasing in Tamm plasmon-based microcavities with intracavity metallic contacts and organic active area

K. M. Morozova, A. V. Belonovskiiab, E. I. Girshovaab, V. V. Nikolaevb

a St. Petersburg National Research University of Information Technologies, Mechanics and Optics, St. Petersburg, Russia
b Alferov Federal State Budgetary Institution of Higher Education and Science Saint Petersburg National Research Academic University of the Russian Academy of Sciences, St. Petersburg, Russia

Abstract: Vertical-cavity surface-emitting laser design with organic light-emitting material 4,4'-bis[4-(di-$p$-tolylamino)styryl]biphenyl and intracavity metal contacts of two types are proposed. In the first design, two Bragg mirrors and two thin metal layers adjacent to the active region utilizes. In the second design one Bragg mirror with a thin metal layer and for the second mirror the thick metal layers uses. Mode structure, the spatial distribution of the optical fields, Purcell factor and the dependence of the output power on the pump power were calculated.

Keywords: Tamm plasmon, organic semiconductor, vertical-cavity surface-emitting laser, exciton.

Received: 10.12.2021
Revised: 13.01.2022
Accepted: 13.01.2022

DOI: 10.21883/PJTF.2022.07.52285.19104



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