Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Jamal N. Jabir"'
Publikováno v:
Journal of Kufa-Physics, Vol 11, Iss 02 (2019)
This work studies the gain from plasmonic quantum dot (QD) nanolaser. A metal/semiconductor/metal (MSM) structure was considered to attain plasmonic nanocavity with active region contains: QD, wetting layer (WL) and barrier layers. Band alignment bet
Externí odkaz:
https://doaj.org/article/4895c778f613443eb0ad32fa5af5474c
Publikováno v:
Plasmonics. 15:1451-1458
The hybrid modes in the plasmonic quantum dot (QD) laser are modeled using the Marctili method. The model is then used to study the mode characteristics. The modes are going to cutoff point at zero propagation constant, while it goes to surface plasm
Publikováno v:
Journal of Kufa-Physics. 11:102-114
This work studies the gain from plasmonic quantum dot (QD) nanolaser. A metal/semiconductor/metal (MSM) structure was considered to attain plasmonic nanocavity with active region contains: QD, wetting layer (WL) and barrier layers. Band alignment bet
Publikováno v:
Plasmonics. 14:1881-1891
This study models quantum dot (QD) plasmonic nanolaser. A metal/semiconductor/metal (MSM) structure was considered to attain plasmonic nanocavity. The active region (semiconductor layers) contains the following: QD, wetting layer (WL), and barrier la
Publikováno v:
Journal of Physics: Conference Series. 1294:022031
This work studies the net modal gain from plasmonic quantum dot (QD) nanolaser. A metal/semiconductor/metal (MSM) structure was considered to attain plasmonic nanocavity with active region contains: QDs, wetting layer (WL) and barrier layers. Band al
Publikováno v:
Journal of Physics: Conference Series. 1234:012019
This work studies the gain from quantum dot plasmonic nanolaser. A metal/semiconductor/metal structure was considered to attain plasmonic nanocavity with active region contains: quantum dot, wetting layer and barrier layers. Band alignment between la
Publikováno v:
Journal of Physics: Conference Series; 2019, Vol. 1294 Issue 2, p1-1, 1p