Triangular and hexagonal multilayer phosphorene quantum dots with armchair and zigzag terminations are investigated with the orthogonal tight-binding model. The effect of increasing the number of layers is revealed. The obtained results show that in a small size multilayer quantum dot, the edge states are as sensitive to the out-of-plane external electric fields as the edge states in a single layer dot to the in-plane external electric fields. The investigated optical absorption cross sections show that armchair phosphorene quantum dots have a regular behavior which should be useful for infrared detectors. In particular, it was found that in hexagonal armchair phosphorene dots, absorption peaks can be increased, decreased, or totally remove...
Semiconducting quantum dots, whose particle sizes are in the nanometer range, have very unusual prop...
We investigate theoretically the magnetic levels and optical properties of zigzag- and armchair-edge...
The electronic and interband optical properties of vertically coupled stacked graphene quantum dots ...
Triangular and hexagonal multilayer phosphorene quantum dots with armchair and zigzag terminations a...
We study electronic and optical properties of single layer phosphorene quantum dots with various sha...
We theoretically investigate the confined states of the bilayer triangular phosphorene dots and anti...
International audienceWe study numerically the optical properties of low-buckled silicene and AB-sta...
This is the final version of the article. Available from APS via the DOI in this record.There are tw...
Density functional theory calculations are performed on phosphorene quantum dots having different sh...
Abstract Electronic and optical responses of zigzag- and armchair-edge quasi-one-dimensional phospho...
Based on a rectangular phosphorene quantum dot (PQD) we perform a systematical investigation into th...
Using the Tight Binding (TB) parameters extracted from Density Functional Theory (DFT) and Recursive...
This thesis is an investigation of infrared electro-absorption at room temperature in electrochemica...
Individual and multi quantum dots of InAs are studied by means of microphotoluminescence in case whe...
MELO, H. A. Adição de partículas em pontos quânticos de fosforeno. 2019. 84 f. Tese (Doutorado em Fí...
Semiconducting quantum dots, whose particle sizes are in the nanometer range, have very unusual prop...
We investigate theoretically the magnetic levels and optical properties of zigzag- and armchair-edge...
The electronic and interband optical properties of vertically coupled stacked graphene quantum dots ...
Triangular and hexagonal multilayer phosphorene quantum dots with armchair and zigzag terminations a...
We study electronic and optical properties of single layer phosphorene quantum dots with various sha...
We theoretically investigate the confined states of the bilayer triangular phosphorene dots and anti...
International audienceWe study numerically the optical properties of low-buckled silicene and AB-sta...
This is the final version of the article. Available from APS via the DOI in this record.There are tw...
Density functional theory calculations are performed on phosphorene quantum dots having different sh...
Abstract Electronic and optical responses of zigzag- and armchair-edge quasi-one-dimensional phospho...
Based on a rectangular phosphorene quantum dot (PQD) we perform a systematical investigation into th...
Using the Tight Binding (TB) parameters extracted from Density Functional Theory (DFT) and Recursive...
This thesis is an investigation of infrared electro-absorption at room temperature in electrochemica...
Individual and multi quantum dots of InAs are studied by means of microphotoluminescence in case whe...
MELO, H. A. Adição de partículas em pontos quânticos de fosforeno. 2019. 84 f. Tese (Doutorado em Fí...
Semiconducting quantum dots, whose particle sizes are in the nanometer range, have very unusual prop...
We investigate theoretically the magnetic levels and optical properties of zigzag- and armchair-edge...
The electronic and interband optical properties of vertically coupled stacked graphene quantum dots ...