In this paper, an attempt is made to study the influence of external light waves on the thermoelectric power under strong magnetic field (TPSM) in ultrathin films (UFs), quantum wires (QWs) and quantum dots (QDs) of optoelectronic materials whose unperturbed dispersion relation of the conduction electrons are defined by three and two band models of Kane together with parabolic energy bands on the basis of newly formulated electron dispersion laws in each case. We have plotted the TPSM as functions of film thickness, electron concentration, light intensity and wavelength for UFs, QWs and ODs of InSb, GaAs, Hg1-xCdxTe and In1-xGaxAsyP1-y respectively. It appears from the figures that for UFs, the TPSM increases with increasing thickness in qu...
We predict that conduction electrons in a semiconductor film containing a centered square array of m...
We investigate the photoemission from quantum wells (QWs) in ultrathin films (UFs) and quantum well ...
International audienceDepending on the minimum size of their micro/nanostructure, thin films can exh...
We study the thermoelectric power under classically large magnetic field (TPM) in ultrathin films ...
In this paper, we study the thermoelectric power under strong magnetic field (TPSM) in quantum dots ...
We study thermoelectric power under strong magnetic field (TPM) in carbon nanotubes (CNTs) and quant...
The photoemission from quantum wires and dots of effective mass superlattices of optoelectronic mate...
We present a simplified theoretical formulation of the thermoelectric power (TP) under magnetic quan...
We study the photoemission from quantum wire and quantum dot superlattices with graded interfaces of...
In this paper an attempt is made to study the thermoelectric power in quantum dots of non-parabolic ...
We present a simplified theoretical formulation of the Fowler-Nordheim field emission (FNFE) under m...
This book presents the dispersion relation in heavily doped nano-structures. The materials considere...
In this paper, we study the Debye screening length (DSL) in ultrathin films of optoelectronic materi...
We predict that conduction electrons in a semiconductor film containing a centered square array of m...
An attempt is made to study the electronic contribution to the second- and third-order elastic const...
We predict that conduction electrons in a semiconductor film containing a centered square array of m...
We investigate the photoemission from quantum wells (QWs) in ultrathin films (UFs) and quantum well ...
International audienceDepending on the minimum size of their micro/nanostructure, thin films can exh...
We study the thermoelectric power under classically large magnetic field (TPM) in ultrathin films ...
In this paper, we study the thermoelectric power under strong magnetic field (TPSM) in quantum dots ...
We study thermoelectric power under strong magnetic field (TPM) in carbon nanotubes (CNTs) and quant...
The photoemission from quantum wires and dots of effective mass superlattices of optoelectronic mate...
We present a simplified theoretical formulation of the thermoelectric power (TP) under magnetic quan...
We study the photoemission from quantum wire and quantum dot superlattices with graded interfaces of...
In this paper an attempt is made to study the thermoelectric power in quantum dots of non-parabolic ...
We present a simplified theoretical formulation of the Fowler-Nordheim field emission (FNFE) under m...
This book presents the dispersion relation in heavily doped nano-structures. The materials considere...
In this paper, we study the Debye screening length (DSL) in ultrathin films of optoelectronic materi...
We predict that conduction electrons in a semiconductor film containing a centered square array of m...
An attempt is made to study the electronic contribution to the second- and third-order elastic const...
We predict that conduction electrons in a semiconductor film containing a centered square array of m...
We investigate the photoemission from quantum wells (QWs) in ultrathin films (UFs) and quantum well ...
International audienceDepending on the minimum size of their micro/nanostructure, thin films can exh...