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dc.contributor.authorBoussettine, A.A.-
dc.contributor.authorBelhadji, Y.-
dc.contributor.authorBenmansour, A.-
dc.date.accessioned2013-04-10T09:46:20Z-
dc.date.available2013-04-10T09:46:20Z-
dc.date.issued2012-
dc.identifier.urihttp://dspace.univ-tlemcen.dz/handle/112/1731-
dc.description.abstractModeling of thin-film silicon solar cell requires taking, the electronic structure and opto-electronic properties of the different amorphous layers into account.However, one of the programs which are convivial for this application is AMPS-1D. In this work, We have performed a Computer modeling of a-Si:H/a-SiGe:H tandem solar cells with p-i-n/p-i-n configuration using AMPS 1D. Initially, we have investigated the influence of the window layer thickness doped p in the efficiency of the amorphous silicon solar cell used as a top cel l; however we have analyzed this effect more particularly in the density of currents and quantum efficiency. Also, we have proved the interest of the choice of a-SiC as window layer instead of a-Si material. Secondly, we have modeled a-SiGe solar cell used as bottom cell in tandem configuration, we have also investigated the problem of the interface between materials constituting the solar cell, especially the interface a-SiC/a-SiGe. By a suitable choice of the tunnel junction, we have successfully modelled the Tandem a-Si/a-SiGe solar cell, and the simulation results demonstrate the performances boost of the cell comparing to single junction. The results obtained from simulation give a good agreement with experimental results.en_US
dc.language.isoenen_US
dc.subjecta-Si/a-SiGe tandem solar cellen_US
dc.subjectwindow layeren_US
dc.subjectAMPS 1Den_US
dc.subjecta-SiGe bottom cellen_US
dc.subjecta-SiCen_US
dc.titleModeling of Tandem Solar Cell a-Si/a-SiGe using AMPS-1D Programen_US
dc.typeArticleen_US
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