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CONCLUSION  BEST SCIENTIFIC


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CONCLUSION 


BEST SCIENTIFIC
RESEARCH - 2022 
229 
The energy redistribution of electrons and holes in the conduction and valence zones 
under the influence of the ХХ wave in the p-n transition causes different shifts of the quasi-
hypopotentials of the electron and hole gases in the p- and n-fields of the diode. As a result, 
electrons begin to move from the n-axis to the p-axis along the conduction band. The 
generated injection currents occur without applying any external voltage. Therefore, we call 
this injection the injection of heated electrons. As a result of the injection, the concentration 
of electrons is higher than the equilibrium state. This, in turn, causes an increase in 
recombination currents, and direct current begins to flow through the diode. 
In such a case, three holes in the valence band are also appropriate. 
The heating of the holes in the valence zone causes the holes in the p-field to be 
injected into the p-n junction volume charge field and into the n-field of the diode. We can 
call this phenomenon the injection of heated cavities. Thus, all transitions of charge carriers 
in their zones lead to an increase in recombination currents. Under the influence of the 
O`YCH field, the rectification of the O`YCH current in the p-n transition takes place due to 
the energetic and spatial redistribution of electrons and holes in their zones. Under the 
influence of the O`YCH field, the p-n periodically changing the height of the potential barrier 
leads to periodic changes in the concentrations of charge carriers. The change of the 
potential barrier height of the p-n junction depending on the external voltage causes the 
periodic redistribution of the concentrations of the main and non-main charge carriers in the 
p-n junction. recombination currents increase as a result of this redistribution. This is the 
rectification of the MIN current in the p-n junction diode. 
Usually, since both heating and rectification are related to the increase of 
recombination currents, the currents generated by them and EIK are in the same direction. 
We come to the conclusion that it produces currents in the direction. 
REFERENCES: 
[1]
E. G. a. R. Agrawal, « “A commentary on the US policies for efficient large scale 
renewable energy storage systems: Fo
cus on carbon storage cycles,» ” Energy Policy, 
vol. 88, pp. 477
–484, 2016, doi: 10.1016/j.enpol.2015.11.003..



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