The temperature characteristics of GaAs solar cells with 0, 1, 5, 10 and 15 rows of GaInAs quantum objects have been investigated. Introducing of quantum objects into GaAs p-n junction leads to open circuit voltage drop due to the changing recombination transition energy from GaAs energy gap value to the effective one (Egeff = EgGaAs − ΔEg). It has been experimentally shown that Egeff is increasing with quantum object rows number. The dependences of photogenerated current and ΔEg on the number of quantum object rows have been obtained. Both dependences have been described by linear approximation. Using such dependencies it is possible to construct IV-curves and other photovoltaic characteristics for GaAs solar cells with any number of GaInAs quantum object rows.
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26 August 2019
15th International Conference on Concentrator Photovoltaic Systems (CPV-15)
25–27 March 2019
Fes, Morocco
Research Article|
August 26 2019
GaAs subcell of triple-junction solar cells with hybrid quantum objects: Temperature photovoltaic characteristics
Mikhail Mintairov;
Mikhail Mintairov
a)
1
Submicron Heterostructures for Microelectronics, Research & Engineering Center RAS
, 26 Polytechnicheskaya str., St.-Petersburg, 194021, Russia
a)Corresponding author: mamint@scell.ioffe.ru
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Valery Evstropov;
Valery Evstropov
2
Ioffe Institute
, 26 Polytechnicheskaya str., St.-Petersburg, 194021, Russia
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Sergey Mintairov;
Sergey Mintairov
2
Ioffe Institute
, 26 Polytechnicheskaya str., St.-Petersburg, 194021, Russia
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Maxim Shvarts;
Maxim Shvarts
2
Ioffe Institute
, 26 Polytechnicheskaya str., St.-Petersburg, 194021, Russia
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Nikolay Kalyuzhnyy
Nikolay Kalyuzhnyy
2
Ioffe Institute
, 26 Polytechnicheskaya str., St.-Petersburg, 194021, Russia
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a)Corresponding author: mamint@scell.ioffe.ru
AIP Conf. Proc. 2149, 080005 (2019)
Citation
Mikhail Mintairov, Valery Evstropov, Sergey Mintairov, Maxim Shvarts, Nikolay Kalyuzhnyy; GaAs subcell of triple-junction solar cells with hybrid quantum objects: Temperature photovoltaic characteristics. AIP Conf. Proc. 26 August 2019; 2149 (1): 080005. https://doi.org/10.1063/1.5124215
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