Modeling of InGaN/GaAs Photovoltaic Tandem with GaAs/AlAs Bragg Mirror Rear Surface Reflector

Cilt: 4 Sayı: 3 1 Eylül 2014
  • Fayçal Bouzid
  • Nedjedia Benaziez
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Modeling of InGaN/GaAs Photovoltaic Tandem with GaAs/AlAs Bragg Mirror Rear Surface Reflector

Abstract

In this work, a parametric study of a dual junction tandem based on In0.53Ga0.47N on GaAs has been carried. In order to obtain reflection of unabsorbed photons from the bottom of the device, Bragg reflectors (BR) composed of GaAs/AlAs, with appropriate thicknesses, was placed in the rear surface of the GaAs sub-cell. With this intention, the current-voltage curves are calculated for different front recombination velocities and the influence of the bottom cell thickness on efficiency has been studied. The results of simulation show that the structure’s efficiency can attain 29% under 1-sun AM1.5 illumination, for a front recombination velocity value of 1e3cm/s and 10µm bottom cell thickness. This efficiency will decrease with increasing the operating temperature.

Keywords

Kaynakça

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  3. K. Nandy, S. Biswas, R. Bhattacharyya, S. N. Saha, A. Deyasi, ”Novel Band-Reject Filter Design Using Multilayer Bragg Mirror at 1550 nm”, Computer Science & Information Technology, ACER 2013, pp. 419-425,2013.
  4. I. I. Ivanov, T. V. Nychyporuk, V. A. Skryshevsky, M. Lemiti, “Thin silicon solar cells with SiОх/SiNx Bragg mirror rear surface reflector”, Semiconductor Physics, Quantum Electronics, Optoelectronics, V. 12, N 4, pp. 406-411, 2009.
  5. R. H. Sara, M. J. A. de Dood, and H. Kim, “Ultrafast optical response of a high-reflectivity GaAs/AlAs Bragg mirror”, Appl. Phys. Lett, 86, 031109.1-3, 2005.
  6. S. M. Sze and K. K. Ng, Physics of Semiconductor Devices, Third Edition, John Wiley, Interscience, 2006.
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Ayrıntılar

Birincil Dil

İngilizce

Konular

-

Bölüm

-

Yazarlar

Fayçal Bouzid Bu kişi benim

Nedjedia Benaziez Bu kişi benim

Yayımlanma Tarihi

1 Eylül 2014

Gönderilme Tarihi

3 Şubat 2016

Kabul Tarihi

-

Yayımlandığı Sayı

Yıl 2014 Cilt: 4 Sayı: 3

Kaynak Göster

APA
Bouzid, F., & Benaziez, N. (2014). Modeling of InGaN/GaAs Photovoltaic Tandem with GaAs/AlAs Bragg Mirror Rear Surface Reflector. International Journal Of Renewable Energy Research, 4(3), 759-766. https://izlik.org/JA83DP59UZ
AMA
1.Bouzid F, Benaziez N. Modeling of InGaN/GaAs Photovoltaic Tandem with GaAs/AlAs Bragg Mirror Rear Surface Reflector. International Journal Of Renewable Energy Research. 2014;4(3):759-766. https://izlik.org/JA83DP59UZ
Chicago
Bouzid, Fayçal, ve Nedjedia Benaziez. 2014. “Modeling of InGaN/GaAs Photovoltaic Tandem with GaAs/AlAs Bragg Mirror Rear Surface Reflector”. International Journal Of Renewable Energy Research 4 (3): 759-66. https://izlik.org/JA83DP59UZ.
EndNote
Bouzid F, Benaziez N (01 Eylül 2014) Modeling of InGaN/GaAs Photovoltaic Tandem with GaAs/AlAs Bragg Mirror Rear Surface Reflector. International Journal Of Renewable Energy Research 4 3 759–766.
IEEE
[1]F. Bouzid ve N. Benaziez, “Modeling of InGaN/GaAs Photovoltaic Tandem with GaAs/AlAs Bragg Mirror Rear Surface Reflector”, International Journal Of Renewable Energy Research, c. 4, sy 3, ss. 759–766, Eyl. 2014, [çevrimiçi]. Erişim adresi: https://izlik.org/JA83DP59UZ
ISNAD
Bouzid, Fayçal - Benaziez, Nedjedia. “Modeling of InGaN/GaAs Photovoltaic Tandem with GaAs/AlAs Bragg Mirror Rear Surface Reflector”. International Journal Of Renewable Energy Research 4/3 (01 Eylül 2014): 759-766. https://izlik.org/JA83DP59UZ.
JAMA
1.Bouzid F, Benaziez N. Modeling of InGaN/GaAs Photovoltaic Tandem with GaAs/AlAs Bragg Mirror Rear Surface Reflector. International Journal Of Renewable Energy Research. 2014;4:759–766.
MLA
Bouzid, Fayçal, ve Nedjedia Benaziez. “Modeling of InGaN/GaAs Photovoltaic Tandem with GaAs/AlAs Bragg Mirror Rear Surface Reflector”. International Journal Of Renewable Energy Research, c. 4, sy 3, Eylül 2014, ss. 759-66, https://izlik.org/JA83DP59UZ.
Vancouver
1.Fayçal Bouzid, Nedjedia Benaziez. Modeling of InGaN/GaAs Photovoltaic Tandem with GaAs/AlAs Bragg Mirror Rear Surface Reflector. International Journal Of Renewable Energy Research [Internet]. 01 Eylül 2014;4(3):759-66. Erişim adresi: https://izlik.org/JA83DP59UZ