2007Nuclear TechniquesRequires access

Carbon ion irradiation effects on GaAs/Ge solar cells

Sun Xufang

Open publisher page 0 citations

Abstract

For simulating space environmental radiation a 2×1.7 MV tandem accelerator was used. GaAs/Ge solar cells were irradiated using 2 MeV C ions with the fluence from 3.1×109 to 6.9×1012 cm-2. Both I-V characteristics and spectral response were measured before and after irradiation. The results show that the Isc,Voc and Pmax of GaAs/Ge solar cells decrease as the irradiation fluence increases,and among them,Pmax decreases the most while Voc the least. This degradation rule is similar to that induced by proton irradiation. But to make Pmax of GaAs/Ge solar cells decrease to 50%,the required irradiation fluence of C ion is less than that of proton with the same range by two orders of magnitude. The spectral response of GaAs/Ge solar cells decreases more significantly in the long wavelength region than in the short wavelength region after C ion irradiation at a low fluence of 3.1×109 cm-2. When the fluence increases to more than 3.1×1010 cm-2,the spectral response in the whole wavelength region significantly degrades. As the fluence reaches to 2.3×1011 cm-2,the spectral response disappears.

About this research paper

What this paper is about

For simulating space environmental radiation a 2×1.7 MV tandem accelerator was used. GaAs/Ge solar cells were irradiated using 2 MeV C ions with the fluence from 3.1×109 to 6.9×1012 cm-2. Both I-V characteristics and spectral response were measured before and after irradiation. The results show that the Isc,Voc and Pmax of GaAs/Ge solar cells decrease as the irradiation fluence increases,and among them,Pmax decreases the most while Voc the least. This degradation rule is similar to that induced by proton irradiation. But to make Pmax of GaAs/Ge solar cells decrease to 50%,the required irradiation fluence of C ion is less than that of proton with the same range by two orders of magnitude. The spectral response of GaAs/Ge solar cells decreases more significantly in the long wavelength region than in the short wavelength region after C ion irradiation at a low fluence of 3.1×109 cm-2. When the fluence increases to more than 3.1×1010 cm-2,the spectral response in the whole wavelength region significantly degrades. As the fluence reaches to 2.3×1011 cm-2,the spectral response disappears.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

For simulating space environmental radiation a 2×1.7 MV tandem accelerator was used. GaAs/Ge solar cells were irradiated using 2 MeV C ions with the fluence from 3.1×109 to 6.9×1012 cm-2. Both I-V characteristics and spectral response were measured before and after irradiation. The results show that the Isc,Voc and Pmax of GaAs/Ge solar cells decrease as the irradiation fluence increases,and among them,Pmax decreases the most while Voc the least. This degradation rule is similar to that induced by proton irradiation. But to make Pmax of GaAs/Ge solar cells decrease to 50%,the required irradiation fluence of C ion is less than that of proton with the same range by two orders of magnitude. The spectral response of GaAs/Ge solar cells decreases more significantly in the long wavelength region than in the short wavelength region after C ion irradiation at a low fluence of 3.1×109 cm-2. When the fluence increases to more than 3.1×1010 cm-2,the spectral response in the whole wavelength region significantly degrades. As the fluence reaches to 2.3×1011 cm-2,the spectral response disappears.

Key concepts: Fluence, Irradiation, Proton, Materials science, Ion, Radiation, Wavelength, Range (aeronautics)

Related papers

Back to paper searchBrowse research topicsOriginal source
Carbon ion irradiation effects on GaAs/Ge solar cells — Research Paper | ScholarLens