Study on modulation of near infrared radiation based on plasma photonic crystal

In this paper, a plasma photonic crystal (PPC) for infrared radiation modulation which is composed of indium tin oxide (ITO) and plasma is proposed. The performance of plasma photonic crystal in near infrared radiation modulation is researched by transfer matrix method (TMM). The simulation results...

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Veröffentlicht in:Current applied physics 2020, 20(8), , pp.961-966
Hauptverfasser: Hao, Jiong-Ju, Xie, Xun, Gu, Ke-Da, Liu, Yu-Jie, Xia, Lei, Yang, Hong-Wei
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Sprache:eng
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Zusammenfassung:In this paper, a plasma photonic crystal (PPC) for infrared radiation modulation which is composed of indium tin oxide (ITO) and plasma is proposed. The performance of plasma photonic crystal in near infrared radiation modulation is researched by transfer matrix method (TMM). The simulation results show that the near infrared radiation pass band can be adjusted by the changing of plasma frequency of plasma. The reflection to near infrared radiation by plasma photonic crystal increases with plasma frequency and that of absorption decreases. In addition, the modulation performance of the plasma photonic crystal at different incidence wave angles is also studied. The results show that the incident wave angles have little effect on the transmission of plasma photonic crystal in near infrared band. The reflection of the plasma photonic crystal to near infrared radiation decreases with increasing of the incident wave angle, but that of the absorption increases with the incident wave angle. Therefore, the proposed plasma photonic crystal has a potential application in tunable near infrared filter devices. [Display omitted] •A plasma photonic crystal composed of ITO and plasma is proposed.•The performance of PPC in near infrared radiation modulation is researched by TMM.•The near infrared radiation pass band can be adjusted by plasma frequency.•The PPC has a potential application in tunable near infrared filter devices.
ISSN:1567-1739
1878-1675
DOI:10.1016/j.cap.2020.06.015