In this study, we theoretically investigate the effect of hydrostatic pressure on the reflectance and transmittance properties of the one dimensional (1D) Defective Semiconductor Photonic Crystal (DSPhC) containing Germanium (Ge) and Silicon (Si). In this study the 1D Photonic Crystal (PhC) is composed of alternate layers of Ge and Si having a finite number of layers. In order to calculate the transmittance and reflectance spectra of the proposed PhC, the transfer matrix method [TMM] has been used. Using a theoretical model based on a TMM for both normal and oblique incidence angles transmission and reflectance spectra are obtained for the 1D DSPhC.

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Hydrostatic Pressure Effects on Transmittance and Reflectance Spectra in 1D Defective Semiconductor Photonic Crystals Under TE Mode Configuration

  • Chhaya Bhatia,
  • Yogesh Sharma,
  • Mirza Tanweer Ahmad Beig,
  • Shikha Shukla,
  • Rajiv Vatsa,
  • Akanksha Namdeo,
  • Sanjeev K. Srivastava,
  • Amodini Mishra,
  • A. N. Upadhyay

摘要

In this study, we theoretically investigate the effect of hydrostatic pressure on the reflectance and transmittance properties of the one dimensional (1D) Defective Semiconductor Photonic Crystal (DSPhC) containing Germanium (Ge) and Silicon (Si). In this study the 1D Photonic Crystal (PhC) is composed of alternate layers of Ge and Si having a finite number of layers. In order to calculate the transmittance and reflectance spectra of the proposed PhC, the transfer matrix method [TMM] has been used. Using a theoretical model based on a TMM for both normal and oblique incidence angles transmission and reflectance spectra are obtained for the 1D DSPhC.