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  5. Tunable transparency and group delay in cavity optomechanical systems with degenerate fermi gas
 
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Tunable transparency and group delay in cavity optomechanical systems with degenerate fermi gas

Journal
Photonics
ISSN
2304-6732
Date Issued
2023
Author(s)
Fatin Nadiah Yusoff
Universiti Malaysia Perlis
Muhammad Afiq Zulkifli
Universiti Malaysia Perlis
Norshamsuri Ali @ Hasim
Universiti Malaysia Perlis
Shailendra Kumar Singh
Muffakham Jah College of Engineering & Technology
Nooraihan Abdullah
Universiti Malaysia Perlis
Nor Azura Malini Ahmad Hambali
Universiti Malaysia Perlis
Collins Okon Edet
Cross River University of Technology, Nigeria
DOI
10.3390/photonics10030279
Handle (URI)
https://www.mdpi.com/2304-6732/10/3/279
https://www.mdpi.com/
https://hdl.handle.net/20.500.14170/15212
Abstract
We theoretically investigate the optical response and the propagation of an external probe field in a Fabry–Perot cavity, which consists of a mechanical mode of trapped, ultracold, fermionic atoms inside and simultaneously driven by an optical laser field. We investigate the electromagnetically-induced transparency due to coupling of the optical cavity field with the collective density excitations of the ultracold fermionic atoms via radiation pressure force. Moreover, we discuss the variations in the phase and group delay of the transmitted probe field with respect to effective cavity detuning as well as pumping power. It is observed that the transmitted field is lagging in this fermionic cavity optomechanical system. Our study shall provide a method to control the propagation as well as the speed of the transmitted probe field in this kind of fermionic, ultracold, atom-based, optomechanical cavity system, which might have potential applications in optical communications, signal processing and quantum information processing.
Subjects
  • Electromagnetically-I...

  • Fabry–Perot Cavity

  • Fictitious Fermionic ...

  • Optomechanics

  • Transmission Coeffici...

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Tunable Transparency and Group Delay in Cavity Optomechanical Systems with Degenerate Fermi Gas.pdf (365.8 KB)
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