Frequency tunable superflash based on an electromagnetically induced transparency (EIT)

We present a new controllable superflash, a maximum transient peak at the falling edge of a square pulse, using a three-level electromagnetically induced transparency (EIT). The superflash in a two-level system occurs at a certain value of the detuning of the probe laser (Delta(peak)) when the optic...

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Main Authors: Rahman, Abdul, Lee, Chang-Won, Jeong, Heejeong
Format: Article
Published: Optica Publishing Group 2022
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Online Access:http://eprints.um.edu.my/41606/
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spelling my.um.eprints.416062023-11-08T03:49:46Z http://eprints.um.edu.my/41606/ Frequency tunable superflash based on an electromagnetically induced transparency (EIT) Rahman, Abdul Lee, Chang-Won Jeong, Heejeong QC Physics We present a new controllable superflash, a maximum transient peak at the falling edge of a square pulse, using a three-level electromagnetically induced transparency (EIT). The superflash in a two-level system occurs at a certain value of the detuning of the probe laser (Delta(peak)) when the optical depth (OD) of the medium is sufficiently large and constant. Here, we show the external tunability of the Delta(peak )for obtaining the maximum transient peak by introducing a three-level EIT. Owing to the EIT dispersion properties, we effectively tune the phase of the forward-scattered light (E-s) by externally controlling the EIT coupling light intensities associated with the Rabi frequency (Omega(c)). When the incident light is turned off, the total transmitted field (E-t) experiences an out-of-phase shift, producing a peak intensity that is three times higher than the input. We observe that this new class of superflash (Type II) occurs near the Err window and exhibits inverse-linearity of the OD, which is in contrast with the characteristics of the previously reported two-level superflash (Type I). Furthermore, we find the quadratic nature of tunability in Delta(peak)(Omega(c)).The new tunability of the superflash by the Rabi frequency may facilitate more rapid and effective control of the superflash compared to a passive optical medium. (C) 2022 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement Optica Publishing Group 2022-07-18 Article PeerReviewed Rahman, Abdul and Lee, Chang-Won and Jeong, Heejeong (2022) Frequency tunable superflash based on an electromagnetically induced transparency (EIT). Optics Express, 30 (15). pp. 26570-26580. ISSN 1094-4087, DOI https://doi.org/10.1364/OE.463679 <https://doi.org/10.1364/OE.463679>. 10.1364/OE.463679
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic QC Physics
spellingShingle QC Physics
Rahman, Abdul
Lee, Chang-Won
Jeong, Heejeong
Frequency tunable superflash based on an electromagnetically induced transparency (EIT)
description We present a new controllable superflash, a maximum transient peak at the falling edge of a square pulse, using a three-level electromagnetically induced transparency (EIT). The superflash in a two-level system occurs at a certain value of the detuning of the probe laser (Delta(peak)) when the optical depth (OD) of the medium is sufficiently large and constant. Here, we show the external tunability of the Delta(peak )for obtaining the maximum transient peak by introducing a three-level EIT. Owing to the EIT dispersion properties, we effectively tune the phase of the forward-scattered light (E-s) by externally controlling the EIT coupling light intensities associated with the Rabi frequency (Omega(c)). When the incident light is turned off, the total transmitted field (E-t) experiences an out-of-phase shift, producing a peak intensity that is three times higher than the input. We observe that this new class of superflash (Type II) occurs near the Err window and exhibits inverse-linearity of the OD, which is in contrast with the characteristics of the previously reported two-level superflash (Type I). Furthermore, we find the quadratic nature of tunability in Delta(peak)(Omega(c)).The new tunability of the superflash by the Rabi frequency may facilitate more rapid and effective control of the superflash compared to a passive optical medium. (C) 2022 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement
format Article
author Rahman, Abdul
Lee, Chang-Won
Jeong, Heejeong
author_facet Rahman, Abdul
Lee, Chang-Won
Jeong, Heejeong
author_sort Rahman, Abdul
title Frequency tunable superflash based on an electromagnetically induced transparency (EIT)
title_short Frequency tunable superflash based on an electromagnetically induced transparency (EIT)
title_full Frequency tunable superflash based on an electromagnetically induced transparency (EIT)
title_fullStr Frequency tunable superflash based on an electromagnetically induced transparency (EIT)
title_full_unstemmed Frequency tunable superflash based on an electromagnetically induced transparency (EIT)
title_sort frequency tunable superflash based on an electromagnetically induced transparency (eit)
publisher Optica Publishing Group
publishDate 2022
url http://eprints.um.edu.my/41606/
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score 13.19449