A narrow Rabi frequency window for competition between coherent population trapping and Raman absorption

Yi Chi Lee, Ray Yuan Chang, Zong Syun He, Ming Tsung Lee, Wei Chia Fang, Hsiang-Chen Chui, Chin-Chun Tsai

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

We demonstrate the competition mechanism between the coherent population trapping and two-photon Raman absorption in a ladder-type system of cesium cell. When the Rabi frequency of the probe becomes comparable with the effective decay rate, an electromagnetically induced absorption (EIA) dip emerges at the center of the power broadened EIT peak. While the Rabi frequency of the probe exceeds the effective decay rate, a decoherence created by the strong probe field takes place and two-photon Raman absorption dominates the interaction process.

Original languageEnglish
Title of host publicationInternational Quantum Electronics Conference, IQEC 2009
PublisherOptical Society of America
ISBN (Print)9781557528698
Publication statusPublished - 2009 Jan 1
EventInternational Quantum Electronics Conference, IQEC 2009 - Baltimore, MD, United States
Duration: 2009 May 312009 Jun 5

Publication series

NameOptics InfoBase Conference Papers
ISSN (Electronic)2162-2701

Other

OtherInternational Quantum Electronics Conference, IQEC 2009
CountryUnited States
CityBaltimore, MD
Period09-05-3109-06-05

Fingerprint

trapping
decay rates
probes
Photons
Ladders
photons
Cesium
cesium
ladders
cells
interactions

All Science Journal Classification (ASJC) codes

  • Instrumentation
  • Atomic and Molecular Physics, and Optics

Cite this

Lee, Y. C., Chang, R. Y., He, Z. S., Lee, M. T., Fang, W. C., Chui, H-C., & Tsai, C-C. (2009). A narrow Rabi frequency window for competition between coherent population trapping and Raman absorption. In International Quantum Electronics Conference, IQEC 2009 (Optics InfoBase Conference Papers). Optical Society of America.
Lee, Yi Chi ; Chang, Ray Yuan ; He, Zong Syun ; Lee, Ming Tsung ; Fang, Wei Chia ; Chui, Hsiang-Chen ; Tsai, Chin-Chun. / A narrow Rabi frequency window for competition between coherent population trapping and Raman absorption. International Quantum Electronics Conference, IQEC 2009. Optical Society of America, 2009. (Optics InfoBase Conference Papers).
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Lee, YC, Chang, RY, He, ZS, Lee, MT, Fang, WC, Chui, H-C & Tsai, C-C 2009, A narrow Rabi frequency window for competition between coherent population trapping and Raman absorption. in International Quantum Electronics Conference, IQEC 2009. Optics InfoBase Conference Papers, Optical Society of America, International Quantum Electronics Conference, IQEC 2009, Baltimore, MD, United States, 09-05-31.

A narrow Rabi frequency window for competition between coherent population trapping and Raman absorption. / Lee, Yi Chi; Chang, Ray Yuan; He, Zong Syun; Lee, Ming Tsung; Fang, Wei Chia; Chui, Hsiang-Chen; Tsai, Chin-Chun.

International Quantum Electronics Conference, IQEC 2009. Optical Society of America, 2009. (Optics InfoBase Conference Papers).

Research output: Chapter in Book/Report/Conference proceedingConference contribution

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AU - Lee, Yi Chi

AU - Chang, Ray Yuan

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AU - Chui, Hsiang-Chen

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N2 - We demonstrate the competition mechanism between the coherent population trapping and two-photon Raman absorption in a ladder-type system of cesium cell. When the Rabi frequency of the probe becomes comparable with the effective decay rate, an electromagnetically induced absorption (EIA) dip emerges at the center of the power broadened EIT peak. While the Rabi frequency of the probe exceeds the effective decay rate, a decoherence created by the strong probe field takes place and two-photon Raman absorption dominates the interaction process.

AB - We demonstrate the competition mechanism between the coherent population trapping and two-photon Raman absorption in a ladder-type system of cesium cell. When the Rabi frequency of the probe becomes comparable with the effective decay rate, an electromagnetically induced absorption (EIA) dip emerges at the center of the power broadened EIT peak. While the Rabi frequency of the probe exceeds the effective decay rate, a decoherence created by the strong probe field takes place and two-photon Raman absorption dominates the interaction process.

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Lee YC, Chang RY, He ZS, Lee MT, Fang WC, Chui H-C et al. A narrow Rabi frequency window for competition between coherent population trapping and Raman absorption. In International Quantum Electronics Conference, IQEC 2009. Optical Society of America. 2009. (Optics InfoBase Conference Papers).