Arbitrarily copropagating superluminal and slow light by controllable one-photon detuning in trapped cold atoms
Optics Express, Vol. 16, Issue 7, pp. 4747-4752 (2008)
http://dx.doi.org/10.1364/OE.16.004747
Acrobat PDF (135 KB)
Abstract
Absorption spectra of cold cesium atoms confined in a magneto-optical trap are observed around the D2 transition line (6S1/2, F=4→6P3/2, F’=5) with the probe laser frequency detuned near the trapping laser frequency. We observe the dispersion-like profile resulted from the stimulated Raman processes with the sub-natural linewidth, and study the behavior of the group velocity of light in trapped cold atoms. By only changing the blue and red detuning of the probe frequency from the trapping laser frequency, we are able to arbitrarily control the speed of a light pulse from subluminal to superluminal velocity.
© 2008 Optical Society of America
1. Introduction
H. He, Zh. Hu, Y. Wang, L. Wang, and Sh. Zhu, “Superluminal light propagation assisted by Zeeman coherence” Opt. Lett. 31, 2486–2488 (2006). [CrossRef] [PubMed]
H. He, Zh. Hu, Y. Wang, L. Wang, and Sh. Zhu, “Superluminal light propagation assisted by Zeeman coherence” Opt. Lett. 31, 2486–2488 (2006). [CrossRef] [PubMed]
J. Zhang, G. Hernandez, and Y. Zhu, “Copropagating superluminal and slow light manifested by electromagnetically assisted nonlinear optical processes,” Opt. Lett. 31, 2598–2600 (2006). [CrossRef] [PubMed]
K. Kim, H. S. Moon, Ch. Lee, S. K. Kim, and J. B. Kim, “Observation of arbitrary group velocities of light from superluminal to subluminal on a single atomic transition line,” Phys. Rev. A 68, 013810 (2003). [CrossRef]
A. M. Akulshin, S. Barreiro, and A. Ezama, “Steep Anomalous Dispersion in Coherently Prepared Rb Vapor,” Phys. Rev. Lett. 83, 4277–4280 (1999). [CrossRef]
D. A. Braje, V. Balić, G. Y. Yin, and S. E. Harris, “Low-light-level nonlinear optics with slow light,” Phys. Rev. A 68, 041801(R) (2003). [CrossRef]
K. J. Jiang, L. Deng, and M. G. Payne, “Ultraslow propagation of an optical pulse in a three-state active Raman gain medium,” Phys. Rev. A 74, 041803(R) (2006). [CrossRef]
K. Kim, H. S. Moon, Ch. Lee, S. K. Kim, and J. B. Kim, “Observation of arbitrary group velocities of light from superluminal to subluminal on a single atomic transition line,” Phys. Rev. A 68, 013810 (2003). [CrossRef]
A. M. Akulshin, S. Barreiro, and A. Ezama, “Steep Anomalous Dispersion in Coherently Prepared Rb Vapor,” Phys. Rev. Lett. 83, 4277–4280 (1999). [CrossRef]
J. Zhang, G. Hernandez, and Y. Zhu, “Copropagating superluminal and slow light manifested by electromagnetically assisted nonlinear optical processes,” Opt. Lett. 31, 2598–2600 (2006). [CrossRef] [PubMed]
L. V. Hau, S. E. Harris, Z. Dutton, and C. H. Behroozi, “Light speed reduction to 17 metres per second in an ultracold atomic gas,” Nature (London) 397, 594–598 (1999). [CrossRef]
R. S. Bennink, R. W. Boyd, C. R. Stroud, Jr., and V. Wong, “Enhanced self-action effects by electromagnetically induced transparency in the two-level atom,” Phys. Rev. A 63, 033804 (2001). [CrossRef]
K. J. Jiang, L. Deng, and M. G. Payne, “Ultraslow propagation of an optical pulse in a three-state active Raman gain medium,” Phys. Rev. A 74, 041803(R) (2006). [CrossRef]
2. Experiment and results
C. Monroe, W. Swann, H. Robinson, and C. Wieman, “Very cold trapped atoms in a vapor cell,” Phys. Rev. Lett. 65, 1571–1574 (1990). [CrossRef] [PubMed]
M. Ducloy and D. Bloch, “Theory of degenerate four-wave mixing in resonant Doppler-broadened systems. I. Angular dependence of intensity and lineshape of phase-conjugate emission,” J. Phys. (Paris) 42, 711–721 (1981). [CrossRef]
F. Y. Wu, S. Ezekiel, M. Ducloy, and B. R. Mollow, “Observation of Amplification in a Strongly Driven Two-Level Atomic System at Optical Frequencies,” Phys. Rev. Lett. 38, 1077–1080 (1977). [CrossRef]
D. Grison, B. Lounis, C. Salomon, J.Y. Courtois, and G. Grynberg, “Raman spectroscopy of cesium atoms in a laser trap,” Europhys. Lett. 15, 149–154 (1991). [CrossRef]
A. M. Akulshin, S. Barreiro, and A. Ezama, “Steep Anomalous Dispersion in Coherently Prepared Rb Vapor,” Phys. Rev. Lett. 83, 4277–4280 (1999). [CrossRef]
A. M. Akulshin, A. Cimmino, 1 A. I. Sidorov, P. Hannaford, and G. I. Opat, “Light propagation in an atomic medium with steep and sign-reversible dispersion,” Phys. Rev. A 67, 011801(R) (2003). [CrossRef]
J. Guo and P. R. Berman, “Recoil-induced resonances in pump-probe spectroscopy including effects of level degeneracy,” Phys. Rev. A 47, 4128–4142 (1993). [CrossRef] [PubMed]
J. Guo and P. R. Berman, “Recoil-induced resonances in pump-probe spectroscopy including effects of level degeneracy,” Phys. Rev. A 47, 4128–4142 (1993). [CrossRef] [PubMed]
3. Conclusion
Acknowledgments
References and links
H. He, Zh. Hu, Y. Wang, L. Wang, and Sh. Zhu, “Superluminal light propagation assisted by Zeeman coherence” Opt. Lett. 31, 2486–2488 (2006). [CrossRef] [PubMed] | |
D. A. Braje, V. Balić, G. Y. Yin, and S. E. Harris, “Low-light-level nonlinear optics with slow light,” Phys. Rev. A 68, 041801(R) (2003). [CrossRef] | |
J. Zhang, G. Hernandez, and Y. Zhu, “Copropagating superluminal and slow light manifested by electromagnetically assisted nonlinear optical processes,” Opt. Lett. 31, 2598–2600 (2006). [CrossRef] [PubMed] | |
K. Kim, H. S. Moon, Ch. Lee, S. K. Kim, and J. B. Kim, “Observation of arbitrary group velocities of light from superluminal to subluminal on a single atomic transition line,” Phys. Rev. A 68, 013810 (2003). [CrossRef] | |
L. V. Hau, S. E. Harris, Z. Dutton, and C. H. Behroozi, “Light speed reduction to 17 metres per second in an ultracold atomic gas,” Nature (London) 397, 594–598 (1999). [CrossRef] | |
A. M. Akulshin, S. Barreiro, and A. Ezama, “Steep Anomalous Dispersion in Coherently Prepared Rb Vapor,” Phys. Rev. Lett. 83, 4277–4280 (1999). [CrossRef] | |
R. S. Bennink, R. W. Boyd, C. R. Stroud, Jr., and V. Wong, “Enhanced self-action effects by electromagnetically induced transparency in the two-level atom,” Phys. Rev. A 63, 033804 (2001). [CrossRef] | |
K. J. Jiang, L. Deng, and M. G. Payne, “Ultraslow propagation of an optical pulse in a three-state active Raman gain medium,” Phys. Rev. A 74, 041803(R) (2006). [CrossRef] | |
C. Monroe, W. Swann, H. Robinson, and C. Wieman, “Very cold trapped atoms in a vapor cell,” Phys. Rev. Lett. 65, 1571–1574 (1990). [CrossRef] [PubMed] | |
M. Ducloy and D. Bloch, “Theory of degenerate four-wave mixing in resonant Doppler-broadened systems. I. Angular dependence of intensity and lineshape of phase-conjugate emission,” J. Phys. (Paris) 42, 711–721 (1981). [CrossRef] | |
M. Kwon, K. Kim, H. D. Park, J. B. Kim, and H. S. Moon, “Dependence of EIA spectra on mutual coherence between coupling and probe fields in Cs atomic vapors,” J. Korean Phys. Soc. 40, 452–455 (2002). | |
F. Y. Wu, S. Ezekiel, M. Ducloy, and B. R. Mollow, “Observation of Amplification in a Strongly Driven Two-Level Atomic System at Optical Frequencies,” Phys. Rev. Lett. 38, 1077–1080 (1977). [CrossRef] | |
D. Grison, B. Lounis, C. Salomon, J.Y. Courtois, and G. Grynberg, “Raman spectroscopy of cesium atoms in a laser trap,” Europhys. Lett. 15, 149–154 (1991). [CrossRef] | |
A. M. Akulshin, A. Cimmino, 1 A. I. Sidorov, P. Hannaford, and G. I. Opat, “Light propagation in an atomic medium with steep and sign-reversible dispersion,” Phys. Rev. A 67, 011801(R) (2003). [CrossRef] | |
J. Guo and P. R. Berman, “Recoil-induced resonances in pump-probe spectroscopy including effects of level degeneracy,” Phys. Rev. A 47, 4128–4142 (1993). [CrossRef] [PubMed] |
OCIS Codes
(170.5660) Medical optics and biotechnology : Raman spectroscopy
(270.1670) Quantum optics : Coherent optical effects
(270.5530) Quantum optics : Pulse propagation and temporal solitons
(290.5910) Scattering : Scattering, stimulated Raman
ToC Category:
Slow and Fast Light
History
Original Manuscript: January 25, 2008
Revised Manuscript: March 10, 2008
Manuscript Accepted: March 10, 2008
Published: March 24, 2008
Citation
Yanting Zhao, Jie Ma, Xianli Zhang, Lirong Wang, Liantuan Xiao, and Suotang Jia, "Arbitrarily copropagating superluminal and slow light by controllable one-photon detuning in trapped cold atoms," Opt. Express 16, 4747-4752 (2008)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-16-7-4747
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References
- H. He, Zh. Hu, Y. Wang, L. Wang, and Sh. Zhu, "Superluminal light propagation assisted by Zeeman coherence" Opt. Lett. 31,2486-2488 (2006). [CrossRef] [PubMed]
- D. A. Braje, V. Bali?, G. Y. Yin, and S. E. Harris, "Low-light-level nonlinear optics with slow light," Phys. Rev. A 68,041801(R) (2003). [CrossRef]
- J. Zhang, G. Hernandez, and Y. Zhu, "Copropagating superluminal and slow light manifested by electromagnetically assisted nonlinear optical processes," Opt. Lett. 31, 2598-2600 (2006). [CrossRef] [PubMed]
- K. Kim, H. S. Moon, Ch. Lee, S. K. Kim, and J. B. Kim, "Observation of arbitrary group velocities of light from superluminal to subluminal on a single atomic transition line," Phys. Rev. A 68,013810 (2003). [CrossRef]
- L. V. Hau, S. E. Harris, Z. Dutton, and C. H. Behroozi, "Light speed reduction to 17 metres per second in an ultracold atomic gas," Nature (London) 397,594-598 (1999). [CrossRef]
- A. M. Akulshin, S. Barreiro, and A. Ezama, "Steep Anomalous Dispersion in Coherently Prepared Rb Vapor," Phys. Rev. Lett. 83,4277-4280 (1999). [CrossRef]
- R. S. Bennink, R. W. Boyd, C. R. Stroud, Jr., and V. Wong, "Enhanced self-action effects by electromagnetically induced transparency in the two-level atom," Phys. Rev. A 63, 033804 (2001). [CrossRef]
- K. J. Jiang, L. Deng, and M. G. Payne, "Ultraslow propagation of an optical pulse in a three-state active Raman gain medium," Phys. Rev. A 74, 041803(R) (2006). [CrossRef]
- C. Monroe, W. Swann, H. Robinson, and C. Wieman, "Very cold trapped atoms in a vapor cell," Phys. Rev. Lett. 65, 1571-1574 (1990). [CrossRef] [PubMed]
- M. Ducloy and D. Bloch, "Theory of degenerate four-wave mixing in resonant Doppler-broadened systems. I. Angular dependence of intensity and lineshape of phase-conjugate emission," J. Phys. (Paris) 42, 711-721 (1981). [CrossRef]
- M. Kwon, K. Kim, H. D. Park, J. B. Kim, and H. S. Moon, "Dependence of EIA spectra on mutual coherence between coupling and probe fields in Cs atomic vapors," J. Korean Phys. Soc. 40, 452-455 (2002).
- F. Y. Wu, S. Ezekiel, M. Ducloy, and B. R. Mollow, "Observation of Amplification in a Strongly Driven Two-Level Atomic System at Optical Frequencies," Phys. Rev. Lett. 38, 1077-1080 (1977). [CrossRef]
- D. Grison, B. Lounis, C. Salomon, J. Y. Courtois, and G. Grynberg, "Raman spectroscopy of cesium atoms in a laser trap," Europhys. Lett. 15, 149-154 (1991). [CrossRef]
- A. M. Akulshin, A. Cimmino, A. I. Sidorov, P. Hannaford, and G. I. Opat, "Light propagation in an atomic medium with steep and sign-reversible dispersion," Phys. Rev. A 67, 011801(R) (2003). [CrossRef]
- J. Guo and P. R. Berman, "Recoil-induced resonances in pump-probe spectroscopy including effects of level degeneracy," Phys. Rev. A 47, 4128-4142 (1993). [CrossRef] [PubMed]
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