Influence of broadband coupling laser on electromagnetically induced transparency of Λ-like system with the Fano structure
DOI:
https://doi.org/10.51453/2354-1431/2016/154Keywords:
Electromagnetically induced transparency; double Fano continuum; Λ configuration; white noise.Abstract
Electromagnetically induced transparency for Λ-like system consisting of two lower bound
states and a flat continuum coupled to two autoionization states, it is so-calledthe double Fano continuum, embedded in it is studied in which the coupling laser is modeled by white noise. For
such a system containing discrete autoionization levels we obtain a set of coupled stochastic integro-differential equations which can be averaged exactly. This leads to the exact expression determining the stationary solution for the electric susceptibility. The spectra of dispersion and absorption components for electromagnetically induced transparency are found and compared with those derived previously by us and other authors.
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References
1. S. E. Harris, J. E. Field and A. Imamoğlu, (1990) “Nonlinear optical processes using electromagnetically induced transparency” Phys. Rev. Lett. 64, pp. 1107-1110;
2. M. Fleischhauer, A. Imamoğlu and J. P. Marangos, (2005) “Electromagnetically induced transparency: Optics in coherent media” Rev. Mod. Phys. 77, pp. 633-673;
3. M. Evans and S. Kielich, (1994) “Optical nonlinearity and atomic coherences. In: Modern Nonlinear Optics” Advances in Chemical Physics Series, 85, pp. 734;
4. J. P. Marangos, (1998)“Electromagnetically Induced Transparency”, J. Mod. Optics, 45, pp. 471-503;
5. A. Imamoğlu, J. E. Field and S. E. Harris, (1991) “Lasers without inversion: A closed lifetime broadened system”,Phys. Rev. Lett. 66, pp. 1154-1156;
6. A. Raczyński, J. Zaremba, S. Zielińska-Kaniasty, M. Artoni and G. C. L. Rocca, (2009) “Reflectivity comb in coherently dressed three-level media”,J. Mod. Opt. 56, pp. 2348-2356;
7. K. Kowalski, V. Cao Long, H. Nguyen Viet, S. Gateva, M. Głódź and J. Szonert, (2009) “Simultaneous coupling of three hfscomponents in a cascade scheme of EIT in cold 85Rbatoms”,J. Non-Cryst. Solids 355, pp. 1295-1301;
8. A. Żaba, E. Paul-Kwiek, K. Kowalski, J. Szonert, D. Woźniak, S. Gateva, V. Cao Long, and M. Głódź, (2013) “The role of a dipole-coupled but not dipole-probed state in probe absorption with multilevel coupling”,Eur. Phys. J. ST 222, pp. 2197-2206;
9. K. Słowik, A. Raczyński, J. Zaremba, and S. Zielińska-Kaniasty, (2012) “Light storage in a tripod medium as a basis for logical operations”,Opt. Commun. 285, pp. 2392-2396;
10. A.S. Sheremet, L.V. Gerasimov, I.M. Sokolov, D.V. Kupriyanov, (2010)“Quantum memory for light via a stimulated off-resonant Raman process: Beyond the three-level Λ-scheme approximation”,Phys. Rev. A 82, pp. 033838;
11. A. Raczyński, M. Rzepecka, J. Zaremba, S. Zielińska-Kaniasty, (2006) “Electromagnetically induced transparency and light slowdown for Λ-like systems with structured continuum”,Optics Communications, 266, pp. 552-557;
12. U. Fano, (1961) “Effects of Configuration Interaction on Intensities and Phase Shifts”, Phys. Rev. 124, pp. 1866-1878;
13. T. Bui Dinh, W. Leoński, V. Cao Long, J. Peřina Jr., (2013) “Electromagnetically induced transparency in systems with degenerate autoionizing levels in Λ configuration”, Optica Applicata 43, pp. 471-484;
14. T. Bui Dinh, V. Cao Long, W. Leoński, J. Peřina Jr., (2014) “Electromagnetically induced transparency for a double Fano-profile system”, Eur. Phys. J.D 68, pp. 150;
15. K. Doan Quoc, V. Cao Long, W. Leoński, (2012) “Electromagnetically induced transparency for Λ-like systems with a structured continuum and broad-band coupling laser”, Phys. Scr.T 147, pp. 014008;
16. Doan Quoc Khoa, Cao Long Van, Chu Van Lanh, Huynh Vinh Phuc, (2016) “Electromagnetically induced transparency for Λ-like systems with degenerate autoionizing levels and a broadband coupling laser”, Optica Applicata 46, pp. 93-102;
17. W. Leoński, R. Tanaś, S. Kielich, (1987)“Laser-induced autoionization from a double Fano system”,J. Opt. Soc. Am.B 4, pp. 72-77;
18. J. Peřina Jr, A. Lukš, W. Leoński and V. Peřinová, (2011) “Photoionization electron spectra in a system interacting with a neighboring atom”, Phys. Rev. A 83, pp. 053416;
19. J. Peřina Jr, A. Lukš, W. Leoński and V. Peřinová, (2011) “Photoelectron spectra in an autoionization system interacting with a neighboring atom”, Phys. Rev. A 83, pp. 053430;
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