[1] S.E.Harris. Control of spontaneous emission spectra via an external coherent magnetic field in a cycle-configuration atomic medium[J]. Phys.Rev.Lett.1989,62:1033.
[2] L.V.Hau, S.E.Harris, Z.Dutton, and C.H.Behroozi. Light speed reduction to 17 metres per second in an ultra-cold atomic gas[J]. Nature(London).1999,397: 594.
[3] M.Fleischhauer and M. D.Lukin. Dark-state polariton in magnetized plasma under electromagnetically induced transparency[J]. Phys.Rev.Lett.2000,84: 5094.
[4] J.A.Miles, Z.J.Simmons, and D.D.Yavuz. Subwavelength Localization of Atomic Excitation Using Electromagnetically Induced Transparency[J]. Phys.Rev.X. 2013,3: 031014 .
[5] J.Choi and D.S.Elliott. Influence of interaction time and population redistribution on the localization of atomic excitation
through electromagnetically induced transparency[J]. Phys.Rev.A.2014, 89: 013414.
[6] H.Li,V.A.Sautenkov,M.M.Kash, A.V.Sokolov, G.R.Welch, Y.V.Rostovtsev, M.S.Zubairy, and M.O.Scully. Optical imaging beyond the diffraction limit via dark states[J]. Phys.Rev.A. 2008,78: 013803.
[7] N.A.Proite, Z.J.Simmons, and D.D.Yavuz. Observation of atomic localization using electromagnetically induced transparency[J]. Phys.Rev.A. 2011,83: 041803.
[8] Zong-Syun He, Jyh-Hung Tsai, Yung-Yung Chang, Chi-Chuan Liao, and Chin-Chun Tsai. Ladder-type electromagnetically induced transparency with optical pumping effect[J]. Phys.Rev A. 2013,87: 033402.
[9] Jin Wang, Xian-hua Tu, Kai-Jun Jiang, Ke Li,Ling-bo Kong , Hong-wei Xiong, Ming-Sheng Zhan. Experimental investigation of electromagnetically induced transparency in D2 line of hot and cold 85Rb atoms[J]. Journal of Atomic and Molecular Physics. 2004,vol.21: no.4.
[10] D.Steck. Rubidium 85 D Line Data[J]. http://steck.us/alkalidata/.
[11] J.P.Marangos. Journal of Modern Optics[J]. 1998,vol.45, no.3: 471-503. |