[1]Harris S E, Field J E, Imamoglu A.Nonlinear optical processes using electromagnetically induced transparency[J].Phy. Rev. Lett., 1990, 64(10):1107-1110[2]Novikova I, Walsworth R, Xiao Y.EIT-based slow and stored light in warm atoms[J].Laser Photonics Rev., 2012, 6(3):333-353[3]Xiao M, Li Y Q, Jin S Z, Gea-Banacloche J.Measurement of dispersive properties of electromagnetically induced transparency in rubidium atoms[J].Phy. Rev. Lett., 1995, 74(5):666-669[4]Vestergaard Hau L V, Harris S E, Dutton Z, Behroozi C H.Light speed reduction to 17 metres per second in an ultracold atomic gas[J].Nature, 1999, 397(6720):594-598[5]Kasapi A, Jain M, Yin G Y, Harris S E.Electromagnetically Induced Transparency: Propagation Dynamics[J].Phys. Rev. Lett., 1995, 74(13):2447-2450[6]Phillips D F, Fleischhauer A, Mari A, Walsworth R L.Storage of Light in Atomic Vapor[J].Phys. Rev. Lett., 2001, 86(5):783-786[7]Shuker M, Firstenberg O, Pugatch R, Ron A, Davidson N.Storing images in warm atomic vapor[J].Phys. Rev. Lett., 2008, 100(22):223601-[8]Phillips N B, Gorshkov A V, Novikova I.Optimal light storage in atomic vapor[J].Phys. Rev. A, 2008, 78(2):023801-[9]Wang Jin, Liu Xiaojun, Li Jiaomei, et al.Frequency stabilization and detuning of diode laser in laser trapping of atoms[J].量子电子学报, 2000, 17(1):43-47[10]Jiang Kaijun, Li Ke, Wang Jin, et al.Frequency stabilization for Ti:sapphire laser with Doppler-broadened Zeeman spectra[J].量子电子学报, 2005, 22(2):177-180[11] Steck D A.Rubidium 87 d line date[J].http://steck.us/alkalidata/, 2009, :-[12]Michael Fleischhauer, Atac Imamoglu, Jonathan P.Electromagnetically induced transparency: Optics in coherent media[J].Rev. Mod. Phys., 2005, 77(2):633-673[13]Jiang K J, Deng L, Payne M G.Ultraslow propagation of an optical pulse in a three-state active Raman gain medium[J].Phys. Rev. A, 2006, 74(4):041803-[14]Li R B, Deng L, Hagley E W, et al.Effect of atomic coherence on temporal cloaking in atomic vapors[J].Phys. Rev. A, 2013, 87(2):023839- |