[1] Feizpour A, Hallaji M, Dmochowski G, et al. Observation of the nonlinear phase shift due to single post-selected photons[J]. Nat Phys, 2015, 6:2-6.
[2] Krimer D O, Hartl B, Rotter S. Hybrid quantum systems with collectively coupled spin states:suppression of decoherence through spectral hole burning[J]. Phys Rev Lett, 2015, 115:033601.
[3] Putz S, Angerer A, Krimer D O, et al. Spectral hole burning and its application in microwave photonics[J]. Nat Photo, 2017, 225(11):36-39.
[4] Vitanov N V, Rangelov A A, Shore B W, et al. Stimulated Raman adiabatic passage in physics, chemistry, and beyond[J]. Rev Mod Phys, 2017, 89:015006.
[5] Dong P, Gao J Y. Appearance and disappearance of hole-burning behind an electromagnetically induced transparency window[J]. Phys Lett A, 2000, 265(1):52-57.
[6] Wei X G, Wu J H, Wang H H, et al. First principles experimental observation of coherent hole burnings in atomic rubidium vapor[J]. Phys Rev A, 2006, 74(6):278-281.
[7] He Q Y, Zhang B, Wei X G, et al. Slow light by coherent hole burnings[J]. Phys Rev A, 2008, 77:37163832.
[8] Tian Xingxia, Li Dongkang, Wu Jinhui. Coherent induced hole-burnings in a Doppler broadened four-level atomic system[J]. Opt Comm, 2010, 283(12):2561-2565.
[9] Brennen G, Giacobino E, Simon C. Focus on quantum memory[J]. New J Phys, 2015, 17(5):050201-050203.
[10] Pirandola S, Eisert J, Weedbrook C, et al. Advances in quantum teleportation[J]. Nat Photo, 2015, 9(10):641-645.