[1] KRAUSZ F, IVANOV M. Attosecond physics [J]. Reviews of Modern Physics, 2009, 81(1):163-234.
[2] SALIERES P, CARRE B, DEROFF L L, et al. Feynman's path-integral approach for intense-laser-atom interactions[J].Science, 2001, 292(5518): 902-905.
[3] CHANG Z H. Single attosecond pulse and xuv supercontinuum in the high-order harmonic plateau [J]. Physics Review,2004,A70(4):043802.
[4] AGOSTINE P, DIMAURO L F. The physics of attosecond light pulses [J]. Reports on Progress in Physics, 2004, 67(6):813-855.
[5] SANSONE G, BENEDETTI E, CALEGARI F, et al. Isolated single-cycle attosecond pulses [J]. Science, 2006, 314(5798):443-446.
[6] GOULIELMAKIS E, SCHULTZE M, HOFSTETTER M, et al. Single-cycle nonlinear optics [J]. Science, 2008, 320(5883): 1614 -1617.
[7] WANG C, LIU H, TIAN J, et al. Analysis of intrinsic atomic phase in progress of extreme ultraviolet attosecond pulse generation[J]. Laser Technology, 2012, 36(3):342-345(in Chinese).
[8] WANG C, KANG Y, TIAN J,et al. Analysis of phase dependence of the two single-attosecond-pulse generation techniques[J]. Laser Technology,2012, 36(4):516-519(in Chinese).
[9] ZHAO K, ZHANG Q, CHINI M, et al. Tailoring a 67 attosecond pulse through advantagous phase-mismatch [J].Optics Letters, 2012, 37(18):3891-3893.
[10] GOULEILMAKIS E, YAKOVLEV V S, CAVALIERI A L, et al. Attosecond control and measurement: lightwave electronics [J]. Science, 2007,317(5839):769.
[11] FENG X M, GILBERTSON S, MASHIKO H, et al. Generation of isolated attosecond pulses with 20 to 28 femtosecond lasers [J]. Physical Review Letters,2009,88(17):173903.
[12] SAKAYANAGI Y, AOKI S. Soft X-ray imaging with toroidal mirrors[J].Applied Optics,1978, 17(4):601-603.
[13] GARIFO L, MALVEZZI A M, TONDELLO G. Grazing incidence spectrograph-monochromator with a focusing toroidal mirror[J].Applied Optics,1979,18(12):1900-1907.
[14] TONDELLO G. The use of a toroidal mirror as a focusing element for a stigmatic grazing incidence spectrometer [J]. Optica Acta, 1979, 26(3): 357-371.
[15] BEUTLER H G. The theory of the concave grating [J].Journal of the Optical Society of America,1945, 35(5): 311-350.
[16] NAMIOKA T. Theory of the concave grating.Ⅱ. Application of the theory to the off-plane eagle mounting in a vacuum spectrograph[J]. Journal of the Optical Society America,1959,49(5):460-465.
[17] NAMIOKA T. Theory of the concave grating. Ⅲ.Seya-namioka monochromator[J]. Journal of the Optical Society of America,1959, 49(10):951-961.