[1] Maine P, Strickland D, Bado P, et al. Generation of ultrahigh peak power pulses by chirped pulse amplification[J]. IEEE Journal of Quantum Electronics, 1988, 24(2): 398-403.
[2] Treacy E B. Measurement of picosecond pulse substructure using compression techniques[J]. Applied Physics Letters, 1969, 14(3): 112-114.
[3] Martinez O E. 3000 times grating compressor with positive group velocity dispersion: Application to fiber compensation in 1.3-1.6 μm region[J]. IEEE Journal of Quantum Electronics, 1987, 23(1): 59-64.
[4] Wang Yanhai, Liu Guocai, Yang Qingwei, et al. Three dimensional OPCPA numerical simulations for a petawatt class laser system[J]. Laser & Optoelectronics Progress, 2014, 51(7): 071404.
[5] Bor Z, Racz B, Szabo G, et al. Femtosecond pulse front tilt caused by angular dispersion[J]. Optical Engineering, 1993, 32(10): 2501-2504.
[6] Fiorini C, Sauteret C, Rouyer C, et al. Temporal aberrations due to misalignments of a stretcher-compressor system and compensation[J]. IEEE Journal of Quantum Electronics, 1994, 30(7): 1662-1670.
[7] Li Z, Wang T, Xu G, et al. Littrow angle based autocollimation method for precision online monitoring three-dimensional angular drifts of chirped-pulse compression-gratings[J]. Review of Scientific Instruments, 2013, 84(6): 063109.
[8] Habara H, Xu G, Jitsuno T, et al. Pulse compression and beam focusing with segmented diffraction gratings in a high-power chirped-pulse amplification glass laser system[J]. Optics Letters, 2010, 35(11): 1783-1785.
[9] Qiao J, Kalb A, Nguyen T, et al. Demonstration of large-aperture tiled-grating compressors for high-energy, petawatt-class, chirped-pulse amplification systems[J]. Optics Letters, 2008, 33(15): 1684-1686.
[10] Pretzler G, Kasper A, Witte K J. Angular chirp and tilted light pulses in CPA lasers[J]. Applied Physics B, 2000, 70(1): 1-9.
[11] Fiorini C, Sauteret C, Rouyer C, et al. Temporal aberrations due to misalignments of a stretcher-compressor system and compensation[J]. IEEE Journal of Quantum Electronics, 1994, 30(7): 1662-1670.
[13] Yuan J, Long X. CCD-area-based autocollimator for precision small-angle measurement[J]. Review of Scientific Instruments, 2003, 74(3): 1362-1365.
[14] Yuan J, Long X, Yang K. Temperature-controlled autocollimator with ultrahigh angular measuring precision[J]. Review of Scientific Instruments, 2005, 76(12): 125106.
[15] Liu F, Liu X L, Wang Z H, et al. Compression grating alignment by far-field monitoring[J]. Applied Physics B, 2010, 101(3): 587-591.
[16] Brzsnyi A, Mangin-Thro L, Cheriaux G, et al. Two-dimensional single-shot measurement of angular dispersion for compressor alignment[J]. Optics Letters, 2013, 38(4): 410-412.
[18] Osvay K, Kovács A P, Heiner Z, et al. Angular dispersion and temporal change of femtosecond pulses from misaligned pulse compressors[J]. IEEE Journal of Selected Topics in Quantum Electronics, 2004, 10(1): 213-220.
[19] Varjú K, Kovács A P, Kurdi G, et al. High-precision measurement of angular dispersion in a CPA laser[J]. Applied Physics B, 2002, 74(s1): 259-263.
[20] Sacks Z, Mourou G, Danielius R. Adjusting pulse-front tilt and pulse duration by use of a single-shot autocorrelator[J]. Optics Letters, 2001, 26(7): 462-464.
[21] Zhang Suxia, Li Fangjia, Liu Jun. Research progress of self-referenced spectral interferometry on the characterization of femtosecond pulses[J]. Laser & Optoelectronics Progress, 2014, 51(1): 010001.
[22] Yakovlev I V. Alignment of chirped-pulse compressor[J]. Quantum Electronics, 2012, 42(11): 996-1001.
[23] Roberts R S, Bliss E S, Rushford M C, et al. Image analysis algorithms for the advanced radiographic capability (ARC) grating tilt sensor at the National Ignition Facility[C]. SPIE, 2014, 9216: 92160B.