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             [12] Ohara Y, Nakajima H, Haupert S, et al. Nonlinear ultra-  2014, 113(14): 144301.
                 sonic phased array with fixed-voltage fundamental wave  [16] Cheng J, Potter J, Croxford A, et al.  Monitoring fa-
                 amplitude difference for high-selectivity imaging of closed  tigue crack growth using nonlinear ultrasonic phased array
                 cracks[J]. The Journal of the Acoustical Society of Amer-  imaging[J]. Smart Materials and Structures, 2017, 26(5):
                 ica, 2019, 146(1): 266.                           055006.
             [13] Ohara Y, Nakajima H, Tsuji T, et al. Nonlinear surface-  [17] Cheng J, Potter J, Drinkwater B. The parallel-sequential
                 acoustic-wave phased array with fixed-voltage fundamen-  field subtraction technique for coherent nonlinear ultra-
                 tal wave amplitude difference for imaging closed cracks[J].  sonic imaging[J]. Smart Materials and Structures, 2018,
                 NDT and E International, 2019, 108: 102170.       27(6): 065002.
             [14] Sylvain H, Guillaume R, Andreas S. Ultrasonic imaging  [18] Holmes C, Drinkwater B, Wilcox P. Post-processing of the
                 of nonlinear scatterers buried in a medium[J]. NDT and  full matrix of ultrasonic transmit–receive array data for
                 E International, 2017, 87: 1–6.                   non-destructive evaluation[J]. NDT and E International,
             [15] Potter J N, Croxford A J, Wilcox P D. Nonlinear ultra-  2005, 38(8): 701–711.
                 sonic phased array imaging[J]. Physical Review Letters
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