Movies of the stochastic evolutions of the eigenvalue distribution { exp(i αk)}.
Fig. 6(left): direct decay process [uniform --> 1-peak] (D=9, N=60, T=2.0, up to s=2000) ([mp4][avi])
Fig. 6(right): cascade decay process [uniform --> 3-peak --> 2-peak --> 1-peak] (D=9, N=60, T=6.0, up to s=2000) ([mp4][avi])
Fig. 8: decay process [1-peak --> uniform] (D=9, N=60, T=0.84, up to s=10000) ([mp4][avi])
Fig. 9: decay process [2-peak --> 1-peak] (D=9, N=60, T=6.0, up to s=3000)([mp4][avi])
Table 1: decay process [3-peak --> 2-peak ---> 1-peak] (D=9, N=60, T=6.0, up to s=3000)([mp4][avi])
Movies of the evolutions of the eigenvalue distribution { exp(i αk)}, in Appendix C, Fig. 12, 13.
Fig. 12(top left) [uniform (initial config.) -> 1-peak] (T=3, βΩ_I=0) ([mp4][avi])
Fig. 12(top right) [3-peak (initial config.) -> 1-peak] (T=3, βΩ_I=0) ([mp4][avi])
Fig. 12(middle left)=Fig. 13 (top): [uniform (initial config.) --> 2-peak] (T=3, βΩ_I=π) ([mp4][avi])
Fig. 12(middle right)=Fig. 13(bottom): [3-peak (initial config.) --> 2-peak] (T=3, βΩ_I=π) ([mp4][avi])
Fig. 12(bottom left) [uniform (initial config.) -> 3-peak] (T=4, βΩ_I=2π/3) ([mp4][avi])
Fig. 12(bottom right) [3-peak (initial config.) -> 3-peak] (T=4, βΩ_I=2π/3) ([mp4][avi])
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