Glitch size and waiting-time statistics for different Δtsm and ΔVi/V0[corresponding Ω(t) curves shown in Fig. 18] for large-scale simulations containing ∼200 vortices. Ng is the number of glitches detected, 〈ΔΩ/Ω〉 is the mean glitch size, 〈Δt〉 is the mean waiting time and A is the activity parameter. λ is the mean glitch rate that parametrizes the cumulative distribution of waiting times, γ is the power-law index that parametrizes the pdf of glitch sizes. The K–S probability pKS is given in parenthesis; the fit can be rejected at the 1 −pKS confidence level. Simulation parameters: V0 = 36, η = 1, ΔVi/V0 = 0.0, npin/nF, R = 38, Δx = 0.15, Δt = 5 × 10−4, NEM/Ic = 10−3, Ω(t = 0) = 0.8.
Δtsm | ΔVi/V0 | Ng | 104〈ΔΩ/Ω〉 | 〈Δt〉 | A | γ(pKS) | λ(pKS) |
0.0 | 0.0 | 4639 | 0.208 | 0.192 | 1007 | −1.26(0.0000) | 1.99(0.000) |
0.0 | 0.8 | 196 | 0.500 | 6.25 | 3.14 | −1.08(0.0007) | 0.337(0.000) |
0.1 | 0.0 | 491 | 0.752 | 1.55 | 47.65 | −1.23(0.1480) | 1.53(0.000) |
0.1 | 0.8 | 139 | 0.591 | 8.81 | 1.87 | −1.05(0.0214) | 0.192(0.0002) |
Δtsm | ΔVi/V0 | Ng | 104〈ΔΩ/Ω〉 | 〈Δt〉 | A | γ(pKS) | λ(pKS) |
0.0 | 0.0 | 4639 | 0.208 | 0.192 | 1007 | −1.26(0.0000) | 1.99(0.000) |
0.0 | 0.8 | 196 | 0.500 | 6.25 | 3.14 | −1.08(0.0007) | 0.337(0.000) |
0.1 | 0.0 | 491 | 0.752 | 1.55 | 47.65 | −1.23(0.1480) | 1.53(0.000) |
0.1 | 0.8 | 139 | 0.591 | 8.81 | 1.87 | −1.05(0.0214) | 0.192(0.0002) |
Glitch size and waiting-time statistics for different Δtsm and ΔVi/V0[corresponding Ω(t) curves shown in Fig. 18] for large-scale simulations containing ∼200 vortices. Ng is the number of glitches detected, 〈ΔΩ/Ω〉 is the mean glitch size, 〈Δt〉 is the mean waiting time and A is the activity parameter. λ is the mean glitch rate that parametrizes the cumulative distribution of waiting times, γ is the power-law index that parametrizes the pdf of glitch sizes. The K–S probability pKS is given in parenthesis; the fit can be rejected at the 1 −pKS confidence level. Simulation parameters: V0 = 36, η = 1, ΔVi/V0 = 0.0, npin/nF, R = 38, Δx = 0.15, Δt = 5 × 10−4, NEM/Ic = 10−3, Ω(t = 0) = 0.8.
Δtsm | ΔVi/V0 | Ng | 104〈ΔΩ/Ω〉 | 〈Δt〉 | A | γ(pKS) | λ(pKS) |
0.0 | 0.0 | 4639 | 0.208 | 0.192 | 1007 | −1.26(0.0000) | 1.99(0.000) |
0.0 | 0.8 | 196 | 0.500 | 6.25 | 3.14 | −1.08(0.0007) | 0.337(0.000) |
0.1 | 0.0 | 491 | 0.752 | 1.55 | 47.65 | −1.23(0.1480) | 1.53(0.000) |
0.1 | 0.8 | 139 | 0.591 | 8.81 | 1.87 | −1.05(0.0214) | 0.192(0.0002) |
Δtsm | ΔVi/V0 | Ng | 104〈ΔΩ/Ω〉 | 〈Δt〉 | A | γ(pKS) | λ(pKS) |
0.0 | 0.0 | 4639 | 0.208 | 0.192 | 1007 | −1.26(0.0000) | 1.99(0.000) |
0.0 | 0.8 | 196 | 0.500 | 6.25 | 3.14 | −1.08(0.0007) | 0.337(0.000) |
0.1 | 0.0 | 491 | 0.752 | 1.55 | 47.65 | −1.23(0.1480) | 1.53(0.000) |
0.1 | 0.8 | 139 | 0.591 | 8.81 | 1.87 | −1.05(0.0214) | 0.192(0.0002) |
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