The Positive Part Of The Mi Gain Is Depicted For Map And Lle As A

The positive part of the MI gain is depicted for map and LLE as a ...
The positive part of the MI gain is depicted for map and LLE as a ...
The positive part of the MI gain is depicted as a function of the phase ...
The positive part of the MI gain is depicted as a function of the phase ...
The positive part of the MI gain is depicted a function of PIN ...
The positive part of the MI gain is depicted a function of PIN ...
The positive part of the MI gain is depicted a function of PIN ...
The positive part of the MI gain is depicted a function of PIN ...
(a) The map of the MI gain versus V 2 and Ω for a 1 = 1 and V 1 = 9 ...
(a) The map of the MI gain versus V 2 and Ω for a 1 = 1 and V 1 = 9 ...
MI gain spectra g m À1 ðÞ as a function of the frequency Ω (THz) and ...
MI gain spectra g m À1 ðÞ as a function of the frequency Ω (THz) and ...
The MI gain spectra as a function of input peak power for (a ...
The MI gain spectra as a function of input peak power for (a ...
Comparison of the MI gain G in Eq. (10) for a nonautonomous ...
Comparison of the MI gain G in Eq. (10) for a nonautonomous ...
(Color online) The MI gain produced by Eq. ( 48) for three positive and ...
(Color online) The MI gain produced by Eq. ( 48) for three positive and ...
(Color online) The MI gain produced by Eq. (52) for three positive and ...
(Color online) The MI gain produced by Eq. (52) for three positive and ...
Gain spectrum of MI for the plane-wave states with SOC and without ...
Gain spectrum of MI for the plane-wave states with SOC and without ...
The variation of maximum MI gain (m −1 ) as a function of perturbation ...
The variation of maximum MI gain (m −1 ) as a function of perturbation ...
Maps of the MI gain γ h versus and δ in the normal dispersion regime (σ ...
Maps of the MI gain γ h versus and δ in the normal dispersion regime (σ ...
The MI gain g(Q,k) in Eq. (8) versus wave numbers Q and k for focusing ...
The MI gain g(Q,k) in Eq. (8) versus wave numbers Q and k for focusing ...
a MI gain spectra for NLS–MB equation for the physical parameters ...
a MI gain spectra for NLS–MB equation for the physical parameters ...
MI gain (m −1 ) as a function of perturbation frequency Ω and fourth ...
MI gain (m −1 ) as a function of perturbation frequency Ω and fourth ...
MI gain spectra for the lower branches of the constant-amplitude ...
MI gain spectra for the lower branches of the constant-amplitude ...
(a) 3D and (b) 2D plots showing the variation of the MI gain spectrum ...
(a) 3D and (b) 2D plots showing the variation of the MI gain spectrum ...
(a) 3D and (b) 2D plots showing the variation of the MI gain spectrum ...
(a) 3D and (b) 2D plots showing the variation of the MI gain spectrum ...
Maps of the MI gain γ h versus and δ in the normal dispersion regime (σ ...
Maps of the MI gain γ h versus and δ in the normal dispersion regime (σ ...
(S 9) and (S 10) illustrations of the MI gain spectrum 2D versus the ...
(S 9) and (S 10) illustrations of the MI gain spectrum 2D versus the ...
Variation of the MI gain in Eq. (10) for different values of L, M ...
Variation of the MI gain in Eq. (10) for different values of L, M ...
(a) 3D and (b) 2D plots showing the variation of the MI gain spectrum ...
(a) 3D and (b) 2D plots showing the variation of the MI gain spectrum ...
a) shows the MI gain spectrum computed for the same parameters as in ...
a) shows the MI gain spectrum computed for the same parameters as in ...
a MI gain spectra for NLS–MB equation for the physical parameters ...
a MI gain spectra for NLS–MB equation for the physical parameters ...
The variation of MI gain spectra with power for the focusing ...
The variation of MI gain spectra with power for the focusing ...
The MI gain of the GNLSE of different background amplitude a ...
The MI gain of the GNLSE of different background amplitude a ...
(a) 3D and (b) 2D plots showing the variation of the MI gain spectrum ...
(a) 3D and (b) 2D plots showing the variation of the MI gain spectrum ...
MI gain (m −1 ) as a function of perturbation frequency Ω and fourth ...
MI gain (m −1 ) as a function of perturbation frequency Ω and fourth ...
The MI gain spectra for the varying strength of quintic nonlinearity ...
The MI gain spectra for the varying strength of quintic nonlinearity ...
Maps of the MI gain spectrum of the zero state in the plane of detuning ...
Maps of the MI gain spectrum of the zero state in the plane of detuning ...
The phase diagram of nonlinear excitation in the plane of the MI gain ...
The phase diagram of nonlinear excitation in the plane of the MI gain ...
The phase diagram of nonlinear excitation in the plane of the MI gain ...
The phase diagram of nonlinear excitation in the plane of the MI gain ...
MI gain curves for different values of ¯ L and ε, for ω ≥ 0. (a) ¯ L ...
MI gain curves for different values of ¯ L and ε, for ω ≥ 0. (a) ¯ L ...
(Color online) Illustration of the MI gain spectra (normal dispersion ...
(Color online) Illustration of the MI gain spectra (normal dispersion ...
The MI gain spectrum versus the total power P and the frequency ...
The MI gain spectrum versus the total power P and the frequency ...

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