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fmde.m
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fmde.m
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% Fonction de masse dN/dm des lentilles.
function pm = fmde(m)
global minfde msupde
pm = zeros(size(m));
global minf msup
%---
%MF1
%---
A=0.053;
mbar=1.1346;
beta=0.6;
alpha=2.7;
%i1 = find(m>=minf & m<=msup);
%if (length(i1)>=1)
% pm(i1) = A.*exp(-(mbar./m(i1)).^beta).*(m(i1).^(-alpha));
%end
%-------
%MF1 bis
%-------
A=0.126;
mbar=5.49;
beta=0.39;
alpha=2.7;
%i1 = find(m>=minf & m<=msup);
%if (length(i1)>=1)
% pm(i1) = A.*exp(-(mbar./m(i1)).^beta).*(m(i1).^(-alpha));
%end
%--------
%MF1 tris
%--------
A=0.694;
mbar=76.62;
beta=0.3;
alpha=3.2;
%i1 = find(m>=minf & m<=msup);
%if (length(i1)>=1)
% pm(i1) = A.*exp(-(mbar./m(i1)).^beta).*(m(i1).^(-alpha));
%end
%----------
%MF1 quater
%----------
A=3.0;
mbar=716.4;
beta=0.25;
alpha=3.3;
%i1 = find(m>=minf & m<=msup);
%if (length(i1)>=1)
% pm(i1) = A.*exp(-(mbar./m(i1)).^beta).*(m(i1).^(-alpha));
%end
%---
%MF2
%---
alpha=-1.24;
%i1 = find(m>=minf);
%if (length(i1)>=1)
% pm(i1) = m(i1).^(alpha);
%end
%-------
%MF2 bis
%-------
alpha=-1.55;
%i1 = find(m>=minf);
%if (length(i1)>=1)
% pm(i1) = m(i1).^(alpha);
%end
%--------
%MF2 tris
%--------
alpha=-1.5;
%i1 = find(m>=minf);
%if (length(i1)>=1)
% pm(i1) = m(i1).^(alpha);
%end
%---
%MF3
%---
sigma=0.677;
m0=0.095;
%i1 = find(m>=minf);
%if (length(i1)>=1)
% pm(i1) =exp(-((log10(m)-log10(m0)).^2)./(2*sigma^2))./m;
%end
%---------------------------
%rajout d'une quantite de WD
%---------------------------
%largeur=0.01;
%massWD=0.6;
%fraction=0;
%i=find((m<massWD+0.5*largeur) & (m>massWD-0.5*largeur));
%if(length(i)>=1)
% pm(i)=pm(i)+fraction;
%end
%---------------------------
%fonctions de masse externes
%---------------------------
% pm=pdmf_disk_chab03(m);
% pm = fmchab05(m);
pm = fmdm(m);