Difference between revisions of "File:AuTraMapT.jpg"

From TORI
Jump to navigation Jump to search
($ -> \( ; description ; refs ; pre ; keywords)
Line 1: Line 1:
  +
{{oq|AuTraMapT.jpg|Original file ‎(2,100 × 2,072 pixels, file size: 569 KB, MIME type: image/jpeg)|400}}
[[Complex map]] of function [[AuTra]], $u\!+\!i v\!=\! \mathrm{AuTra}(x\!+\!\mathrm i y)$
 
  +
  +
Fig.20.11 at page 287 of book «[[Superfunctions]]»<ref name="e"><small>
  +
https://www.amazon.com/Superfunctions-Non-integer-holomorphic-functions-superfunctions/dp/6202672862
  +
</small><br>
  +
https://mizugadro.mydns.jp/BOOK/468.pdf D.Kouznetsov. [[Superfunctions]]. [[Lambert Academic Publishing]], 2020.
  +
</ref>, 2020.
  +
  +
It appears also as Рис.20.11 at page 297 of the Russian version «[[Суперфункции]]»<ref name="r">
  +
https://www.morebooks.de/store/ru/book/Суперфункции/isbn/978-3-659-56202-0 <br>
  +
https://mizugadro.mydns.jp/BOOK/202.pdf Д.Кузнецов. [[Суперфункции]]. [[Lambert Academic Publishing]], 2014 (in Russian)
  +
</ref>, 2014.
  +
  +
The picture shows the [[complex map]]
  +
of function [[AuTra]].
  +
It is [[Abelfunction]] for the elementary [[Trappmann function]]
  +
\(\mathrm{tra} = z \mapsto z+\exp(z)\).
  +
  +
[[AuTra]] is inverse function of [[SuTra]].
  +
[[SuTra]] is [[Entire Function with Logarithmic Asymptotic]],
  +
it is described also in the [[Applied Mathematical Sciences]] <ref>
  +
https://www.m-hikari.com/ams/ams-2013/ams-129-132-2013/kouznetsovAMS129-132-2013.pdf <br>
  +
https://mizugadro.mydns.jp/PAPERS/2013hikari.pdf D.Kouznetsov. [[Entire Function with Logarithmic Asymptotic]]. [[Applied Mathematical Sciences]], Vol. 7, 2013, no. 131, 6527 - 6541
  +
</ref>, 2013.
  +
  +
[[Complex map]] is shown with \(u\!+\!i v\!=\! \mathrm{AuTra}(x\!+\!\mathrm i y)\).
   
[[AuTra]] is [[Abel function]] of the [[Trappmann function]] $\mathrm{tra}(z)\!=\!z\!+\!\exp(z)$.
 
   
 
==[[C++]] generator of curves==
 
==[[C++]] generator of curves==
   
// Files [[ado.cin]], [[conto.cin]], [[tania.cin]], [[LambertW.cin]], [[SuZex.cin]], [[AuZex.cin]] should be loaded to the working directory in order to compile the code below
+
// Files [[ado.cin]], [[conto.cin]],
  +
[[arctran.cin]],
  +
[[sutran.cin]]
  +
[[autran.cin]] should be loaded to the working directory in order to compile the code below
  +
<pre>
  +
#include <math.h>
  +
#include <stdio.h>
  +
#include <stdlib.h>
  +
#define DB double
  +
#define DO(x,y) for(x=0;x<y;x++)
  +
using namespace std;
  +
#include<complex>
  +
typedef complex<double> z_type;
  +
#define Re(x) x.real()
  +
#define Im(x) x.imag()
  +
#define I z_type(0.,1.)
  +
#include "conto.cin"
   
#include <math.h>
+
#include "arctran.cin"
#include <stdio.h>
+
#include "sutran.cin"
#include <stdlib.h>
+
#include "autran.cin"
  +
int main(){ int j,k,m,n; DB x,y, p,q, t; z_type z,c,d, cu,cd;
#define DB double
 
  +
//DB x1=-1.1259817765745026; DO(n,8){ y=Re(suzex(x1)); x=y-1.; x1+=-1.2*x; printf("%18.16f %18.16f\n", x1,y);} getchar();
#define DO(x,y) for(x=0;x<y;x++)
 
  +
int M=501,M1=M+1;
using namespace std;
 
  +
int N=1001,N1=N+1;
#include<complex>
 
  +
DB X[M1],Y[N1];
typedef complex<double> z_type;
 
  +
DB *g, *f, *w; // w is working array.
#define Re(x) x.real()
 
  +
g=(DB *)malloc((size_t)((M1*N1)*sizeof(DB)));
#define Im(x) x.imag()
 
  +
f=(DB *)malloc((size_t)((M1*N1)*sizeof(DB)));
#define I z_type(0.,1.)
 
  +
w=(DB *)malloc((size_t)((M1*N1)*sizeof(DB)));
#include "conto.cin"
 
  +
char v[M1*N1]; // v is working array
#include "tania.cin"
 
  +
FILE *o;o=fopen("AuTraMap.eps","w"); ado(o,2002,2002);
#include "LambertW.cin"
 
  +
fprintf(o,"1001 1001 translate\n 100 100 scale\n");
#include "SuZex.cin"
 
  +
fprintf(o,"1 setlinejoin 2 setlinecap\n");
#include "AuZex.cin"
 
  +
DO(m,M1) X[m]=-10+.04*(m-.5);
  +
DO(n,N1) Y[n]=-10+.04*(n-.49);
  +
//for(n=0;n<N1;n++) { Y[n]=1.09*sinh((3./200.)*(n-200)); printf("%3d %9.6f\n",n,Y[n]); }
  +
for(m=-10;m<11;m++){M(m,-10) L(m,10) }
  +
for(n=-10;n<11;n++){M( -10,n) L(10,n)}
  +
fprintf(o,".006 W 0 0 0 RGB S\n");
  +
DO(m,M1)DO(n,N1){ g[m*N1+n]=9999;
  +
f[m*N1+n]=9999;}
  +
DO(m,M1){x=X[m]; if(m/10*10==m) printf("x=%6.3f\n",x);
  +
DO(n,N1){y=Y[n]; z=z_type(x,y); //if(abs(z+2.)>.019)
  +
// c=AuZex01(z-1.);
  +
// c=AuZexAsy(LambertW(z))+1.;
  +
//c=auzex(z);
  +
//c=suzex(c);
  +
c=autran(z);
  +
// p=abs(c-z)/(abs(c)+abs(z)); p=-log(p)/log(10.); if(p>0 && p<17) g[m*N1+n]=p;
  +
p=Re(c); q=Im(c); if(p<1000 && p>-1000 && q<1000 && q>-1000
  +
// ( x<2. || fabs(q)>1.e-12 && fabs(p)>1.e-12)
  +
){ g[m*N1+n]=p;f[m*N1+n]=q;}
  +
}}
  +
fprintf(o,"1 setlinejoin 1 setlinecap\n");
  +
p=4.;q=.6;
  +
for(m=-6;m<6;m++)for(n=2;n<10;n+=2)conto(o,f,w,v,X,Y,M,N,(m+.1*n),-q,q);fprintf(o,".008 W 0 .6 0 RGB S\n");
  +
for(m=0;m<6;m++) for(n=2;n<10;n+=2)conto(o,g,w,v,X,Y,M,N,-(m+.1*n),-q,q);fprintf(o,".008 W .9 0 0 RGB S\n");
  +
for(m=0;m<6;m++) for(n=2;n<10;n+=2)conto(o,g,w,v,X,Y,M,N, (m+.1*n),-q,q);fprintf(o,".008 W 0 0 .9 RGB S\n");
   
  +
for(m= 1;m<13;m++) conto(o,f,w,v,X,Y,M,N, (0.-m),-p,p);fprintf(o,".032 W .8 0 0 RGB S\n");
z_type arctra(z_type z){return z-Tania(z-1.);}
 
  +
for(m= 1;m<13;m++) conto(o,f,w,v,X,Y,M,N, (0.+m),-p,p);fprintf(o,".032 W 0 0 .8 RGB S\n");
z_type tra(z_type z) {return z+exp(z);}
 
  +
conto(o,f,w,v,X,Y,M,N, (0. ),-4*p,4*p); fprintf(o,".032 W .5 0 .5 RGB S\n");
z_type autra0(z_type z) {return auzex(exp(z));}
 
  +
for(m=-12;m<13;m++)conto(o,g,w,v,X,Y,M,N,(0.+m),-p,p);fprintf(o,".03 W 0 0 0 RGB S\n");
z_type autra(z_type z) { if(fabs(Im(z))<M_PI) return auzex(exp(z));
 
return autra(arctra(z)) +1.; }
 
   
  +
main(){ int j,k,m,n; DB x,y, p,q, t; z_type z,c,d, cu,cd;
 
  +
fprintf(o,"0 setlinejoin 0 setlinecap\n");
//DB x1=-1.1259817765745026; DO(n,8){ y=Re(suzex(x1)); x=y-1.; x1+=-1.2*x; printf("%18.16f %18.16f\n", x1,y);} getchar();
 
  +
M(-10, M_PI)L(-1, M_PI)
int M=501,M1=M+1;
 
  +
M(-10,-M_PI)L(-1,-M_PI) fprintf(o,"1 1 1 RGB .08 W S\n");
int N=1001,N1=N+1;
 
  +
DO(n,26){M(-1.-.4*n, M_PI)L(-1.-.4*(n+.4), M_PI) }
DB X[M1],Y[N1];
 
  +
DO(n,26){M(-1.-.4*n,-M_PI)L(-1.-.4*(n+.4),-M_PI) } fprintf(o,"0 0 0 RGB .12 W S\n");
DB *g, *f, *w; // w is working array.
 
  +
//#include "plofu.cin"
g=(DB *)malloc((size_t)((M1*N1)*sizeof(DB)));
 
  +
fprintf(o,"showpage\n");
f=(DB *)malloc((size_t)((M1*N1)*sizeof(DB)));
 
  +
fprintf(o,"%c%cTrailer\n",'%','%');
w=(DB *)malloc((size_t)((M1*N1)*sizeof(DB)));
 
  +
fclose(o); free(f); free(g); free(w);
char v[M1*N1]; // v is working array
 
FILE *o;o=fopen("AuTraMap.eps","w"); ado(o,2002,2002);
+
system("epstopdf AuTraMap.eps");
  +
system( "open AuTraMap.pdf"); //for macintosh
fprintf(o,"1001 1001 translate\n 100 100 scale\n");
 
  +
getchar(); system("killall Preview"); // For macintosh
fprintf(o,"1 setlinejoin 2 setlinecap\n");
 
  +
return 0;
DO(m,M1) X[m]=-10+.04*(m-.5);
 
  +
}
DO(n,N1) Y[n]=-10+.02*(n-.5);
 
  +
</pre>
//for(n=0;n<N1;n++) { Y[n]=1.09*sinh((3./200.)*(n-200)); printf("%3d %9.6f\n",n,Y[n]); }
 
for(m=-10;m<11;m++){M(m,-10) L(m,10) }
 
for(n=-10;n<11;n++){M( -10,n) L(10,n)}
 
fprintf(o,".006 W 0 0 0 RGB S\n");
 
DO(m,M1)DO(n,N1){ g[m*N1+n]=9999;
 
f[m*N1+n]=9999;}
 
DO(m,M1){x=X[m]; if(m/10*10==m) printf("x=%6.3f\n",x);
 
DO(n,N1){y=Y[n]; z=z_type(x,y); //if(abs(z+2.)>.019)
 
// c=AuZex01(z-1.);
 
// c=AuZexAsy(LambertW(z))+1.;
 
//c=auzex(z);
 
//c=suzex(c);
 
c=autra(z);
 
// p=abs(c-z)/(abs(c)+abs(z)); p=-log(p)/log(10.); if(p>0 && p<17) g[m*N1+n]=p;
 
p=Re(c); q=Im(c); if(p<1000 && p>-1000 && q<1000 && q>-1000
 
// ( x<2. || fabs(q)>1.e-12 && fabs(p)>1.e-12)
 
){ g[m*N1+n]=p;f[m*N1+n]=q;}
 
}}
 
fprintf(o,"1 setlinejoin 1 setlinecap\n");
 
p=16.;q=2.;
 
/* p=9;q=.16;
 
conto(o,g,w,v,X,Y,M,N,(15.3 ),-p,p); fprintf(o,".01 W .4 1 0 RGB S\n");
 
conto(o,g,w,v,X,Y,M,N,(15. ),-p,p); fprintf(o,".02 W 1 0 1 RGB S\n");
 
conto(o,g,w,v,X,Y,M,N,(14.7 ),-p,p); fprintf(o,".01 W 1 .5 0 RGB S\n");
 
conto(o,g,w,v,X,Y,M,N,(14. ),-p,p); fprintf(o,".01 W .2 .2 0 RGB S\n");
 
conto(o,g,w,v,X,Y,M,N,(13. ),-p,p); fprintf(o,".01 W 0 0 0 RGB S\n");
 
conto(o,g,w,v,X,Y,M,N,(12. ),-p,p); fprintf(o,".03 W 0 0 1 RGB S\n");
 
conto(o,g,w,v,X,Y,M,N,(11. ),-p,p); fprintf(o,".01 W 0 0 0 RGB S\n");
 
conto(o,g,w,v,X,Y,M,N,(10. ),-p,p); fprintf(o,".01 W 0 0 0 RGB S\n");
 
conto(o,g,w,v,X,Y,M,N, (9. ),-p,p); fprintf(o,".03 W 0 1 1 RGB S\n");
 
conto(o,g,w,v,X,Y,M,N, (8. ),-p,p); fprintf(o,".01 W 0 0 0 RGB S\n");
 
conto(o,g,w,v,X,Y,M,N, (7. ),-p,p); fprintf(o,".01 W 0 0 0 RGB S\n");
 
conto(o,g,w,v,X,Y,M,N, (6. ),-p,p); fprintf(o,".04 W 0 .5 0 RGB S\n");
 
conto(o,g,w,v,X,Y,M,N, (5. ),-p,p); fprintf(o,".01 W 0 0 0 RGB S\n");
 
conto(o,g,w,v,X,Y,M,N, (4. ),-p,p); fprintf(o,".01 W 0 0 0 RGB S\n");
 
conto(o,g,w,v,X,Y,M,N, (3. ),-p,p); fprintf(o,".02 W 1 0 0 RGB S\n");
 
conto(o,g,w,v,X,Y,M,N, (2. ),-p,p); fprintf(o,".01 W 0 0 0 RGB S\n");
 
conto(o,g,w,v,X,Y,M,N, (1. ),-p,p); fprintf(o,".02 W .5 0 0 RGB S\n");
 
*/
 
for(m=-8;m<8;m++)for(n=2;n<10;n+=2)conto(o,f,w,v,X,Y,M,N,(m+.1*n),-q,q);fprintf(o,".008 W 0 .6 0 RGB S\n");
 
for(m=0;m<8;m++) for(n=2;n<10;n+=2)conto(o,g,w,v,X,Y,M,N,-(m+.1*n),-q,q);fprintf(o,".008 W .9 0 0 RGB S\n");
 
for(m=0;m<8;m++) for(n=2;n<10;n+=2)conto(o,g,w,v,X,Y,M,N, (m+.1*n),-q,q);fprintf(o,".008 W 0 0 .9 RGB S\n");
 
for(m= 1;m<17;m++) conto(o,f,w,v,X,Y,M,N, (0.-m),-p,p);fprintf(o,".032 W .8 0 0 RGB S\n");
 
for(m= 1;m<17;m++) conto(o,f,w,v,X,Y,M,N, (0.+m),-p,p);fprintf(o,".032 W 0 0 .8 RGB S\n");
 
conto(o,f,w,v,X,Y,M,N, (0. ),-2*p,2*p); fprintf(o,".032 W .5 0 .5 RGB S\n");
 
for(m=-16;m<17;m++)conto(o,g,w,v,X,Y,M,N,(0.+m),-p,p);fprintf(o,".03 W 0 0 0 RGB S\n");
 
fprintf(o,"0 setlinejoin 0 setlinecap\n");
 
M(-10, M_PI)L(-1, M_PI)
 
M(-10,-M_PI)L(-1,-M_PI) fprintf(o,"1 1 1 RGB .044 W S\n");
 
DO(n,51){M(-1.-.2*n, M_PI)L(-1.-.2*(n+.4), M_PI) }
 
DO(n,51){M(-1.-.2*n,-M_PI)L(-1.-.2*(n+.4),-M_PI) } fprintf(o,"0 0 0 RGB .05 W S\n");
 
//#include "plofu.cin"
 
fprintf(o,"showpage\n");
 
fprintf(o,"%c%cTrailer\n",'%','%');
 
fclose(o); free(f); free(g); free(w);
 
system("epstopdf AuTraMap.eps");
 
system( "open AuTraMap.pdf"); //for macintosh
 
getchar(); system("killall Preview"); // For macintosh
 
}
 
   
 
==[[Latex]] generator of labels==
 
==[[Latex]] generator of labels==
   
 
%File [[AuTraMap.pdf]] should be generated with the code above in order to compile the [[Latex]] document below.
 
%File [[AuTraMap.pdf]] should be generated with the code above in order to compile the [[Latex]] document below.
  +
<pre>
 
  +
\documentclass[12pt]{article}
% <poem><nomathjax><nowiki> %<br>
 
  +
\paperwidth 2100px
\documentclass[12pt]{article} % <br>
 
  +
\paperheight 2072px
\paperwidth 2096px % <br>
 
  +
\textwidth 2394px
\paperheight 2072px % <br>
 
  +
\textheight 2300px
\textwidth 2394px % <br>
 
  +
\topmargin -101px
\textheight 2300px % <br>
 
  +
\oddsidemargin -80px
\topmargin -101px % <br>
 
  +
\usepackage{graphics}
\oddsidemargin -78px % <br>
 
\usepackage{graphics} % <br>
+
\usepackage{rotating}
  +
\newcommand \sx {\scalebox}
\usepackage{rotating} % <br>
 
\newcommand \sx {\scalebox} % <br>
+
\newcommand \rot {\begin{rotate}}
\newcommand \rot {\begin{rotate}} % <br>
+
\newcommand \ero {\end{rotate}}
\newcommand \ero {\end{rotate}} % <br>
+
\newcommand \ing {\includegraphics}
\newcommand \ing {\includegraphics} % <br>
+
\newcommand \rmi {\mathrm{i}}
\newcommand \rmi {\mathrm{i}} % <br>
 
 
\parindent 0pt
 
\parindent 0pt
 
\pagestyle{empty}
 
\pagestyle{empty}
\begin{document} % <br>
+
\begin{document}
\newcommand \zoomax { % <br>
+
\newcommand \zoomax {
\put(40,2048){\sx{8}{$y$}} % <br>
+
\put(40,2048){\sx{8}{$y$}}
\put(40,1870){\sx{7}{$8$}} % <br>
+
\put(40,1870){\sx{7}{$8$}}
\put(40,1670){\sx{7}{$6$}} % <br>
+
\put(40,1670){\sx{7}{$6$}}
\put(40,1470){\sx{7}{$4$}} % <br>
+
\put(40,1470){\sx{7}{$4$}}
\put(40,1270){\sx{7}{$2$}} % <br>
+
\put(40,1270){\sx{7}{$2$}}
\put(40,1070){\sx{7}{$0$}} % <br>
+
\put(40,1070){\sx{7}{$0$}}
\put(-12,870){\sx{7}{$-2$}} % <br>
+
\put(-12,870){\sx{7}{$-2$}}
\put(-12,670){\sx{7}{$-4$}} % <br>
+
\put(-12,670){\sx{7}{$-4$}}
\put(-12,470){\sx{7}{$-6$}} % <br>
+
\put(-12,470){\sx{7}{$-6$}}
\put(-12,270){\sx{7}{$-8$}} % <br>
+
\put(-12,270){\sx{7}{$-8$}}
\put(002, 28){\sx{7}{$-\!10$}} % <br>
+
\put(002, 28){\sx{7}{$-\!10$}}
\put(220, 28){\sx{7}{$-8$}} % <br>
+
\put(220, 28){\sx{7}{$-8$}}
\put(420, 28){\sx{7}{$-6$}} % <br>
+
\put(420, 28){\sx{7}{$-6$}}
\put(620, 28){\sx{7}{$-4$}} % <br>
+
\put(620, 28){\sx{7}{$-4$}}
\put(820, 28){\sx{7}{$-2$}} % <br>
+
\put(820, 28){\sx{7}{$-2$}}
\put(1088, 28){\sx{7}{$0$}} % <br>
+
\put(1088, 28){\sx{7}{$0$}}
\put(1288, 28){\sx{7}{$2$}} % <br>
+
\put(1288, 28){\sx{7}{$2$}}
\put(1488, 28){\sx{7}{$4$}} % <br>
+
\put(1488, 28){\sx{7}{$4$}}
\put(1688, 28){\sx{7}{$6$}} % <br>
+
\put(1688, 28){\sx{7}{$6$}}
\put(1888, 28){\sx{7}{$8$}} % <br>
+
\put(1888, 28){\sx{7}{$8$}}
\put(2058, 28){\sx{7}{$x$}} % <br>
+
\put(2058, 28){\sx{7}{$x$}}
%\put(2166, 28){\sx{7}{$x$}} % <br>
+
%\put(2166, 28){\sx{7}{$x$}}
  +
}
} % <br>
 
\parindent 0pt % <br>
+
\parindent 0pt
\sx{1}{\begin{picture}(2102,2094) % <br>
+
\sx{1}{\begin{picture}(2102,2094)
%\put(40,20){\ing{b271tMap3}} % <br>
+
%\put(40,20){\ing{b271tMap3}}
%\put(40,20){\ing{ExpMap}} % <br>
+
%\put(40,20){\ing{ExpMap}}
\put(98,88){\ing{AuTraMap}} % <br>
+
\put(98,88){\ing{AuTraMap}}
\zoomax % <br>
+
\zoomax
\put(218,1384){\sx{9}{\bf cut}} % <br>
+
\put(218,1384){\sx{9}{\bf cut}}
\put(218, 752){\sx{9}{\bf cut}} % <br>
+
\put(218, 752){\sx{9}{\bf cut}}
 
%
 
%
 
\put( 224,1836){\sx{8}{\rot{35}$v\!=\!0.6$\ero}}
 
\put( 224,1836){\sx{8}{\rot{35}$v\!=\!0.6$\ero}}
 
\put( 1590,1496){\sx{8}{\rot{70}$v\!=\!0.4$\ero}}
 
\put( 1590,1496){\sx{8}{\rot{70}$v\!=\!0.4$\ero}}
 
\put( 1800,1360){\sx{8}{\rot{38}$v\!=\!0.2$\ero}}
 
\put( 1800,1360){\sx{8}{\rot{38}$v\!=\!0.2$\ero}}
\put( 140,1068){\sx{9}{$v\!=\!0$}} % <br>
+
\put( 140,1068){\sx{9}{$v\!=\!0$}}
\put(1874,1068){\sx{9}{$v\!=\!0$}} % <br>
+
\put(1874,1068){\sx{9}{$v\!=\!0$}}
 
\put( 1740, 814){\sx{8}{\rot{-40}$v\!=\!-0.2$\ero}}
 
\put( 1740, 814){\sx{8}{\rot{-40}$v\!=\!-0.2$\ero}}
 
\put( 194, 306){\sx{8}{\rot{-35}$v\!=\!-0.6$\ero}}
 
\put( 194, 306){\sx{8}{\rot{-35}$v\!=\!-0.6$\ero}}
Line 175: Line 180:
 
\put( 670, 290){\sx{9}{\rot{60}$u\!=\!3$\ero}}
 
\put( 670, 290){\sx{9}{\rot{60}$u\!=\!3$\ero}}
 
%
 
%
\end{picture}} % <br>
+
\end{picture}}
\end{document} % <br>
+
\end{document}
  +
</pre>
</nowiki></nomathjax></poem>
 
  +
==References==
  +
{{ref}}
  +
  +
{{fer}}
  +
==Keywords==
  +
«[[Abel function]]»,
  +
«[[Abelfunction]]»,
  +
«[[AuTra]]»,
  +
«[[Complex map]]»,
  +
«[[Inverse function]]»,
  +
«[[Superfunctions]]»,
  +
«[[Trappmann function]]»,
   
[[Category:AuTra]]
 
[[Category:Trappmann function]]
 
[[Category:Inverse function]]
 
[[Category:SuZex]]
 
[[Category:Tania function]]
 
 
[[Category:Abel function]]
 
[[Category:Abel function]]
[[Category:Regular iteration]]
+
[[Category:Abelfunction]]
[[Category:Complex map]]
+
[[Category:AuTra]]
  +
[[Category:Book]]
  +
[[Category:BookMap]]
 
[[Category:C++]]
 
[[Category:C++]]
  +
[[Category:Complex map]]
  +
[[Category:Inverse function]]
 
[[Category:Latex]]
 
[[Category:Latex]]
  +
[[Category:Superfunctions]]
  +
[[Category:Trappmann function]]

Revision as of 16:53, 12 January 2026


Fig.20.11 at page 287 of book «Superfunctions»[1], 2020.

It appears also as Рис.20.11 at page 297 of the Russian version «Суперфункции»[2], 2014.

The picture shows the complex map of function AuTra. It is Abelfunction for the elementary Trappmann function \(\mathrm{tra} = z \mapsto z+\exp(z)\).

AuTra is inverse function of SuTra. SuTra is Entire Function with Logarithmic Asymptotic, it is described also in the Applied Mathematical Sciences [3], 2013.

Complex map is shown with \(u\!+\!i v\!=\! \mathrm{AuTra}(x\!+\!\mathrm i y)\).


C++ generator of curves

// Files ado.cin, conto.cin, arctran.cin, sutran.cin autran.cin should be loaded to the working directory in order to compile the code below

#include <math.h>
#include <stdio.h>
#include <stdlib.h>
#define DB double
#define DO(x,y) for(x=0;x<y;x++)
using namespace std;
#include<complex>
typedef complex<double> z_type;
#define Re(x) x.real()
#define Im(x) x.imag()
#define I z_type(0.,1.)
#include "conto.cin"

#include "arctran.cin"
#include "sutran.cin"
#include "autran.cin"
int main(){ int j,k,m,n; DB x,y, p,q, t; z_type z,c,d, cu,cd;
//DB x1=-1.1259817765745026; DO(n,8){ y=Re(suzex(x1)); x=y-1.; x1+=-1.2*x; printf("%18.16f %18.16f\n", x1,y);} getchar();
int M=501,M1=M+1;
int N=1001,N1=N+1;
DB X[M1],Y[N1];
DB *g, *f, *w; // w is working array.
g=(DB *)malloc((size_t)((M1*N1)*sizeof(DB)));
f=(DB *)malloc((size_t)((M1*N1)*sizeof(DB)));
w=(DB *)malloc((size_t)((M1*N1)*sizeof(DB)));
char v[M1*N1]; // v is working array
FILE *o;o=fopen("AuTraMap.eps","w");  ado(o,2002,2002);
fprintf(o,"1001 1001 translate\n 100 100 scale\n");
fprintf(o,"1 setlinejoin 2 setlinecap\n");
DO(m,M1) X[m]=-10+.04*(m-.5);
DO(n,N1) Y[n]=-10+.04*(n-.49); 
//for(n=0;n<N1;n++) { Y[n]=1.09*sinh((3./200.)*(n-200)); printf("%3d %9.6f\n",n,Y[n]); }
for(m=-10;m<11;m++){M(m,-10) L(m,10)  }
for(n=-10;n<11;n++){M(  -10,n) L(10,n)}
 fprintf(o,".006 W 0 0 0 RGB S\n");
DO(m,M1)DO(n,N1){      g[m*N1+n]=9999;
                       f[m*N1+n]=9999;}
DO(m,M1){x=X[m]; if(m/10*10==m) printf("x=%6.3f\n",x);
DO(n,N1){y=Y[n]; z=z_type(x,y); //if(abs(z+2.)>.019)
// c=AuZex01(z-1.);
// c=AuZexAsy(LambertW(z))+1.;
//c=auzex(z);
//c=suzex(c);
  c=autran(z);
// p=abs(c-z)/(abs(c)+abs(z)); p=-log(p)/log(10.); if(p>0 && p<17) g[m*N1+n]=p;
 p=Re(c); q=Im(c); if(p<1000 && p>-1000 && q<1000 && q>-1000 
// ( x<2. ||  fabs(q)>1.e-12 && fabs(p)>1.e-12) 
){ g[m*N1+n]=p;f[m*N1+n]=q;}
       }}
fprintf(o,"1 setlinejoin 1 setlinecap\n");
 p=4.;q=.6;
for(m=-6;m<6;m++)for(n=2;n<10;n+=2)conto(o,f,w,v,X,Y,M,N,(m+.1*n),-q,q);fprintf(o,".008 W 0 .6 0 RGB S\n");
for(m=0;m<6;m++) for(n=2;n<10;n+=2)conto(o,g,w,v,X,Y,M,N,-(m+.1*n),-q,q);fprintf(o,".008 W .9 0 0 RGB S\n");
for(m=0;m<6;m++) for(n=2;n<10;n+=2)conto(o,g,w,v,X,Y,M,N, (m+.1*n),-q,q);fprintf(o,".008 W 0 0 .9 RGB S\n");

for(m= 1;m<13;m++) conto(o,f,w,v,X,Y,M,N, (0.-m),-p,p);fprintf(o,".032 W .8 0 0 RGB S\n");
for(m= 1;m<13;m++) conto(o,f,w,v,X,Y,M,N, (0.+m),-p,p);fprintf(o,".032 W 0 0 .8 RGB S\n");
               conto(o,f,w,v,X,Y,M,N, (0.  ),-4*p,4*p); fprintf(o,".032 W .5 0 .5 RGB S\n");
for(m=-12;m<13;m++)conto(o,g,w,v,X,Y,M,N,(0.+m),-p,p);fprintf(o,".03 W 0 0 0 RGB S\n");


fprintf(o,"0 setlinejoin 0 setlinecap\n");
M(-10, M_PI)L(-1, M_PI) 
M(-10,-M_PI)L(-1,-M_PI) fprintf(o,"1 1 1 RGB .08 W S\n");
DO(n,26){M(-1.-.4*n, M_PI)L(-1.-.4*(n+.4), M_PI) }
DO(n,26){M(-1.-.4*n,-M_PI)L(-1.-.4*(n+.4),-M_PI) }   fprintf(o,"0 0 0 RGB .12 W S\n");
//#include "plofu.cin"
fprintf(o,"showpage\n");
fprintf(o,"%c%cTrailer\n",'%','%');
fclose(o);  free(f); free(g); free(w);
      system("epstopdf AuTraMap.eps"); 
      system(    "open AuTraMap.pdf"); //for macintosh
      getchar(); system("killall Preview"); // For macintosh
return 0;
}

Latex generator of labels

%File AuTraMap.pdf should be generated with the code above in order to compile the Latex document below.

\documentclass[12pt]{article}
\paperwidth 2100px
\paperheight 2072px
\textwidth 2394px
\textheight 2300px
\topmargin -101px
\oddsidemargin -80px
\usepackage{graphics}
\usepackage{rotating}
\newcommand \sx {\scalebox}
\newcommand \rot {\begin{rotate}}
\newcommand \ero {\end{rotate}}
\newcommand \ing {\includegraphics}
\newcommand \rmi {\mathrm{i}}
\parindent 0pt
\pagestyle{empty}
\begin{document}
\newcommand \zoomax {
\put(40,2048){\sx{8}{$y$}}
\put(40,1870){\sx{7}{$8$}}
\put(40,1670){\sx{7}{$6$}}
\put(40,1470){\sx{7}{$4$}}
\put(40,1270){\sx{7}{$2$}}
\put(40,1070){\sx{7}{$0$}}
\put(-12,870){\sx{7}{$-2$}}
\put(-12,670){\sx{7}{$-4$}}
\put(-12,470){\sx{7}{$-6$}}
\put(-12,270){\sx{7}{$-8$}}
\put(002, 28){\sx{7}{$-\!10$}}
\put(220, 28){\sx{7}{$-8$}}
\put(420, 28){\sx{7}{$-6$}}
\put(620, 28){\sx{7}{$-4$}}
\put(820, 28){\sx{7}{$-2$}}
\put(1088, 28){\sx{7}{$0$}}
\put(1288, 28){\sx{7}{$2$}}
\put(1488, 28){\sx{7}{$4$}}
\put(1688, 28){\sx{7}{$6$}}
\put(1888, 28){\sx{7}{$8$}}
\put(2058, 28){\sx{7}{$x$}}
%\put(2166, 28){\sx{7}{$x$}}
}
\parindent 0pt
\sx{1}{\begin{picture}(2102,2094)
%\put(40,20){\ing{b271tMap3}}
%\put(40,20){\ing{ExpMap}}
\put(98,88){\ing{AuTraMap}}
\zoomax
\put(218,1384){\sx{9}{\bf cut}}
\put(218, 752){\sx{9}{\bf cut}}
%
\put( 224,1836){\sx{8}{\rot{35}$v\!=\!0.6$\ero}}
\put( 1590,1496){\sx{8}{\rot{70}$v\!=\!0.4$\ero}}
\put( 1800,1360){\sx{8}{\rot{38}$v\!=\!0.2$\ero}}
\put( 140,1068){\sx{9}{$v\!=\!0$}}
\put(1874,1068){\sx{9}{$v\!=\!0$}}
\put( 1740, 814){\sx{8}{\rot{-40}$v\!=\!-0.2$\ero}}
\put( 194, 306){\sx{8}{\rot{-35}$v\!=\!-0.6$\ero}}
%
\put( 606, 1920){\sx{9}{\rot{-64}$u\!=\!3$\ero}}
\put( 1500, 992){\sx{8.2}{\rot{90}$u\!=\!2$\ero}}
\put( 1630, 960){\sx{8}{\rot{90}$u\!=\!2.2$\ero}}
\put( 1846, 960){\sx{8}{\rot{90}$u\!=\!2.4$\ero}}
\put( 1724, 400){\sx{8}{\rot{22}$u\!=\!2.6$\ero}}
\put( 670, 290){\sx{9}{\rot{60}$u\!=\!3$\ero}}
%
\end{picture}}
\end{document}

References

File history

Click on a date/time to view the file as it appeared at that time.

Date/TimeThumbnailDimensionsUserComment
current16:55, 12 January 2026Thumbnail for version as of 16:55, 12 January 20262,100 × 2,072 (569 KB)T (talk | contribs)smaller size, better view
17:50, 20 June 2013Thumbnail for version as of 17:50, 20 June 20134,367 × 4,317 (1.82 MB)Maintenance script (talk | contribs)Importing image file

The following page uses this file: