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aee8290b 1/**************************************************************************
2 * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
3 * *
4 * Author: The ALICE Off-line Project. *
5 * Contributors are mentioned in the code where appropriate. *
6 * *
7 * Permission to use, copy, modify and distribute this software and its *
8 * documentation strictly for non-commercial purposes is hereby granted *
9 * without fee, provided that the above copyright notice appears in all *
10 * copies and that both the copyright notice and this permission notice *
11 * appear in the supporting documentation. The authors make no claims *
12 * about the suitability of this software for any purpose. It is *
13 * provided "as is" without express or implied warranty. *
14 **************************************************************************/
15
acd84897 16/* $Id$ */
d8408e76 17
116cbefd 18//-------------------------------------------------------------------------
19//
20// Constant magnetic field class
21//
22//-------------------------------------------------------------------------
23
fb17acd4 24#include <stdlib.h>
aee8290b 25
26#include "AliMagFC.h"
27
28ClassImp(AliMagFC)
29
30//________________________________________
31AliMagFC::AliMagFC(const char *name, const char *title, const Int_t integ,
d8408e76 32 const Float_t factor, const Float_t fmax)
33 : AliMagF(name,title,integ,factor,fmax)
aee8290b 34{
35 //
36 // Standard constructor
37 //
aee8290b 38 fType = kConst;
d8408e76 39 fMap = 1;
40 printf("Constant Field %s created: map= %d, factor= %f\n",fName.Data(),fMap,
41 factor);
aee8290b 42}
43
44//________________________________________
45void AliMagFC::Field(Float_t *x, Float_t *b)
46{
47 //
48 // Method to return the field in a point
49 //
50 b[0]=b[1]=b[2]=0;
51 if(fMap==1) {
52 if(TMath::Abs(x[2])<700 && x[0]*x[0]+(x[1]+30)*(x[1]+30) < 560*560) {
53 b[2]=2;
54 } else {
55 if ( 725 <= x[2] && x[2] <= 1225 ) {
56 Float_t dz = TMath::Abs(975-x[2])*0.01;
57 b[0]=(1-0.1*dz*dz)*7;
58 }
59 else {
60//This is the ZDC part
d95ea23f 61 Float_t rad2=x[0]*x[0]+x[1]*x[1];
006cb30c 62 if(x[2]>kCORBEG2 && x[2]<kCOREND2){
d95ea23f 63 if(rad2<kCOR2RA2){
64 b[0] = kFCORN2;
65 }
66 }
67 else if(x[2]>kZ1BEG && x[2]<kZ1END){
68 if(rad2<kZ1RA2){
69 b[0] = -kG1*x[1];
70 b[1] = -kG1*x[0];
71 }
72 }
73 else if(x[2]>kZ2BEG && x[2]<kZ2END){
74 if(rad2<kZ2RA2){
75 b[0] = kG1*x[1];
76 b[1] = kG1*x[0];
77 }
78 }
79 else if(x[2]>kZ3BEG && x[2]<kZ3END){
80 if(rad2<kZ3RA2){
81 b[0] = kG1*x[1];
82 b[1] = kG1*x[0];
83 }
84 }
85 else if(x[2]>kZ4BEG && x[2]<kZ4END){
86 if(rad2<kZ4RA2){
87 b[0] = -kG1*x[1];
88 b[1] = -kG1*x[0];
89 }
90 }
91 else if(x[2]>kD1BEG && x[2]<kD1END){
92 if(rad2<kD1RA2){
93 b[1] = -kFDIP;
94 }
95 }
96 else if(x[2]>kD2BEG && x[2]<kD2END){
97 if(((x[0]-kXCEN1D2)*(x[0]-kXCEN1D2)+(x[1]-kYCEN1D2)*(x[1]-kYCEN1D2))<kD2RA2
98 || ((x[0]-kXCEN2D2)*(x[0]-kXCEN2D2)+(x[1]-kYCEN2D2)*(x[1]-kYCEN2D2))<kD2RA2){
99 b[1] = kFDIP;
100 }
101 }
102
aee8290b 103 }
104 }
105 if(fFactor!=1) {
106 b[0]*=fFactor;
107 b[1]*=fFactor;
108 b[2]*=fFactor;
109 }
110 } else {
111 printf("Invalid field map for constant field %d\n",fMap);
112 exit(1);
113 }
114}
115