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4 | original version by: Nikos Drakos, CBLU, University of Leeds |
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5 | * revised and updated by: Marcus Hennecke, Ross Moore, Herb Swan |
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6 | * with significant contributions from: |
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7 | Jens Lippmann, Marek Rouchal, Martin Wilck and others --> |
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10 | <TITLE>Evaporation Model</TITLE> |
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11 | <META NAME="description" CONTENT="Evaporation Model"> |
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42 | <B> Next:</B> <A NAME="tex2html3678" |
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43 | HREF="node167.html">Introduction.</A> |
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44 | <B> Up:</B> <A NAME="tex2html3674" |
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45 | HREF="node82.html">Hadronic Interactions</A> |
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47 | HREF="node165.html">Bibliography</A> |
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48 | <B> <A NAME="tex2html3676" |
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49 | HREF="node1.html">Contents</A></B> |
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50 | <BR> |
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51 | <BR> |
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52 | <!--End of Navigation Panel--> |
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53 | |
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54 | <H1><A NAME="SECTION051600000000000000000"> |
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55 | Evaporation Model</A> |
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56 | </H1> |
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57 | |
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58 | <P> |
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59 | <BR><HR> |
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60 | <!--Table of Child-Links--> |
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61 | <A NAME="CHILD_LINKS"><STRONG>Subsections</STRONG></A> |
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62 | |
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63 | <UL> |
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64 | <LI><A NAME="tex2html3679" |
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65 | HREF="node167.html">Introduction.</A> |
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66 | <LI><A NAME="tex2html3680" |
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67 | HREF="node168.html">Model description.</A> |
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68 | <UL> |
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69 | <LI><A NAME="tex2html3681" |
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70 | HREF="node168.html#SECTION051621000000000000000">Cross sections for inverse reactions.</A> |
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71 | <LI><A NAME="tex2html3682" |
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72 | HREF="node168.html#SECTION051622000000000000000">Coulomb barriers.</A> |
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73 | <LI><A NAME="tex2html3683" |
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74 | HREF="node168.html#SECTION051623000000000000000">Level densities.</A> |
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75 | <LI><A NAME="tex2html3684" |
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76 | HREF="node168.html#SECTION051624000000000000000">Maximum energy available for evaporation.</A> |
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77 | <LI><A NAME="tex2html3685" |
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78 | HREF="node168.html#SECTION051625000000000000000">Total decay width.</A> |
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79 | </UL> |
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80 | <BR> |
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81 | <LI><A NAME="tex2html3686" |
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82 | HREF="node169.html">GEM Model</A> |
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83 | <LI><A NAME="tex2html3687" |
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84 | HREF="node170.html">Fission probability calculation.</A> |
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85 | <UL> |
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86 | <LI><A NAME="tex2html3688" |
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87 | HREF="node170.html#SECTION051641000000000000000">The fission total probability.</A> |
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88 | <LI><A NAME="tex2html3689" |
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89 | HREF="node170.html#SECTION051642000000000000000">The fission barrier.</A> |
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90 | </UL> |
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91 | <BR> |
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92 | <LI><A NAME="tex2html3690" |
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93 | HREF="node171.html">The Total Probability for Photon Evaporation</A> |
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94 | <UL> |
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95 | <LI><A NAME="tex2html3691" |
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96 | HREF="node171.html#SECTION051651000000000000000">Energy of evaporated photon</A> |
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97 | </UL> |
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98 | <BR> |
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99 | <LI><A NAME="tex2html3692" |
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100 | HREF="node172.html">Discrete photon evaporation</A> |
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101 | <LI><A NAME="tex2html3693" |
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102 | HREF="node173.html">Internal conversion electron emission</A> |
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103 | <UL> |
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104 | <LI><A NAME="tex2html3694" |
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105 | HREF="node173.html#SECTION051671000000000000000">Multipolarity</A> |
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106 | <LI><A NAME="tex2html3695" |
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107 | HREF="node173.html#SECTION051672000000000000000">Binding energy</A> |
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108 | <LI><A NAME="tex2html3696" |
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109 | HREF="node173.html#SECTION051673000000000000000">Isotopes</A> |
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110 | </UL> |
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111 | <BR> |
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112 | <LI><A NAME="tex2html3697" |
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113 | HREF="node174.html">Bibliography</A> |
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114 | </UL> |
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