LEADER 04330nam 22005895 450 001 9910806196503321 005 20240125113739.0 010 $a3-031-43316-5 024 7 $a10.1007/978-3-031-43316-0 035 $a(CKB)30098006700041 035 $a(MiAaPQ)EBC31088552 035 $a(Au-PeEL)EBL31088552 035 $a(DE-He213)978-3-031-43316-0 035 $a(MiAaPQ)EBC31093936 035 $a(Au-PeEL)EBL31093936 035 $a(EXLCZ)9930098006700041 100 $a20240125d2023 u| 0 101 0 $aeng 135 $aur||||||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aEquilibrium Compound Nucleus Post-Fission Theory$b[electronic resource] /$fby Qing-Biao Shen, Ye Tian 205 $a1st ed. 2023. 210 1$aCham :$cSpringer Nature Switzerland :$cImprint: Springer,$d2023. 215 $a1 online resource (285 pages) 311 08$a9783031433153 327 $aChapter 1. Development of Fission Theory -- Chapter 2. Kinematics of Heavy Ion Collisions -- Chapter 3. Heavy Ion Spherical Optical Model -- Chapter 4. Hauser-Feshbach Theory for Heavy Ion Reactions -- Chapter 5. Initial Yield, Kinetic Energy Distribution, and Angular Distribution of Fission Fragments -- Chapter 6. Compound Nucleus Deexcitation Theory -- Chapter 7. Fission Prompt Neutrons, Prompt Rays, and Fission Fragment Independent Yield -- Chapter 8. Fission Fragment Cumulative Yield, Decay Heat, and Final Mass Distribution -- Chapter 9. Fission Delayed Neutron Simplification Model -- Chapter 10. Theoretical Method for Calculating the Total Contribution of (n,f),(n,n?f),(n,2nf) Three Fission Channels -- Chapter 11. Main Steps of Numerical Calculations for Post-Fission Nuclear Data and Conclusion. 330 $aThis book proposes and develops the equilibrium compound nucleus post-fission theory, a powerful tool for studying the fission process and making numerical calculations of post-fission nuclear data. It begins with a detailed historical background on fission theory and covers fundamental concepts, such as the Bohr-Wheeler formula and time dependent nuclear density functional theory. The authors explain the kinematics of heavy-ion collisions and develop a heavy-ion spherical optical model. They also present the theoretical methods for calculating the yield, kinetic energy distribution, and angular distribution of fission fragments in the initial state of fission. In addition, readers are provided with the method for calculating the prompt neutron and prompt gamma-ray data as well as the proportion of the isomeric state nucleus and independent yield from the initial yield of the fission fragments. Using the nuclear decay data of the fission products, a method for calculating the cumulative yield and decay heat of the fission fragments is also given. A fission delayed neutron simplification model is proposed and the theoretical method for calculating the total contribution of three fission channels to post-fission nuclear data is provided. This book concludes with a step-by-step guide on numerical calculations for post-fission nuclear data and a Fortran program for optimizing the best theoretical model parameters. It is ideal for both junior and senior researchers in nuclear physics, as well as graduate students who are interested learning about the subject. Given the current interest in post-fission and the tremendous experimental and theoretical efforts in studying it, this book serves as a timely and comprehensive resource for the nuclear physics community. 606 $aNuclear physics 606 $aMathematical physics 606 $aNuclear engineering 606 $aNuclear Physics 606 $aMathematical Physics 606 $aNuclear Energy 615 0$aNuclear physics. 615 0$aMathematical physics. 615 0$aNuclear engineering. 615 14$aNuclear Physics. 615 24$aMathematical Physics. 615 24$aNuclear Energy. 676 $a539.762 700 $aShen$b Qing-Biao$01361245 701 $aTian$b Ye$0897533 701 $aCai$b Chong-Hai$01592018 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910806196503321 996 $aEquilibrium Compound Nucleus Post-Fission Theory$93907867 997 $aUNINA