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Calculation Methods in Nuclear Physics

Nuclear and Thermonuclear Processes

  • 1st Edition - May 1, 2026
  • Latest edition
  • Author: Sergey Dubovichenko
  • Language: English

Calculation Methods in Nuclear Physics: Nuclear and Thermonuclear Processes addresses the critical need for advanced computational tools and mathematical models in nuclear physic… Read more

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Description

Calculation Methods in Nuclear Physics: Nuclear and Thermonuclear Processes addresses the critical need for advanced computational tools and mathematical models in nuclear physics research. The book focuses on solving Schrödinger equations for various nuclear systems, including scattering states and bound states using numerical and variational techniques. It covers both real and complex potentials, with detailed algorithms and source code examples primarily in Fortran 90 and Turbo Basic, thus enabling researchers and students to implement these methods in their own work. Chapters are organized systematically, covering topics such as scattering phase shifts, bound state characteristics, and cross-section analyses for nuclear scattering and photonuclear processes.

The structure emphasizes practical, step-by-step procedures and computational algorithms, making it suitable for both theoretical development and implementation. The content systematically explores the Schrödinger equation, tensor potentials, phase shift analysis, and reaction cross sections, providing a comprehensive toolkit for nuclear reaction modeling. By offering detailed algorithms and models, the book enhances researchers’ ability to perform precise nuclear data analysis and modeling, supporting ongoing advancements in nuclear science.

Key features

  • Integrates physical models, mathematical methods, and computational algorithms in nuclear physics at low and superlow energies
  • Provides step-by-step numerical and variational methods with source code examples
  • Offers algorithms and real programs in Fortran 90 and Turbo Basic for practical implementation
  • Considers solutions of Schrödinger equations for nuclear systems with central and tensor potentials
  • Includes a detailed treatment of scattering processes and bound states

Readership

Nuclear physicists and computational scientists

Table of contents

1. Schrödinger Equation with the Central Potentials in the Continuous Spectrum

2. The System of the Schrödinger Equations for the Potentials with a Tensor Component in the Continuous Spectrum

3. Schrödinger Equation with the Central Potentials in the Discrete Spectrum

4. The System of the Schrödinger Equations for the Potentials with a Tensor Component in the Discrete Spectrum

5. Cross Sections of the Nuclear Scattering

6. Phase Shift Analysis

7. Cross Sections of the Photonuclear Processes

Product details

  • Edition: 1
  • Latest edition
  • Published: May 1, 2026
  • Language: English

About the author

SD

Sergey Dubovichenko

Prof, Dr. Sergey B. Dubovichenko is a physicist at the META University, Almaty, Kazakhstan. He specializes in nuclear and thermonuclear processes, focusing on calculation methods for nuclear reactions, scattering, and bound states. His work combines physical models, mathematical techniques, and computational algorithms, primarily using Fortran and Basic. Dubovichenko has authored over 150 scientific publications and is actively involved in research related to nuclear physics and astrophysics.
Affiliations and expertise
Physicist, Nuclear Astrophysics laboratory head at META University, Almaty, Kazakhstan