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Quantum mechanics in potential repre...
~
Janavičius, Arvydas Juozapas, (1939-)
Quantum mechanics in potential representation and applications
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Quantum mechanics in potential representation and applications/ Arvydas Juozapas Janavičius, Donatas Jurgaitis.
作者:
Janavičius, Arvydas Juozapas,
其他作者:
Jurgaitis, Donatas.
出版者:
Singapore :World Scientific, : c2021.,
面頁冊數:
1 online resource (xix, 249 p.)
標題:
Mathematical physics. -
電子資源:
https://www.worldscientific.com/worldscibooks/10.1142/11724#t=toc
ISBN:
9789811216664
Quantum mechanics in potential representation and applications
Janavičius, Arvydas Juozapas,1939-
Quantum mechanics in potential representation and applications
[electronic resource] /Arvydas Juozapas Janavičius, Donatas Jurgaitis. - 1st ed. - Singapore :World Scientific,c2021. - 1 online resource (xix, 249 p.)
Includes bibliographical references and index.
"This book is written with a focus on new mathematical methods and physical modeling that lay the groundwork for an interpretation to various experimental results and phenomena in nuclear physics, quantum mechanics, and particle physics. Summarized in three parts, the main topics of the book are as follows. The first part importantly addresses scattering theory and nuclear reactions, with the usage of new potential representation method. This perturbation method offers the wave function as a product of the free particle solution and a function which depends on the interaction potential, allowing handy analytical expressions and integral equations for finding scattering matrices. It is highly applicable to the study of scattering and absorption of neutrons in atomic reactors, as well as the interactions between protons and nuclei by scattering processes in, for example, cyclotrons. The second part of the book concerns the perturbation method by variation of free constants and the semi-relativistic shell model of heavy nuclei in order to understand their stability. The last part is then furnished with the semi-relativistic model of mesons and relates to the binding energies of quarks in charm and bottom mesons. This book would be a valuable resource for students and researchers on new mathematical methods in the theoretical unravelling of experiments concerning nuclei and mesons, nuclear reactors, radioactive isotopes, particle accelerators, new materials in electronics and healthcare products, as well as other practical applications of nuclear physics and quantum mechanics"--Publisher's website.
Mode of access: World Wide Web.
ISBN: 9789811216664Subjects--Topical Terms:
527831
Mathematical physics.
LC Class. No.: QC174.12 / .J36 2021
Dewey Class. No.: 530.12
Quantum mechanics in potential representation and applications
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"This book is written with a focus on new mathematical methods and physical modeling that lay the groundwork for an interpretation to various experimental results and phenomena in nuclear physics, quantum mechanics, and particle physics. Summarized in three parts, the main topics of the book are as follows. The first part importantly addresses scattering theory and nuclear reactions, with the usage of new potential representation method. This perturbation method offers the wave function as a product of the free particle solution and a function which depends on the interaction potential, allowing handy analytical expressions and integral equations for finding scattering matrices. It is highly applicable to the study of scattering and absorption of neutrons in atomic reactors, as well as the interactions between protons and nuclei by scattering processes in, for example, cyclotrons. The second part of the book concerns the perturbation method by variation of free constants and the semi-relativistic shell model of heavy nuclei in order to understand their stability. The last part is then furnished with the semi-relativistic model of mesons and relates to the binding energies of quarks in charm and bottom mesons. This book would be a valuable resource for students and researchers on new mathematical methods in the theoretical unravelling of experiments concerning nuclei and mesons, nuclear reactors, radioactive isotopes, particle accelerators, new materials in electronics and healthcare products, as well as other practical applications of nuclear physics and quantum mechanics"--Publisher's website.
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https://www.worldscientific.com/worldscibooks/10.1142/11724#t=toc
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