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Theory of Multiphoton Processes (1987)

Theory of Multiphoton Processes

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"Theory of Multiphoton Processes" by Farhad H.M. Faisal is a mathematics book and learning resource focused on Cosmology. Best for teachers, students, and readers looking for stronger mathematical understanding.

My aim in this book has been to give an account of the theoretical methods of analysis of multiphoton processes in atomic physics. In this account I have emphasized systematic methods as opposed to ad hoc approaches. Both perturbative and nonperturbative methods are presented with il­ lustrative results of concrete applications. The perturbation theory is the primary tool of analysis of nonresonant multiphoton processes. It is developed here in conjunction with a diagrammatic language and is also renormalized to free it from the unwanted divergences which accompany the ordinary treatment when higher-order corrections are considered. The nonperturbative methods (i.e., methods other than that of power series ex­ pansion in the field strength) become particularly important for consistent treatments of problems involving, for example, intermediate resonances, high field strengths, and finite pulse duration. The specifically nonpertur­ bative methods for multiphoton transitions are presented in Chapters 6-11. The methods of resolvent equations and of effective Hamiltonians are developed for both the stationary and the time-dependent fields. The densi­ ty matrix method is presented in conjunction with the problems of relaxa­ tion and of fluctuating fields. The Floquet theory is presented both in the energy domain and in the time domain. Also treated are the methods of continued fractions, recursive iterative equations, and chain Hamiltonians.

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Best For: Advanced physics students and researchers focusing on atomic physics and multiphoton interactions.
Focus: Theoretical methods for analyzing multiphoton processes using both perturbative and nonperturbative approaches.
Covers: Systematic theoretical frameworks and illustrative applications in atomic physics multiphoton processes.
Why It Matters: Provides a structured and methodical approach to understanding multiphoton phenomena, supporting deeper analysis beyond ad hoc methods.

"Theory of Multiphoton Processes" by Farhad H.M. Faisal is a mathematics book and learning resource focused on Cosmology. Best for teachers, students, and readers looking for stronger mathematical understanding.

Topic: Cosmology

Author: Farhad H.M. Faisal

Who this is for:

  • Teachers and classroom instructors
  • Students building subject mastery
  • Readers looking for practical learning support

Why this book matters: It stands out as a practical math resource that helps explain concepts, strengthen problem-solving, and support classroom or independent learning.

My aim in this book has been to give an account of the theoretical methods of analysis of multiphoton processes in atomic physics. In this account I have emphasized systematic methods as opposed to ad hoc approaches. Both perturbative and nonperturbative methods are presented with il­ lustrative results of concrete applications. The perturbation theory is the primary tool of analysis of nonresonant multiphoton processes. It is developed here in conjunction with a diagrammatic language and is also renormalized to free it from the unwanted divergences which accompany the ordinary treatment when higher-order corrections are considered. The nonperturbative methods (i.e., methods other than that of power series ex­ pansion in the field strength) become particularly important for consistent treatments of problems involving, for example, intermediate resonances, high field strengths, and finite pulse duration. The specifically nonpertur­ bative methods for multiphoton transitions are presented in Chapters 6-11. The methods of resolvent equations and of effective Hamiltonians are developed for both the stationary and the time-dependent fields. The densi­ ty matrix method is presented in conjunction with the problems of relaxa­ tion and of fluctuating fields. The Floquet theory is presented both in the energy domain and in the time domain. Also treated are the methods of continued fractions, recursive iterative equations, and chain Hamiltonians.

AuthorFarhad H.M. Faisal
PublisherSpringer Science & Business Media
Published1987-05-31
ISBN-139780306423178
BindingHardcover
Pages438
LanguageEnglish
SubjectsScience
TopicCosmology
SeriesPhysics of Atoms and Molecules

Format: Hardcover

Length: 438 pages

Language: English

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