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190209s2019 xx o 000 0 eng d |
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|a UAMI
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|a Spexia, Stefano.
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|a Femtosecond Physics :
|b Laser-Matter Interaction Theory.
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|a Ashland :
|b Arcler Press,
|c 2019.
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|a 1 online resource (318 pages)
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|a text
|b txt
|2 rdacontent
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|a computer
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|a Print version record.
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|a Cover; Half Title Page; Title Page; Copyright Page; Declaration; About the Editor; Table of Contents; List of Contributors; List of Abbreviations; Preface; SECTION I TIME-DEPENDENT SCHRÖDINGER EQUATION; Chapter 1 Reduction of Time-Dependent Schrödinger Equations with Effective Mass to Stationary Schrödinger Equations; Abstract; Introduction; Reduction Of The Effective Mass TDSE; Concluding Remarks; References; Chapter 2 A Time-Dependent Anharmonic Oscillator; Abstract; Introduction; Time-Dependent Supersymmetry Transformation; A Time-Dependent Anharmonic Oscillator; References
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|a Chapter 3 Effective Potential From The Generalized Time-Dependent Schrödinger EquationAbstract; Introduction; Generalized Schrödinger Equation; Effective Potential; Summary; Acknowledgments; Author Contributions; Appendix A. Mittag-Leffler Functions; References; Chapter 4 Simple, Accurate, and Efficient Implementation of 1-Electron Atomic Time-Dependent Schrödinger Equation In Spherical Coordinates; Abstract; Introduction; Theory; Tests And Numerical Examples; Conclusions; Acknowledgements; References
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|a Chapter 5 Solving The Time-Dependent Few-Body Schrödinger Equation Within A Basis Expansion MethodAbstract; Introduction; Method; Results; Summary; Acknowledgements; References; SECTION II FIELD-MATTER INTERACTION IN QUANTUM TWO-LEVEL SYSTEMS; Chapter 6 Exact Broadband Excitation Of Two-Level Systems by Mapping Spins to Springs; Abstract; Introduction; Results; Methods; Acknowledgements; Contributions; Supplementary Information; References; Chapter 7 Pulsed Rabi Oscillations In Quantum Two-Level Systems: Beyond The Area Theorem; Abstract; Introduction; A Theory For Photon Counting
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|a Breakdown With Increasing Pulse LengthBreakdown For Even . Areas; Comparison To Realistic Rabi Oscillations; Outlook; Acknowledgments; Appendix A.: Photon Counting With The Stochastic Schrödinger Equation; Appendix B.: Second-Order Coherence When Driven By A Long Pulse; Appendix C.: Pulse-Length Photocount Distribution For 2-II Area Pulses; Appendix D.: Three-Photon Emission Probability Density; References; Chapter 8 Evolution of A Two-Level Quantum Particle In The Noise Classical E.-M. Field Within And Beyond The Resonant Approximation; Abstract; Introduction
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|a Interaction Of A Random Field With A Two-Level Quantum Particle In The Rotating Wave ApproximationAcknowledgments; References; Chapter 9 Free-Space Quantum Electrodynamics With a Single Rydberg Superatom; Abstract; Acknowledgements; Appendices; References; SECTION III ATOMS AND MOLECULES IN STRONG LASER FIELDS; Chapter 10 Kinematic Origin For Near-Zero Energy Structures In Mid-Ir Strong Field Ionization; Abstract; References; Chapter 11 Single and Double Ionization of Atoms and Small Molecules by Short-Pulse Intense Laser Fields; Abstract; Introduction; Numerical Methods; Example Results
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|a Conclusions And Outlook
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|a eBooks on EBSCOhost
|b EBSCO eBook Subscription Academic Collection - Worldwide
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650 |
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|a Femtosecond lasers.
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|a Physics.
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|a Lasers femtosecondes.
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|a Physique.
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|a physics.
|2 aat
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|a Femtosecond lasers
|2 fast
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|a Physics
|2 fast
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|i Print version:
|a Spexia, Stefano.
|t Femtosecond Physics : Laser-Matter Interaction Theory.
|d Ashland : Arcler Press, ©2019
|
856 |
4 |
0 |
|u https://ebsco.uam.elogim.com/login.aspx?direct=true&scope=site&db=nlebk&AN=2013941
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|a ProQuest Ebook Central
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|b EBSC
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