Introduction to Quantum Mechanics covers quantum mechanics from a time-dependent perspective in a unified way from beginning to end. Intended for upper-level undergraduate and graduate courses this text will change the way people think about and teach quantum mechanics in chemistry and physics departments.
Introduction to Quantum Mechanics covers quantum mechanics from a time-dependent perspective in a unified way from beginning to end. Intended for upper-level undergraduate and graduate courses this text will change the way people think about and teach quantum mechanics in chemistry and physics departments.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
David Tannor - Weizmann Institute of Science, USA.
Inhaltsangabe
PART I: PICTURES AND CONCEPTS. The Time Dependent Schrödinger Equation. The Free Particle Wave Packet. The Gaussian Wavepacket. Classical quantum Correspondence. The Wigner Representation. Correlation Functions and Spectra. One Dimensional Barrier Scattering. PART II: FORMAL THEORY AND METHODS OF APPROXIMATION. Linear Algebra and Quantum Mechanics. Approximate Solutions. Semiclassical Mechanics. Numerical Methods. PART III: APPLICATIONS. Introduction to Molecular Dynamics. Femtosecond Pulse Pair Excitation. One and Two Photon Electronic Spectroscopy. Strong Field Excitation. Design of Femtosecond Pulse Sequences to Control Reactions. Wavepacket Approach to Photodissociation. Wavepacket Approach to Reactive Scattering. Projects. Index.
PART I: PICTURES AND CONCEPTS. The Time Dependent Schrödinger Equation. The Free Particle Wave Packet. The Gaussian Wavepacket. Classical quantum Correspondence. The Wigner Representation. Correlation Functions and Spectra. One Dimensional Barrier Scattering. PART II: FORMAL THEORY AND METHODS OF APPROXIMATION. Linear Algebra and Quantum Mechanics. Approximate Solutions. Semiclassical Mechanics. Numerical Methods. PART III: APPLICATIONS. Introduction to Molecular Dynamics. Femtosecond Pulse Pair Excitation. One and Two Photon Electronic Spectroscopy. Strong Field Excitation. Design of Femtosecond Pulse Sequences to Control Reactions. Wavepacket Approach to Photodissociation. Wavepacket Approach to Reactive Scattering. Projects. Index.
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