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Inhaltsangabe
N-body quantum systems: A tutorial.- A tutorial on computational approaches to quantum scattering.- Time-independent wavepacket quantum mechanics.- Classical action and quantum N-body asymptotic completeness.- On trace formulas for Schrödinger-type operators.- Multiparticle quantum systems in constant magnetic fields.- New channels of scattering for two-and three-body quantum systems with long-range potentials.- State-of-state transition probabilities and control of laser-induced dynamical processes by the (t, t?) Method.- Barrier resonances and chemical reactivity.- Quantization in the continuum - complex dilated expansions of scattering quantities.- Microscopic atomic and nuclear mean fields.- The Pauli principle in multi-cluster states of nuclei.- Nonperturbative approaches to atomic and molecular multiphoton (half-collision) processes in intense laser fields.- Global recursion polynomial expansions of the Green's function and time evolution operator for the Schrödinger equation with absorbing boundary conditions.
N-body quantum systems: A tutorial.- A tutorial on computational approaches to quantum scattering.- Time-independent wavepacket quantum mechanics.- Classical action and quantum N-body asymptotic completeness.- On trace formulas for Schrödinger-type operators.- Multiparticle quantum systems in constant magnetic fields.- New channels of scattering for two-and three-body quantum systems with long-range potentials.- State-of-state transition probabilities and control of laser-induced dynamical processes by the (t, t?) Method.- Barrier resonances and chemical reactivity.- Quantization in the continuum - complex dilated expansions of scattering quantities.- Microscopic atomic and nuclear mean fields.- The Pauli principle in multi-cluster states of nuclei.- Nonperturbative approaches to atomic and molecular multiphoton (half-collision) processes in intense laser fields.- Global recursion polynomial expansions of the Green's function and time evolution operator for the Schrödinger equation with absorbing boundary conditions.
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