182 results on '"Rzążewski, Kazimierz"'
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102. Constructing a classical field for a Bose-Einstein condensate in an arbitrary trapping potential: Quadrupole oscillations at nonzero temperatures
103. Background atoms and decoherence in optical lattices
104. Decoherence in the collision of two Bose-Einstein condensates
105. Bose statistics and classical fields
106. Coherence properties of spinor condensates at finite temperatures
107. Dynamics of a relative superflow between a Bose-Einstein condensate and the thermal cloud
108. Bright solitons in Bose-Fermi mixtures
109. Comment on “Instability and Entanglement of the Ground State of the Dicke Model”
110. Phase fluctuations of a Bose-Einstein condensate in low-dimensional geometry
111. Correlation functions of cold bosons in an optical lattice
112. Ground state of two-component degenerate fermionic gases
113. How should the dynamics of an interacting degenerate Bose gas be described?
114. Predictions from a two-color above-threshold ionization model
115. Finite interaction times and laser-bandwidth effects on the photoemission from an autoionizing atom
116. Atoms and Laser Light
117. On the thermodynamic equivalence of the Dicke maser model and a certain spin system
118. Second harmonic generation and statistical properties of light
119. Noise reduction in a Raman ring-laser driven by a chaotic pump
120. Single and Double Photoionization of Two-Electron Systems
121. Sequential vs. Simultaneous Ionization of Two-Electron Atoms by Intense Laser Radiation
122. Observation of Resonant Excess Photon Detachment Via a Window Resonance in the Negative Cesium Ion
123. Electron-Energy Resolved Experiments on Multiphoton Detachment from Negative Ions
124. Structure in the Above Threshold Ionization (ATI) Spectrum Under Strong Femtosecond Pulses
125. Strong Field Predictions for Negative Ions in Short Laser Pulses
126. Multiphoton Detachment of Hydrogen Negative Ion
127. Quasiclassical Approach to Ionization of Atoms by Strong Laser Pulses: Comparison with the 'Simpleman’s' Models and Newtonian Dynamics
128. H- in Intense Laser Fields: Laser — Induced Excited States and Dichotomy
129. Two-Electron Atoms in Ultra Short, Intense Pulses
130. Stabilization and Coherence in the Photodissociation of Diatomic Molecules by Intense Lasers
131. Molecules in Strong Laser Fields: Why are the Fragments Aligned?
132. Dynamics of Dissociation Versus Ionization in Strong Laser Fields
133. Ionization of Hydrogen Atoms by Circularly Polarized E-M Field
134. Ionization of H2 + in Intense Laser Fields
135. R-Matrix-Floquet Theory of Multiphoton Processes
136. Atomic Physics with Intense, Subpicosecond Half-Cycle Pulses
137. Stepwise Decay in the Photoionization of Rydberg Atoms
138. Stability of Hydrogen Atom in Rydberg States in a Laser Field
139. Population Trapping in Excited States
140. Dynamical Stabilization of Atoms at Current Laser Performances
141. Stabilization Within a Classical Context
142. Strong-Field Interference Stabilization in Atoms and Molecules
143. Atomic State Effects in Stabilization
144. Some recent developments in multiphoton ionization of atoms in intense fields
145. The Use of the Time Correlation Function in Floquet Theory
146. Stabilization of Excited States and Harmonic Generation: Recent Theoretical Results in the Sturmian-Floquet Approach
147. Ionization in Strong Fields
148. Multiphoton Ionization of Atomic Hydrogen in Intense Laser Pulses: The Role of Rydberg States
149. Dynamics of Short-Pulse Excitation, Ionization and Harmonic Conversion
150. Symmetry Breaking and the Control of Harmonics with Strong Short Laser Pulses
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