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Titlebook: Quantum Collisions and Confinement of Atomic and Molecular Species, and Photons; Select Proceedings o P. C. Deshmukh,E. Krishnakumar,Sonjoy

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Quantum Dynamics and Frequency Shift of a Periodically Driven Multi-photon Anharmonic Oscillator, are framed. By neglecting the nonsynchronous energy terms, we derive the model of a driven multi-photon (2m–th) quantum anharmonic oscillator. The dynamical nature of the field operators is expressed in terms of the coupling constant, excitation number and the driven parameter. The solutions presen
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,Long Time Evolution of a Bose–Einstein Condensate Under Toroidal Trap,p experiences self interference between the counter-propagating constituent parts of the condensate. Condensate density nicely manifests fractional revivals in long time evolution, where the original condensate splits into several subsidiary components at times, rational fractions of the revival tim
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Intriguing Single Photon Induced Processes in Helium Nanodroplets,ey have been predominantly viewed as a spectroscopic matrix hosting other molecules and systems of interest. In this report, we draw particular attention to select electronic processes in He aggregates hosting other atoms, in particular, Rb. From this perspective, we present the details of single- a
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,Two Component Bose–Einstein Condensate in a Pöschl–Teller Potential,ntial. We start with the dimensionless 1D BEC of a weakly interacting ultra-cold atomic gas with cubic nonlinearity, under the influence of one-dimensional Pöschl–Teller potential. Our main goal is to provide an exact analytical solution of the two-component Gross–Pitäevskii equation which is the mo
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Electron Transport Modeling in Biological Tissues: From Water to DNA,more so when new and better methods for treating cancer through the use of ionizing radiation are emerging on the horizon such as targeted alpha therapy. In this context, Monte Carlo track-structure codes are extremely useful tools to study radiation-induced effects at the atomic scale. In the prese
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Single-Photon Decay Processes in Atomic Systems with Empty K Shell,rons present. In the first case, an empty K shell with an otherwise normal atomic configuration (hollow atom) is considered and the decay properties of the two possible modes of radiative decay of empty K shell resulting in one-electron one-photon (OEOP) or two-electron one-photon (TEOP) processes a
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