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5 papers · 2 filters
Entanglement control in coupled two-mode boson systems
A. V. Chizhov, R. G. Nazmitdinov
A two-mode boson model, widely used for the physics of fast rotating nuclei and Bose-Einstein condensates, is studied in the context of entanglement control. We derive an analytica…
Vibrational spectroscopy of H2+: precise evaluation of the Zeeman effect
Jean-Philippe Karr, Vladimir Korobov, Laurent Hilico
We present an accurate computation of the g-factors of the hyperfine states of the hydrogen molecular ion H2+. The results are in good agreement with previous experiments, and can…
Vibrational spectroscopy of H2+: hyperfine structure of two-photon transitions
Jean-Philippe Karr, Franck Bielsa, Albane Douillet +3
We present the computation of two-photon transition spectra between ro-vibrational states of the H2+ molecular ion, including the effects of hyperfine structure and excitation pola…
Generation of nonground-state Bose-Einstein condensates by modulating atomic interactions
E. R. F. Ramos, E. A. L. Henn, J. A. Seman +5
A technique is proposed for creating nonground-state Bose-Einstein condensates in a trapping potential by means of the temporal modulation of atomic interactions. Applying a time-d…
Moving system with speeded-up evolution
M. I. Shirokov
In the classical (non-quantum) relativity theory the course of the moving clock is dilated as compared to the course of the clock at rest (the Einstein dilation). Any unstable syst…