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11 papers · 1 filter
Low-energy resonances and bound states of aligned bosonic and fermionic dipoles
K. Kanjilal, D. Blume
The low-energy scattering properties of two aligned identical bosonic and identical fermionic dipoles are analyzed. Generalized scattering lengths are determined as functions of th…
The Trapped Polarized Fermi Gas at Unitarity
D. Blume
We consider population-imbalanced two-component Fermi gases under external harmonic confinement interacting through short-range two-body potentials with diverging s-wave scattering…
Small mass- and trap-imbalanced two-component Fermi systems
D. Blume
Motivated by the prospect of optical lattice experiments with two-component Fermi gases consisting of different atomic species such as Li and K, we calculate the energies for N fer…
Formation of Quantum Shock Waves by Merging and Splitting Bose-Einstein Condensates
J. J. Chang, P. Engels, M. A. Hoefer
The processes of merging and splitting dilute-gas Bose-Einstein condensates are studied in the nonadiabatic, high-density regime. Rich dynamics are found. Depending on the experime…
Stability of Inhomogeneous Multi-Component Fermi Gases
D. Blume, Seth T. Rittenhouse, J. von Stecher +1
Two-component equal-mass Fermi gases, in which unlike atoms interact through a short-range two-body potential and like atoms do not interact, are stable even when the interspecies…
Energetics and Structural Properties of Trapped Two-Component Fermi Gases
J. von Stecher, Chris H. Greene, D. Blume
Using two different numerical methods, we study the behavior of two-component Fermi gases interacting through short-range s-wave interactions in a harmonic trap. A correlated Gauss…