most citedUltracold two-component Fermi gases with a magnetic field gradient near a Feshbach resonance

54 citations · 54 across the 8 of their papers we have counts for

collaborators

8 papers

cond-mat.other2005

Many-body effect in the interaction process between a Bose-Einstein condensate and another identical particle

Hongwei Xiong, Hongping Liu, Shujuan Liu +1

This paper has been withdrawn by the authors.

cond-mat.other2005

Interference effects between two initially independent Bose-condensed gases

Hongwei Xiong, Shujuan Liu

When two initially independent Bose-condensed gases are allowed to overlap, we investigate the density expectation value of the whole system by using the second quantization method…

cond-mat.other2005

Density expectation value of two independent interacting Bose-Einstein condensates

Hongwei Xiong, Shujuan Liu, Mingsheng Zhan

After removing the double-well potential trapping two initially independent Bose condensates, the density expectation value is calculated when both the exchange symmetry of identic…

cond-mat.stat-mech2004

Thermodynamic properties and phase transition of strongly interacting two-component Fermi gases

Hongwei Xiong, Shujuan Liu, Mingsheng Zhan

The thermodynamic properties of two-component Fermi gases with divergent scattering length is investigated and the transition temperature for the emergence of a stable dimeric gas…

cond-mat.stat-mech200454 cited

Ultracold two-component Fermi gases with a magnetic field gradient near a Feshbach resonance

Hongwei Xiong, Shujuan Liu, Weiping Zhang +1

We study theoretically the ultracold two-component Fermi gases when a gradient magnetic field is used to tune the scattering length between atoms. For Li6 at the narrow resonance B…

cond-mat.soft2004

Condensate fraction of molecules for a spin mixture of ultracold fermionic atoms

Hongwei Xiong, Shujuan Liu, Min Liu +2

The condensate fraction of molecules for ultracold Fermi gases is investigated for the magnetic field below the Feshbach resonant magnetic field. Assuming that there is no loss of…