%0 Journal Article %T Half-quantum vortex state in a spin-orbit coupled Bose-Einstein condensate %A B. Ramachandhran %A Bogdan Opanchuk %A Xia-Ji Liu %A Han Pu %A Peter D. Drummond %A Hui Hu %J Physics %D 2012 %I arXiv %R 10.1103/PhysRevA.85.023606 %X We investigate theoretically the condensate state and collective excitations of a two-component Bose gas in two-dimensional harmonic traps subject to isotropic Rashba spin-orbit coupling. In the weakly interacting regime when the inter-species interaction is larger than the intra-species interaction ($g_{\uparrow\downarrow}>g$), we find that the condensate ground state has a half-quantum-angular-momentum vortex configuration with spatial rotational symmetry and skyrmion-type spin texture. Upon increasing the interatomic interaction beyond a threshold $g_{c}$, the ground state starts to involve higher-order angular momentum components and thus breaks the rotational symmetry. In the case of $g_{\uparrow\downarrow}g_{c}$ and $g_{\uparrow\downarrow}