We show that metastable phases of an antiferromagnetic spin-1 condensate in a simple model with pure contact interactions can exhibit a rotonlike minimum in the excitation spectrum. The introduction of a magnetic field gives rise to the instability of roton modes, which can lead to spontaneous emergence of regular periodic, polygonal, polyhedral, or crystalline patterns, as shown in numerical simulations within the truncated Wigner approximation. An explanation of the occurrence of rotonlike instability is given based on the energy and spin conservation laws
We observe signatures of radial and angular roton excitations around a droplet crystallization trans...
Antiferromagnetic condensates are generally believed not to display modulational instability and sub...
145 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2002.We study several problems in ...
We investigate the superfluid phases of a Rashba spin-orbit-coupled Bose-Einstein condensate residin...
We point out the possibility of having a roton-type excitation spectrum in a quasi-1D Bose-Einstein ...
We present the phase diagram, the underlying stability and magnetic properties as well as the dynami...
We analyze the structure of spin-one Bose-Einstein condensates in the presence of a homogeneous magn...
We study spin-polarized states and their stability in the antiferromagnetic phase of spinor (F=1) qu...
Superfluids with a tendency towards periodic order have both phonon- and rotonlike spectra. We show ...
Although crystallization is a ubiquitous phenomenon in nature, crystal formation and melting still r...
Since the first experiment realization of Bose-Einstein condensation in 1995, numerous theoretical a...
We study, theoretically and numerically, the onset and development of modulational instability in an...
We model the nonlinear behavior of spin-1 Bose-Einstein condensates (BECs) with repulsive spin-indep...
We analyze the spinor dynamics of a (87)Rb F=2 condensate initially prepared in the m(F)=0 Zeeman su...
We first analytically examine the occurrence of modulational instability in all phases of F=2 spinor...
We observe signatures of radial and angular roton excitations around a droplet crystallization trans...
Antiferromagnetic condensates are generally believed not to display modulational instability and sub...
145 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2002.We study several problems in ...
We investigate the superfluid phases of a Rashba spin-orbit-coupled Bose-Einstein condensate residin...
We point out the possibility of having a roton-type excitation spectrum in a quasi-1D Bose-Einstein ...
We present the phase diagram, the underlying stability and magnetic properties as well as the dynami...
We analyze the structure of spin-one Bose-Einstein condensates in the presence of a homogeneous magn...
We study spin-polarized states and their stability in the antiferromagnetic phase of spinor (F=1) qu...
Superfluids with a tendency towards periodic order have both phonon- and rotonlike spectra. We show ...
Although crystallization is a ubiquitous phenomenon in nature, crystal formation and melting still r...
Since the first experiment realization of Bose-Einstein condensation in 1995, numerous theoretical a...
We study, theoretically and numerically, the onset and development of modulational instability in an...
We model the nonlinear behavior of spin-1 Bose-Einstein condensates (BECs) with repulsive spin-indep...
We analyze the spinor dynamics of a (87)Rb F=2 condensate initially prepared in the m(F)=0 Zeeman su...
We first analytically examine the occurrence of modulational instability in all phases of F=2 spinor...
We observe signatures of radial and angular roton excitations around a droplet crystallization trans...
Antiferromagnetic condensates are generally believed not to display modulational instability and sub...
145 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2002.We study several problems in ...