The non-local nonlinearity introduced by the dipole-dipole interaction plays a crucial role in the physics of dipolar Bose-Einstein condensates. In particular, it may distort significantly the stability of straight vortex lines due to the rotonization of the Kelvin-wave spectrum. In the present paper, we analyze this instability, showing that it leads to a second-order-like phase transition from a straight vortex line into novel helical or snake-like configurations, depending on the dipole orientation.DFG/SFB/407DFG/SPP/1116ESF/EUROQUASA
Bose-Einstein condensation is a phase transition which atoms undergo when cooled near absolute zero ...
We study the properties of singly quantized linear vortices in the supersolid phase of a dipolar Bos...
Quantized vortices are a prototypical feature of superfluidity that have been observed in multiple q...
We perform a theoretical study into how dipole-dipole interactions modify the properties of superflu...
Cataloged from PDF version of article.We consider a rapidly rotating two-component Bose-Einstein con...
We analyze the hydrodynamic solutions for a dilute Bose-Einstein condensate with long-range dipolar ...
We present a theoretical analysis of dilute gas Bose-Einstein condensates with dipolar atomic intera...
Bose-Einstein Condensates (BECs) are realized with dilute gases in trapped geometries and are compos...
We calculate the critical rotation frequency at which a vortex state becomes energetically favorable...
We theoretically consider the properties of a dipolar Bose-Einstein condensate with a vortex. Our th...
We study the interplay of dipole-dipole interaction and optical lattice (OL) potential of ...
Quantized vortices are the hallmark of superfluidity, and are often sought out as the first observab...
Based on the two-dimensional mean-field equations for pancake-shaped dipolar Bose-Einstein condensat...
This thesis manuscript presents experimental results on Bose-Einstein condensates in optical lattice...
We demonstrate how dipolar interactions can have pronounced effects on the structure of vortices in ...
Bose-Einstein condensation is a phase transition which atoms undergo when cooled near absolute zero ...
We study the properties of singly quantized linear vortices in the supersolid phase of a dipolar Bos...
Quantized vortices are a prototypical feature of superfluidity that have been observed in multiple q...
We perform a theoretical study into how dipole-dipole interactions modify the properties of superflu...
Cataloged from PDF version of article.We consider a rapidly rotating two-component Bose-Einstein con...
We analyze the hydrodynamic solutions for a dilute Bose-Einstein condensate with long-range dipolar ...
We present a theoretical analysis of dilute gas Bose-Einstein condensates with dipolar atomic intera...
Bose-Einstein Condensates (BECs) are realized with dilute gases in trapped geometries and are compos...
We calculate the critical rotation frequency at which a vortex state becomes energetically favorable...
We theoretically consider the properties of a dipolar Bose-Einstein condensate with a vortex. Our th...
We study the interplay of dipole-dipole interaction and optical lattice (OL) potential of ...
Quantized vortices are the hallmark of superfluidity, and are often sought out as the first observab...
Based on the two-dimensional mean-field equations for pancake-shaped dipolar Bose-Einstein condensat...
This thesis manuscript presents experimental results on Bose-Einstein condensates in optical lattice...
We demonstrate how dipolar interactions can have pronounced effects on the structure of vortices in ...
Bose-Einstein condensation is a phase transition which atoms undergo when cooled near absolute zero ...
We study the properties of singly quantized linear vortices in the supersolid phase of a dipolar Bos...
Quantized vortices are a prototypical feature of superfluidity that have been observed in multiple q...