Pages that link to "Item:Q4588755"
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The following pages link to A Two-Parameter Continuation Method for Rotating Two-Component Bose-Einstein Condensates in Optical Lattices (Q4588755):
Displaying 28 items.
- Projection gradient method for energy functional minimization with a constraint and its application to computing the ground state of spin-orbit-coupled Bose-Einstein condensates (Q339259) (← links)
- A two-parameter continuation algorithm using radial basis function collocation method for rotating Bose-Einstein condensates (Q348005) (← links)
- A two-parameter continuation method for computing numerical solutions of spin-1 Bose-Einstein condensates (Q348313) (← links)
- Spectral collocation and a two-level continuation scheme for dipolar Bose-Einstein condensates (Q348391) (← links)
- Robust and efficient preconditioned Krylov spectral solvers for computing the ground states of fast rotating and strongly interacting Bose-Einstein condensates (Q348611) (← links)
- An efficient spectral method for computing dynamics of rotating two-component Bose-Einstein condensates via coordinate transformation (Q348615) (← links)
- Spectral collocation methods using sine functions for a rotating Bose-Einstein condensation in optical lattices (Q422976) (← links)
- A two-parameter continuation algorithm for vortex pinning in rotating Bose-Einstein condensates (Q483838) (← links)
- Two-stage continuation algorithms for Bloch waves of Bose-Einstein condensates in optical lattices (Q548979) (← links)
- Exploring bistability in rotating Bose-Einstein condensates by a quotient transformation invariant continuation method (Q617536) (← links)
- Numerical simulations on stationary states for rotating two-component Bose-Einstein condensates (Q618434) (← links)
- A spectral-Galerkin continuation method using Chebyshev polynomials for the numerical solutions of the Gross-Pitaevskii equation (Q629551) (← links)
- Exploring ground states and excited states of spin-1 Bose-Einstein condensates by continuation methods (Q630471) (← links)
- Adaptive continuation algorithms for computing energy levels of rotating Bose-Einstein condensates (Q710136) (← links)
- Efficient spectral computation of the stationary states of rotating Bose-Einstein condensates by preconditioned nonlinear conjugate gradient methods (Q1693435) (← links)
- Acceleration of the imaginary time method for spectrally computing the stationary states of Gross-Pitaevskii equations (Q1739125) (← links)
- A spectral collocation method for a rotating Bose-Einstein condensation in optical lattices (Q1943141) (← links)
- Continuation and preconditioned imaginary time evolution methods for boson-fermion mixtures (Q2195905) (← links)
- Stability analysis and continuation for the coupled Gross-Pitaevskii equations (Q2203155) (← links)
- Continuation and stability analysis for Bloch waves of the Gross-Pitaevskii equation (Q2413275) (← links)
- A continuation BSOR-Lanczos--Galerkin method for positive bound states of a multi-component Bose-Einstein condensate (Q2568062) (← links)
- Second-order flows for computing the ground states of rotating Bose-Einstein condensates (Q2683094) (← links)
- Efficient spectral collocation and continuation methods for symmetry-breaking solutions of rotating Bose–Einstein condensates (Q2852124) (← links)
- An efficient split-step compact finite difference method for the coupled Gross–Pitaevskii equations (Q5031753) (← links)
- Multi-parameter continuation and collocation methods for rotating multi-component Bose–Einstein condensates (Q5259079) (← links)
- BEC2HPC: a HPC spectral solver for nonlinear Schrödinger and rotating Gross-Pitaevskii equations. Stationary states computation (Q6156389) (← links)
- A new preconditioned nonlinear conjugate gradient method in real arithmetic for computing the ground states of rotational Bose-Einstein condensate (Q6551214) (← links)
- A preconditioned Riemannian conjugate gradient method for computing the ground states of arbitrary-angle rotating Bose-Einstein condensates (Q6560711) (← links)