Pages that link to "Item:Q4595778"
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The following pages link to Computation of Ground States of the Gross--Pitaevskii Functional via Riemannian Optimization (Q4595778):
Displaying 37 items.
- The \(J\)-method for the Gross-Pitaevskii eigenvalue problem (Q2049914) (← links)
- Newton-based methods for finding the positive ground state of Gross-Pitaevskii equations (Q2063172) (← links)
- Computing the least action ground state of the nonlinear Schrödinger equation by a normalized gradient flow (Q2088392) (← links)
- Efficient and accurate gradient flow methods for computing ground states of spinor Bose-Einstein condensates (Q2120766) (← links)
- Gradient flow finite element discretizations with energy-based adaptivity for the Gross-Pitaevskii equation (Q2131058) (← links)
- Numerical simulations on nonlinear quantum graphs with the GraFiDi library (Q2137888) (← links)
- Efficient time integration methods for Gross-Pitaevskii equations with rotation term (Q2297886) (← links)
- A normalized gradient flow method with attractive-repulsive splitting for computing ground states of Bose-Einstein condensates with higher-order interaction (Q2424519) (← links)
- Second-order flows for computing the ground states of rotating Bose-Einstein condensates (Q2683094) (← links)
- GSGPEs-v1.1: a Matlab code for computing the ground state of systems of Gross-Pitaevskii equations (Q2698814) (← links)
- On the characterization of vortex configurations in the steady rotating Bose–Einstein condensates (Q4646908) (← links)
- Newton--Noda Iteration for Computing the Ground States of Nonlinear Schrödinger Equations (Q5097598) (← links)
- Sobolev Gradient Flow for the Gross--Pitaevskii Eigenvalue Problem: Global Convergence and Computational Efficiency (Q5113129) (← links)
- Ground States of Spin-$F$ Bose--Einstein Condensates (Q5132026) (← links)
- Review Article: Mathematical Models and Numerical Methods for Spinor Bose-Einstein Condensates (Q5160498) (← links)
- A Preconditioned Conjugated Gradient Method for Computing Ground States of Rotating Dipolar Bose-Einstein Condensates via Kernel Truncation Method for Dipole-Dipole Interaction Evaluation (Q5160499) (← links)
- Computing Ground States of Bose--Einstein Condensates with Higher Order Interaction via a Regularized Density Function Formulation (Q5204005) (← links)
- Normalized Gradient Flow with Lagrange Multiplier for Computing Ground States of Bose--Einstein Condensates (Q5857617) (← links)
- Convergence Analysis of Direct Minimization and Self-Consistent Iterations (Q5857844) (← links)
- Computing the Action Ground State for the Rotating Nonlinear Schrödinger Equation (Q6039257) (← links)
- Systematic search for singularities in 3D Euler flows (Q6057192) (← links)
- An efficient adaptive mesh redistribution method for nonlinear eigenvalue problems in Bose-Einstein condensates (Q6101877) (← links)
- On the Convergence of Sobolev Gradient Flow for the Gross–Pitaevskii Eigenvalue Problem (Q6117398) (← links)
- The dependency of spectral gaps on the convergence of the inverse iteration for a nonlinear eigenvector problem (Q6133476) (← links)
- On Optimal Convergence Rates for Discrete Minimizers of the Gross–Pitaevskii Energy in Localized Orthogonal Decomposition Spaces (Q6137175) (← links)
- Generalisation of splitting methods based on modified potentials to nonlinear evolution equations of parabolic and Schrödinger type (Q6137631) (← links)
- BEC2HPC: a HPC spectral solver for nonlinear Schrödinger and rotating Gross-Pitaevskii equations. Stationary states computation (Q6156389) (← links)
- Analysis of Schwarz Methods for Convected Helmholtz-Like Equations (Q6177442) (← links)
- Symmetric-conjugate splitting methods for evolution equations of parabolic type (Q6201392) (← links)
- Adaptation and assessement of projected Nesterov accelerated gradient flow to compute stationary states of nonlinear Schrödinger equations (Q6547142) (← links)
- A preconditioned Riemannian conjugate gradient method for computing the ground states of arbitrary-angle rotating Bose-Einstein condensates (Q6560711) (← links)
- A Riemannian dimension-reduced second-order method with application in sensor network localization (Q6562381) (← links)
- Riemannian Newton methods for energy minimization problems of Kohn-Sham type (Q6608077) (← links)
- On discrete ground states of rotating Bose-Einstein condensates (Q6622383) (← links)
- On the inviscid instability of the 2-D Taylor-Green vortex (Q6647825) (← links)
- Computing ground states of Bose-Einstein condensation by normalized deep neural network (Q6648395) (← links)
- A two level approach for simulating Bose-Einstein condensates by localized orthogonal decomposition (Q6667315) (← links)