Quantum droplets in BEC mixtures fragment to lower free energy, with 3D droplets splitting under strong interspecies interactions near the minimum atom number and 1D droplets fragmenting unless interactions are similar and density high, expelling atoms at higher temperatures while leaving persistent
Ultradilute Low-Dimensio nal Liquids
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cond-mat.quant-gas 2years
2026 2verdicts
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Elastic modulus B of 1D quantum droplets is derived via super-Gaussian variational ansatz, validated numerically, and shown to have intricate g- and N-dependence due to soliton-droplet crossover, unlike 3D power-law scaling.
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Fragmentation Temperature of 1D and 3D Quantum Droplets in a BEC Mixture
Quantum droplets in BEC mixtures fragment to lower free energy, with 3D droplets splitting under strong interspecies interactions near the minimum atom number and 1D droplets fragmenting unless interactions are similar and density high, expelling atoms at higher temperatures while leaving persistent
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Elastic Modulus in One-Dimensional Quantum Droplets
Elastic modulus B of 1D quantum droplets is derived via super-Gaussian variational ansatz, validated numerically, and shown to have intricate g- and N-dependence due to soliton-droplet crossover, unlike 3D power-law scaling.