Three-body recombination in ultracold systems: predication of weakly-bound atomic trimer energies (2003)
- Authors:
- Autor USP: GAMMAL, ARNALDO - IF
- Unidade: IF
- Assunto: MATÉRIA CONDENSADA
- Language: Inglês
- Imprenta:
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ABNT
TOMIO, Lauro et al. Three-body recombination in ultracold systems: predication of weakly-bound atomic trimer energies. . São Paulo: IFUSP. Disponível em: http://xxx.if.usp.br/PS_cache/cond-mat/pdf/0310/0310362.pdf. Acesso em: 19 set. 2024. , 2003 -
APA
Tomio, L., S Filho, V., Yamashita, M. T., Gammal, A., & Frederico, T. (2003). Three-body recombination in ultracold systems: predication of weakly-bound atomic trimer energies. São Paulo: IFUSP. Recuperado de http://xxx.if.usp.br/PS_cache/cond-mat/pdf/0310/0310362.pdf -
NLM
Tomio L, S Filho V, Yamashita MT, Gammal A, Frederico T. Three-body recombination in ultracold systems: predication of weakly-bound atomic trimer energies [Internet]. 2003 ;[citado 2024 set. 19 ] Available from: http://xxx.if.usp.br/PS_cache/cond-mat/pdf/0310/0310362.pdf -
Vancouver
Tomio L, S Filho V, Yamashita MT, Gammal A, Frederico T. Three-body recombination in ultracold systems: predication of weakly-bound atomic trimer energies [Internet]. 2003 ;[citado 2024 set. 19 ] Available from: http://xxx.if.usp.br/PS_cache/cond-mat/pdf/0310/0310362.pdf - Dynamics of bright matter-wave solitons in inhomogeneous cigar-type Bose-Einstein condensate
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- Effect of anharmonicities in the critical number of trapped condensed atoms with an attractive two-body interaction
- Formation of soliton trains in Bose-Einstein condensates as a nonlinear Fresnel diffraction of matter waves
- Generation of oblique dark solitons in supersonic flow of Bose-Einstein condensate past an obstacle
- Parameter scaling in a novel measure of quantum-classical difference for decohering chaotic systems
- Two-dimensional supersonic nonlinear Schrödinger flow past an extended obstacle
- Tunable spin-orbit coupled Bose-Einstein condensates in deep optical lattices
- Vortex lattices in binary Bose-Einstein condensates with dipole-dipole interactions
- Quantum landau damping in dipolar bose-einstein condensates
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