An efficient method for tracing high-resolution invariant manifolds of three-dimensional flows (2016)
- Authors:
- Autor USP: CALDAS, IBERE LUIZ - IF
- Unidade: IF
- Subjects: SISTEMAS HAMILTONIANOS; TOKAMAKS
- Language: Inglês
- Imprenta:
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ABNT
CIRO, D. e EVANS, T. E. e CALDAS, Iberê Luiz. An efficient method for tracing high-resolution invariant manifolds of three-dimensional flows. . São Paulo: Instituto de Física, Universidade de São Paulo. Disponível em: https://arxiv.org/pdf/1610.01091.pdf. Acesso em: 12 mar. 2026. , 2016 -
APA
Ciro, D., Evans, T. E., & Caldas, I. L. (2016). An efficient method for tracing high-resolution invariant manifolds of three-dimensional flows. São Paulo: Instituto de Física, Universidade de São Paulo. Recuperado de https://arxiv.org/pdf/1610.01091.pdf -
NLM
Ciro D, Evans TE, Caldas IL. An efficient method for tracing high-resolution invariant manifolds of three-dimensional flows [Internet]. 2016 ;[citado 2026 mar. 12 ] Available from: https://arxiv.org/pdf/1610.01091.pdf -
Vancouver
Ciro D, Evans TE, Caldas IL. An efficient method for tracing high-resolution invariant manifolds of three-dimensional flows [Internet]. 2016 ;[citado 2026 mar. 12 ] Available from: https://arxiv.org/pdf/1610.01091.pdf - Influence of the electric and magnetic shears on tokamak transport
- Alternate islands of multiple isochronous chains in wave-particle interactions
- Parallel infinite wire model for tokamak plasmas with divertors
- Chaotic transport in plasmas with magnetic shear
- Separation of particles leading either to decay and unlimited growth of energy in a driven stadium-like billiard
- Hamiltonian description and escape patterns for Tokamaks with poloidal divertor and correction coils
- Magnetic trapping caused by resonant perturbations in tokamaks with reversed magnetic shear
- Dynamic range in a neuron network with electrical and chemical synapses
- Integrable map with freedom of triangularity and elongation for plasmas with poloidal divertor
- Parameter uncertainties on the predictability of periodic ity and chaos
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