In the last decades, the study of nonlinear one dimensional lattices has attracted much attention of the scientific community. One of these lattices is related to a simplified model for the DNA molecule, allowing to recover experimental results, such as the denaturation of DNA double helix. Inspired by this model we construct a Hamiltonian for a reflectionless potential through the Supersymmetric Quantum Mechanics formalism, SQM. Thermodynamical properties of such one dimensional lattice are evaluated aming possible biological applications
A lattice version of the quantum nonlinear Schrodinger (NLS) equation is considered, which has a sig...
We propose an experiment using micro-mechanical stretching of DNA to probe nonlinear energy localiza...
Abstract. An elementary introduction is given to the subject of supersymmetry in quantum me-chanics ...
Invited paper, in the series "Open Problems" of NonlinearityInternational audienceWhen it is viewed ...
This thesis gives an introduction to the basic formalism of one-dimensional supersymmetric quantum m...
A harmonic oscillator isospectral potential obtained by supersymmetric algebra applied to quantum me...
We study the lattice supersymmetric models numerically using the transfer matrix approach. This meth...
The full text is available at: http://arxiv.org/PS_cache/cond-mat/pdf/0411/0411188v1.pdfThis is also...
CONSPECTUS: Quantum mechanics (QM) has revolutionized our understanding of the structure and reactiv...
Simulations of supersymmetric field theories with spontaneously broken supersymmetry require in addi...
Supersymmetric quantum mechanical systems in arbitrary dimensions on curved spaces with nontrivial g...
This thesis gives an introduction to the basic formalism of one-dimensional supersymmetric quantum m...
Wigner's quantum mechanical formulation of the problem of biological replication is examined with sp...
AbstractSimulations of supersymmetric field theories with spontaneously broken supersymmetry require...
This paper presents a thermodynamic study of DNA through a Peyrard-Bishop one-dimensional lattice wi...
A lattice version of the quantum nonlinear Schrodinger (NLS) equation is considered, which has a sig...
We propose an experiment using micro-mechanical stretching of DNA to probe nonlinear energy localiza...
Abstract. An elementary introduction is given to the subject of supersymmetry in quantum me-chanics ...
Invited paper, in the series "Open Problems" of NonlinearityInternational audienceWhen it is viewed ...
This thesis gives an introduction to the basic formalism of one-dimensional supersymmetric quantum m...
A harmonic oscillator isospectral potential obtained by supersymmetric algebra applied to quantum me...
We study the lattice supersymmetric models numerically using the transfer matrix approach. This meth...
The full text is available at: http://arxiv.org/PS_cache/cond-mat/pdf/0411/0411188v1.pdfThis is also...
CONSPECTUS: Quantum mechanics (QM) has revolutionized our understanding of the structure and reactiv...
Simulations of supersymmetric field theories with spontaneously broken supersymmetry require in addi...
Supersymmetric quantum mechanical systems in arbitrary dimensions on curved spaces with nontrivial g...
This thesis gives an introduction to the basic formalism of one-dimensional supersymmetric quantum m...
Wigner's quantum mechanical formulation of the problem of biological replication is examined with sp...
AbstractSimulations of supersymmetric field theories with spontaneously broken supersymmetry require...
This paper presents a thermodynamic study of DNA through a Peyrard-Bishop one-dimensional lattice wi...
A lattice version of the quantum nonlinear Schrodinger (NLS) equation is considered, which has a sig...
We propose an experiment using micro-mechanical stretching of DNA to probe nonlinear energy localiza...
Abstract. An elementary introduction is given to the subject of supersymmetry in quantum me-chanics ...