Electric field induced ionization of the excitons in polymers
Moses, D., Wang, J., Heeger, A.J., Kirova, N., Brazovskii, S. Physical Review B 61 (2000) 10640-10650
Electric field induced ionization of the excitons in polymers Lire la suite »
Moses, D., Wang, J., Heeger, A.J., Kirova, N., Brazovskii, S. Physical Review B 61 (2000) 10640-10650
Electric field induced ionization of the excitons in polymers Lire la suite »
Claude Bouchiat 1, Marc Mezard 1, 2, 3 European Physical Journal E (2000) 337-402 We study the elastic behaviour of a supercoiled DNA molecule. The simplest model is that of a rod like chain, involving two elastic constants, the bending and the twist rigidities. We show that this model is singular and needs a small distance cut-off, which is a natural
Elastic Rod Model of a Supercoiled DNA Molecule Lire la suite »
Jesper Lykke Jacobsen 1 Physical Review E: Statistical, Nonlinear, and Soft Matter Physics 62 (2000) R1-R4 We establish explicit duality transformations for systems of M q-state Potts models coupled through their local energy density, generalising known results for M=1,2,3. The M-dimensional space of coupling constants contains a selfdual sub-manifold of dimension D_M = [M/2]. For the case
Duality relations for M coupled Potts models Lire la suite »
Fedorov, A.V., Brazovskii S. et, al Journal of Physics : Condensed matter 12 (2000) L191-L198
Eugene Bogomolny 1, Nicolas Pavloff 1, Charles Schmit 1 Physical Review E: Statistical, Nonlinear, and Soft Matter Physics 61 (2000) 3689-3711 We derive contributions to the trace formula for the spectral density accounting for the role of diffractive orbits in two-dimensional polygonal billiards. In polygons, diffraction typically occurs at the boundary of a family of trajectories. In this case the first
Diffractive corrections in the trace formula for polygonal billiards Lire la suite »
P. Leboeuf 1, A. Monastra 1 Physical Review B 62 (2000) 12617-12620 The grand potential $\\Omega$ and the response $R = – \\partial \\Omega /\\partial x$ of a phase-coherent confined noninteracting electron gas depend sensitively on chemical potential $\\mu$ or external parameter $x$. We compute their autocorrelation as a function of $\\mu$, $x$ and temperature. The result is related
Correlations and fluctuations of a confined electron gas Lire la suite »
C. Monthus 1, T. Garel 1, H. Orland 1 European Physical Journal B 17 (2000) 121 We consider two different problems involving the localization of a single polymer chain: (i) a periodic $AB$ copolymer at a selective fluid-fluid interface, with the upper (resp. lower) fluid attracting $A$ (resp. $B$) monomers (ii) a homopolymer chain attracted to a hard wall (wetting). Self
S. Nechaev 1, 2, G. Oshanin 3, A. Blumen 4 Journal of Statistical Physics 98 (2000) 281-303 We study dynamics of a Rouse polymer chain, which diffuses in a three-dimensional space under the constraint that one of its ends, referred to as the slip-link, may move only along a one-dimensional line containing randomly placed, immobile, perfect traps. For such a model we
Anchoring of polymers by traps randomly placed on a line Lire la suite »
Xavier Campi 1, Hubert Krivine 1, Nicolas Sator 1, Eric Plagnol 2 European Physical Journal D 11 (2000) 233-238 We show that the size distributions of fragments created by high energy nuclear collisions are remarkably well reproduced within the framework of a parameter free percolation model. We discuss two possible scenarios to explain this agreement and suggest that percolation could be an universal
Analyzing Fragmentation of Simple Fluids with Percolation Theory Lire la suite »
Eugene Bogomolny 1 Nonlinearity 13 (2000) 947-972 In many problems of quantum chaos the calculation of sums of products of periodic orbit contributions is required. A general method of computation of these sums is proposed for generic integrable models where the summation over periodic orbits is reduced to the summation over integer vectors uniquely associated with periodic
Action Correlations in Integrable Systems Lire la suite »