publications

Theory of subgap interchain tunneling in quasi one-dimensional conductors

S. Brazovskii 1, 2, S. I. Matveenko 1, 2 Physical Review B 77 (2008) 155432 We suggest a theory of internal coherent tunneling in the pseudogap region, when the applied voltage U is below the free electron gap 2Delta_0. We address quasi 1D systems, where the gap is originated by spontaneous lattice distortions of the Incommensurate Charge Density Wave (ICDW) type. […]

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The Mott metal-insulator transition in the 1D Hubbard model in an external magnetic field

Holger Frahm 1, Temo Vekua 2 Journal of statistical mechanics-theory and experiment (2008) P01007 We study the low energy behavior of the one dimensional Hubbard model across the Mott metal-insulator phase transition in an external magnetic field. In particular we calculate elements of the dressed charge matrix at the critical point of the Mott transition for arbitrary Hubbard repulsion

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Structure and thermodynamics of a ferrofluid bilayer

Carlos Alvarez 1, 2, Martial Mazars 1, Jean-Jacques Weis 1 Physical Review E: Statistical, Nonlinear, and Soft Matter Physics 77 (2008) 051501 We present extensive Monte Carlo simulations for the thermodynamic and structural properties of a planar bilayer of dipolar hard spheres for a wide range of densities, dipole moments and layer separations. Expressions for the stress and pressure tensors of the

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Statistics of the total number of collisions and the ordering time in a freely expanding hard-point gas

Sanjib Sabhapandit 1, Ioana Bena 2, Satya N. Majumdar 1 Journal of statistical mechanics-theory and experiment (2008) P05012 We consider a Jepsen gas of $N$ hard-point particles undergoing free expansion on a line, starting from random initial positions of the particles having random initial velocities. The particles undergo binary elastic collisions upon contact and move freely in-between collisions. After a certain

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Statistical Properties of the Final State in One-dimensional Ballistic Aggregation

Satya N. Majumdar 1, Kirone Mallick 2, Sanjib Sabhapandit 3 Physical Review E: Statistical, Nonlinear, and Soft Matter Physics 79 (2008) 021109 We investigate the long time behaviour of the one-dimensional ballistic aggregation model that represents a sticky gas of N particles with random initial positions and velocities, moving deterministically, and forming aggregates when they collide. We obtain a closed formula

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Stability of the fermionic gases close to a p-wave Feshbach resonance

J. Levinsen 1, N. R. Cooper 2, V. Gurarie 3 Physical Review A: Atomic, Molecular and Optical Physics 78 (2008) 063616 We study the stability of the paired fermionic p-wave superfluid made out of identical atoms all in the same hyperfine state close to a p-wave Feshbach resonance. First we reproduce known results concerning the lifetime of a 3D superfluid, in

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Stability of dark solitons in three dimensional dipolar Bose-Einstein condensates

R. Nath 1, P. Pedri 2, 3, L. M.N.B.F. Santos 1 Physical Review Letters 101 (2008) 210402 The dynamical stability of dark solitons in dipolar Bose-Einstein condensates is studied. For standard short-range interacting condensates dark solitons are unstable against transverse excitations in two and three dimensions. On the contrary, due to its non local character, the dipolar interaction allows for stable 3D stationary

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