Part of Focus on Bose Condensation Phenomena in Atomic and Solid State Physics We consider spin transport in a two-component atomic Bose gas in three dimensions, at temperatures just above the critical temperature for Bose–Einstein condensation. In these systems, the spin conductivity is determined by spin drag, i.e. frictional drag between the two spin components due to interactions. We find that in the critical region, the temperature dependence of the spin conductivity deviates qualitatively from the Boltzmann result and is fully determined by the critical exponents of the phase transition. We discuss the size of the critical region where these results may be observed experimentally
4 pages, 4 figuresInternational audienceWe study thermodynamic properties of a gas of spin 3 52Cr at...
We analyze the spin relaxation time 1/T1 for a system made of weakly coupled one-dimensional ladders...
Cold-atom developments suggest the prospect of measuring scaling properties and long-range fluctuati...
In this Thesis, we show that in a rotating two-component Bose mixture, the spin drag between the two...
We study spin-dependent heat transport in quantum gases, focusing on transport phenomena related to ...
We study spin-dependent heat transport in quantum gases, focusing on transport phenomena related to ...
We study spin-dependent heat transport in quantum gases, focusing on transport phenomena related to ...
We consider coupled spin and heat transport in a two-component, atomic Bose gas in the noncon- dense...
It is well known that the charge current in a conductor is proportional to the applied electric fiel...
We consider Bose-Einstein condensation of an ideal Bose gas with an equal mixture of ‘Rash...
In spintronics the active control and manipulation of spin currents is studied in solid-state system...
We investigate theoretically Bose-Einstein condensation of an ideal, trapped Bose gas in the presenc...
We show how time-dependent magnetic fields lead to spin motive forces and spin drag in a spinor Bose...
We show how time-dependent magnetic fields lead to spin motive forces and spin drag in a spinor Bose...
\u3cp\u3eWe show that spinor Bose gases subject to a quadratic Zeeman effect exhibit coexisting supe...
4 pages, 4 figuresInternational audienceWe study thermodynamic properties of a gas of spin 3 52Cr at...
We analyze the spin relaxation time 1/T1 for a system made of weakly coupled one-dimensional ladders...
Cold-atom developments suggest the prospect of measuring scaling properties and long-range fluctuati...
In this Thesis, we show that in a rotating two-component Bose mixture, the spin drag between the two...
We study spin-dependent heat transport in quantum gases, focusing on transport phenomena related to ...
We study spin-dependent heat transport in quantum gases, focusing on transport phenomena related to ...
We study spin-dependent heat transport in quantum gases, focusing on transport phenomena related to ...
We consider coupled spin and heat transport in a two-component, atomic Bose gas in the noncon- dense...
It is well known that the charge current in a conductor is proportional to the applied electric fiel...
We consider Bose-Einstein condensation of an ideal Bose gas with an equal mixture of ‘Rash...
In spintronics the active control and manipulation of spin currents is studied in solid-state system...
We investigate theoretically Bose-Einstein condensation of an ideal, trapped Bose gas in the presenc...
We show how time-dependent magnetic fields lead to spin motive forces and spin drag in a spinor Bose...
We show how time-dependent magnetic fields lead to spin motive forces and spin drag in a spinor Bose...
\u3cp\u3eWe show that spinor Bose gases subject to a quadratic Zeeman effect exhibit coexisting supe...
4 pages, 4 figuresInternational audienceWe study thermodynamic properties of a gas of spin 3 52Cr at...
We analyze the spin relaxation time 1/T1 for a system made of weakly coupled one-dimensional ladders...
Cold-atom developments suggest the prospect of measuring scaling properties and long-range fluctuati...