We show that spinor Bose gases subject to a quadratic Zeeman effect exhibit coexisting superfluidity and spin superfluidity, and study the interplay between these two distinct types of superfluidity. To illustrate that the basic principles governing these two types of superfluidity are the same, we describe the magnetization and particle-density dynamics in a single hydrodynamic framework. In this description spin and mass supercurrents are driven by their respective chemical potential gradients. As an application, we propose an experimentally accessible stationary state, where the two types of supercurrents counterflow and cancel each other, thus resulting in no mass transport. Furthermore, we propose a straightforward setup to probe spin ...
Liquid helium 4 had been the only bosonic superfluid available in experiments for a long time. This ...
The present review analyzes and compares various types of dissipationless spin transport: (1) Superf...
In spintronics the active control and manipulation of spin currents is studied in solid-state system...
We show that spinor Bose gases subject to a quadratic Zeeman effect exhibit coexisting superfluidity...
We show that spinor Bose gases subject to a quadratic Zeeman effect exhibit coexisting superfluidity...
\u3cp\u3eWe show that spinor Bose gases subject to a quadratic Zeeman effect exhibit coexisting supe...
We show that spinor Bose gases subject to a quadratic Zeeman effect exhibit coexisting superfluidity...
We show that spinor Bose gases subject to a quadratic Zeeman effect exhibit coexisting superfluidity...
We show that spinor Bose gases subject to a quadratic Zeeman effect exhibit coexisting superfluidity...
We show that spinor Bose gases subject to a quadratic Zeeman effect exhibit coexisting superfluidity...
We study the superfluidity of a pure spin current, which is a spin current without a mass current. W...
International audienceThe spin superfluidity -- superfluidity in the magnetic subsystem of a condens...
Bose-Einstein condensation (BEC) is a quantum phenomenon of formation of a collective quantum state ...
Spinor Bose gases form a family of quantum fluids manifesting both magnetic order and superflu-idity...
Bose-Einstein condensation (BEC) is a quantum phenomenon of formation of a collective quantum state ...
Liquid helium 4 had been the only bosonic superfluid available in experiments for a long time. This ...
The present review analyzes and compares various types of dissipationless spin transport: (1) Superf...
In spintronics the active control and manipulation of spin currents is studied in solid-state system...
We show that spinor Bose gases subject to a quadratic Zeeman effect exhibit coexisting superfluidity...
We show that spinor Bose gases subject to a quadratic Zeeman effect exhibit coexisting superfluidity...
\u3cp\u3eWe show that spinor Bose gases subject to a quadratic Zeeman effect exhibit coexisting supe...
We show that spinor Bose gases subject to a quadratic Zeeman effect exhibit coexisting superfluidity...
We show that spinor Bose gases subject to a quadratic Zeeman effect exhibit coexisting superfluidity...
We show that spinor Bose gases subject to a quadratic Zeeman effect exhibit coexisting superfluidity...
We show that spinor Bose gases subject to a quadratic Zeeman effect exhibit coexisting superfluidity...
We study the superfluidity of a pure spin current, which is a spin current without a mass current. W...
International audienceThe spin superfluidity -- superfluidity in the magnetic subsystem of a condens...
Bose-Einstein condensation (BEC) is a quantum phenomenon of formation of a collective quantum state ...
Spinor Bose gases form a family of quantum fluids manifesting both magnetic order and superflu-idity...
Bose-Einstein condensation (BEC) is a quantum phenomenon of formation of a collective quantum state ...
Liquid helium 4 had been the only bosonic superfluid available in experiments for a long time. This ...
The present review analyzes and compares various types of dissipationless spin transport: (1) Superf...
In spintronics the active control and manipulation of spin currents is studied in solid-state system...