A pure spin current is predicted to occur when an external magnetic field and a linearly inhomogeneous spin-only field are appropriately aligned. Under these conditions (such as originate from nuclear contact hyperfine fields that do not affect orbital motion) a linear, spin-dependent dispersion for free electrons emerges from the Landau Hamiltonian. The result is that spins of opposite orientation flow in opposite directions giving rise to a pure spin current. A classical model of the spin and charge dynamics reveals intuitive aspects of the full quantum mechanical solution. We propose optical orientation or electrical polarization experiments to demonstrate this outcome.</p
We use electric dipole spin resonance to measure dynamic nuclear polarization in InAs nanowire quant...
We use electric dipole spin resonance to measure dynamic nuclear polarization in InAs nanowire quant...
We use electric dipole spin resonance to measure dynamic nuclear polarization in InAs nanowire quant...
A pure spin current is predicted to occur when an external magnetic field and a linearly inhomogeneo...
A pure spin current is predicted to occur when an external magnetic field and a linearly inhomogeneo...
A pure spin current is predicted to occur when an external magnetic field and a linearly inhomogeneo...
A pure spin current is predicted to occur when an external magnetic field and a linearly inhomogeneo...
We have experimentally achieved spin polarization by a lateral current in a single nonmagnetic semic...
We have experimentally achieved spin polarization by a lateral current in a single nonmagnetic semic...
Spintronics would utilize the spin of the electron for information processing and storage, leading t...
We suggest a new spin orientation mechanism for localized electrons: Dynamic electron spin polarizat...
It is shown that a homogeneous nonequlibrium spin polarization in semiconductor heterostructures res...
It is shown that a homogeneous nonequlibrium spin polarization in semiconductor heterostructures res...
We use electric dipole spin resonance to measure dynamic nuclear polarization in InAs nanowire quant...
We use electric dipole spin resonance to measure dynamic nuclear polarization in InAs nanowire quant...
We use electric dipole spin resonance to measure dynamic nuclear polarization in InAs nanowire quant...
We use electric dipole spin resonance to measure dynamic nuclear polarization in InAs nanowire quant...
We use electric dipole spin resonance to measure dynamic nuclear polarization in InAs nanowire quant...
A pure spin current is predicted to occur when an external magnetic field and a linearly inhomogeneo...
A pure spin current is predicted to occur when an external magnetic field and a linearly inhomogeneo...
A pure spin current is predicted to occur when an external magnetic field and a linearly inhomogeneo...
A pure spin current is predicted to occur when an external magnetic field and a linearly inhomogeneo...
We have experimentally achieved spin polarization by a lateral current in a single nonmagnetic semic...
We have experimentally achieved spin polarization by a lateral current in a single nonmagnetic semic...
Spintronics would utilize the spin of the electron for information processing and storage, leading t...
We suggest a new spin orientation mechanism for localized electrons: Dynamic electron spin polarizat...
It is shown that a homogeneous nonequlibrium spin polarization in semiconductor heterostructures res...
It is shown that a homogeneous nonequlibrium spin polarization in semiconductor heterostructures res...
We use electric dipole spin resonance to measure dynamic nuclear polarization in InAs nanowire quant...
We use electric dipole spin resonance to measure dynamic nuclear polarization in InAs nanowire quant...
We use electric dipole spin resonance to measure dynamic nuclear polarization in InAs nanowire quant...
We use electric dipole spin resonance to measure dynamic nuclear polarization in InAs nanowire quant...
We use electric dipole spin resonance to measure dynamic nuclear polarization in InAs nanowire quant...