When a local and attractive potential is quenched in a nanowire, the spectrum changes its topology from a purely continuum to a continuum and discrete portion. We show that, under appropriate conditions, this quench leads to stable coherent oscillations in the observables' time evolution. In particular, we demonstrate that ballistic nanowires with spin-orbit coupling (SOC) exposed to a uniform magnetic field are especially suitable to observe this effect. Indeed, while in ordinary nanowires the effect occurs only if the strength U0 of the attractive potential is sufficiently strong, even a weak value of U0 is sufficient in SOC nanowires. Furthermore, in these systems coherent oscillations in the spin sector can be generated and controlled e...
We study a quantum coherent effect of spins in magnetic nanodots. We quantize the Heisenberg Hamilt...
The coupling between the spin and momentum degrees of freedom due to spin-orbit interactions (SOI) s...
Probing the quantum world with macroscopic objects has been a core challenge for research in physics...
Over the past decades there has been a growing interest in the study of the spin-orbit interaction (...
This article gives an overview on recent theoretical progress in controlling the charge and spin dyn...
This article gives an overview on recent theoretical progress in controlling the charge and spin dyn...
Mechanical properties of metallic-nanowire self-oscillations are investigated through a coherent-sta...
Motion of electrons can influence their spins through a fundamental effect called spin–orbit interac...
Spin current is the flow of electron spin angular momentum. It can either be partially spin polarize...
Spin torque from spin current applied to a nanoscale region of a ferromagnet can act as negative mag...
We investigate numerically the charge, spin, and entanglement dynamics of two electrons confined in ...
We consider dc-electronic transport through a nanowire suspended between normal- and spin-polarized ...
The field of spintronics deals with the use of the spin degree of freedom of the electron and the sp...
We present an experimental study of flux- and gate-tunable nanowire transmons with state-of-the-art ...
Controlling magnetization on short time scales and/or small dimensions is a hot topic in the field o...
We study a quantum coherent effect of spins in magnetic nanodots. We quantize the Heisenberg Hamilt...
The coupling between the spin and momentum degrees of freedom due to spin-orbit interactions (SOI) s...
Probing the quantum world with macroscopic objects has been a core challenge for research in physics...
Over the past decades there has been a growing interest in the study of the spin-orbit interaction (...
This article gives an overview on recent theoretical progress in controlling the charge and spin dyn...
This article gives an overview on recent theoretical progress in controlling the charge and spin dyn...
Mechanical properties of metallic-nanowire self-oscillations are investigated through a coherent-sta...
Motion of electrons can influence their spins through a fundamental effect called spin–orbit interac...
Spin current is the flow of electron spin angular momentum. It can either be partially spin polarize...
Spin torque from spin current applied to a nanoscale region of a ferromagnet can act as negative mag...
We investigate numerically the charge, spin, and entanglement dynamics of two electrons confined in ...
We consider dc-electronic transport through a nanowire suspended between normal- and spin-polarized ...
The field of spintronics deals with the use of the spin degree of freedom of the electron and the sp...
We present an experimental study of flux- and gate-tunable nanowire transmons with state-of-the-art ...
Controlling magnetization on short time scales and/or small dimensions is a hot topic in the field o...
We study a quantum coherent effect of spins in magnetic nanodots. We quantize the Heisenberg Hamilt...
The coupling between the spin and momentum degrees of freedom due to spin-orbit interactions (SOI) s...
Probing the quantum world with macroscopic objects has been a core challenge for research in physics...