A periodically driven system with spatial asymmetry can exhibit a directed motion facilitated by thermal or quantum fluctuations(1). This so-called ratchet effect(2) has fascinating ramifications in engineering and natural sciences(3-18). Graphene(19) is nominally a symmetric system. Driven by a periodic electric field, no directed electric current should flow. However, if the graphene has lost its spatial symmetry due to its substrate or adatoms, an electronic ratchet motion can arise. We report an experimental demonstration of such an electronic ratchet in graphene layers, proving the underlying spatial asymmetry. The orbital asymmetry of the Dirac fermions is induced by an in-plane magnetic field, whereas the periodic driving comes from ...
Ratchet is a device that produces direct current of particles when driven by an unbiased force. We d...
Terahertz field induced photocurrents in graphene were studied experimentally and by microscopic mod...
We report on spin ratchet currents driven by terahertz radiation electric fields in a Co/Pt magnetic...
A periodically driven system with spatial asymmetry can exhibit a directed motion facilitated by the...
Using extensive Monte Carlo simulations we study numerically and analytically a photogalvanic effect...
The effect of the magnetic field on the generation of an electric current in a two-dimensional elect...
We report on the observation of terahertz radiation induced photocurrents in single-layer graphene s...
We report on the observation of the magnetic quantum ratchet effect in graphene with a lateral dual-...
We consider the orbital effect of an in-plane magnetic field on electrons in bilayer graphene, deriv...
In this study, we explore the ratchet effect in graphene with artificial, triangular scatt...
We investigate the existence of the pure spin ratchet effect in a dissipative quasi-one-dimensional ...
Experimental and theoretical studies on ratchet effects in graphene with a lateral superlattice exci...
Ratchet is a device that produces direct current of particles when driven by an unbiased force. We d...
Terahertz field induced photocurrents in graphene were studied experimentally and by microscopic mod...
We report on spin ratchet currents driven by terahertz radiation electric fields in a Co/Pt magnetic...
A periodically driven system with spatial asymmetry can exhibit a directed motion facilitated by the...
Using extensive Monte Carlo simulations we study numerically and analytically a photogalvanic effect...
The effect of the magnetic field on the generation of an electric current in a two-dimensional elect...
We report on the observation of terahertz radiation induced photocurrents in single-layer graphene s...
We report on the observation of the magnetic quantum ratchet effect in graphene with a lateral dual-...
We consider the orbital effect of an in-plane magnetic field on electrons in bilayer graphene, deriv...
In this study, we explore the ratchet effect in graphene with artificial, triangular scatt...
We investigate the existence of the pure spin ratchet effect in a dissipative quasi-one-dimensional ...
Experimental and theoretical studies on ratchet effects in graphene with a lateral superlattice exci...
Ratchet is a device that produces direct current of particles when driven by an unbiased force. We d...
Terahertz field induced photocurrents in graphene were studied experimentally and by microscopic mod...
We report on spin ratchet currents driven by terahertz radiation electric fields in a Co/Pt magnetic...