[[abstract]]We present a study of quantum diffusion effect in granular metals, in the limit where ΔEc≫Δε, with Δε the average energy level spacing and ΔEC the charging energy fluctuation. This effect results from the reduction, due to quantum diffusion, in the probability of a coherent hopping process, and is shown to affect the temperature dependence of hopping conductivity. To study the effect, we employ a numerical percolation calculation which includes up to the third nearest-neighbor hoppings. The effect is sizable in the low temperature range where the transport is dominated by long-range hoppings[[fileno]]2030120010033[[department]]電機工程學
In disordered organic semiconductors, excited states and charges move by hopping in an inhomogeneous...
Diffusive transport properties of a quantum Brownian particle moving in a tilted spatially periodic ...
We study the hopping transport of a quantum particle through finite, randomly diluted percolation cl...
[[abstract]]© 2000 Elsevier - We modify some previous transport theories which consider only the nea...
Theory of hopping conductivity on spherical metal grains below the percolation threshold in a dielec...
[[abstract]]© 2001 Elsevier - A percolation method is developed for hopping resistances of granular ...
Hydrogen diffusion on metals exhibits rich quantum behavior, which is not yet fully understood. Usin...
The hopping conductivity of granular metals is known to be of the form sigma varies as exp (-(T0/T)1...
We investigate transport in 2D mesoscopic electron systems with disorder assuming a percolation mech...
Diffusion coefficient for charged heavy particles in metals is obtained by taking into account the p...
The mobility and the diffusion coefficient of a particle on a biased tight-binding lattice in the pr...
We study the temperature and magnetic field dependent transports of a two-dimensional granular syste...
We show that the study of nonlinearity conductivity gives a possibility to determine the condition w...
Motivated by recent surprising experimental results for temperature dependent resistivities in 2D m...
We propose a size effect which leads to the negative magnetoresistance in granular metal-insulator m...
In disordered organic semiconductors, excited states and charges move by hopping in an inhomogeneous...
Diffusive transport properties of a quantum Brownian particle moving in a tilted spatially periodic ...
We study the hopping transport of a quantum particle through finite, randomly diluted percolation cl...
[[abstract]]© 2000 Elsevier - We modify some previous transport theories which consider only the nea...
Theory of hopping conductivity on spherical metal grains below the percolation threshold in a dielec...
[[abstract]]© 2001 Elsevier - A percolation method is developed for hopping resistances of granular ...
Hydrogen diffusion on metals exhibits rich quantum behavior, which is not yet fully understood. Usin...
The hopping conductivity of granular metals is known to be of the form sigma varies as exp (-(T0/T)1...
We investigate transport in 2D mesoscopic electron systems with disorder assuming a percolation mech...
Diffusion coefficient for charged heavy particles in metals is obtained by taking into account the p...
The mobility and the diffusion coefficient of a particle on a biased tight-binding lattice in the pr...
We study the temperature and magnetic field dependent transports of a two-dimensional granular syste...
We show that the study of nonlinearity conductivity gives a possibility to determine the condition w...
Motivated by recent surprising experimental results for temperature dependent resistivities in 2D m...
We propose a size effect which leads to the negative magnetoresistance in granular metal-insulator m...
In disordered organic semiconductors, excited states and charges move by hopping in an inhomogeneous...
Diffusive transport properties of a quantum Brownian particle moving in a tilted spatially periodic ...
We study the hopping transport of a quantum particle through finite, randomly diluted percolation cl...