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We study numerically the resistance fluctuations, deltaR, in disordered metallic microstructures with two eight probes.

To probe the behavior of a single quantum coherent region, we calculate numerically both the average resistance and the resistance fluctuations, deltaR, of disordered microstructures with several l

As a result of the increasing use of submarine telephone cable, there is a growing demand for information on the performance of organic materials and cable structures under marine conditions.

Using numerical simulation, we show that solitons of any pulsewidth can avoid splitting or excessive broadening in response to birefringence of randomly varying orientation, as long as the fiber's

We report on magnetotransport measurements in a high-mobility two-dimensional electron system subject simultaneously to ac (microwave) and dc (Hall) fields.

Resistive transitions of single crystal Ba sub 2 YCu sub (3-z) Ni sub z O sub 7 were studied in magnetic fields up to 20 tesla.

We present the resistively determined upper critical field H-c2(rho)(T) and the irreversibility lines H-irr(rho)(T) of various high-T-c cuprates, deduced from measurements in 61-T pulsed magnetic f

Resistively detected nuclear magnetic resonance (NMR) measurements on 2D electron systems near the nu=1 quantum Hall state are reported. In contrast to recent results of Gervais {[}Phys. Rev.

A study of the resistively detected nuclear magnetic resonance (RDNMR) lineshape in the vicinity of nu = 1 was performed on a high-mobility 2D electron gas formed in GaAs/AlGaAs.

There exists in the literature a number of transport measurements performed on metallic superlattices.

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