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Interference effects in nonlinear charge-density-wave dynamics (CROSBI ID 167862)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Jelčić, Dajana ; Bjeliš, Aleksa ; Batistić, Ivo Interference effects in nonlinear charge-density-wave dynamics // Physical review. B, Condensed matter, 38 (1988), 6; 4045-4055. doi: 10.1103/PhysRevB.38.4045

Podaci o odgovornosti

Jelčić, Dajana ; Bjeliš, Aleksa ; Batistić, Ivo

engleski

Interference effects in nonlinear charge-density-wave dynamics

The main features of nonlinear charge-density-wave (CDW) transport in an external DC-AC field are shown to be the natural consequences of resonant phase-slip diffusion. This process is treated numerically within the time-dependent Landau-Ginzburg model, developed by Gor'kov. The resonances in the AC field are manifested as Shapiro steps in the I-V characteristics, present at all rational ratios of the internal frequency of current oscillations and external AC frequency. The origin of Shapiro steps, and their form and heights, are considered in detail. In particular, it is shown that close to resonances the phase-slip voltage acquires a highly nonsinusoidal modulation which leads to the appearance of low-frequency and satellite peaks in the Fourier spectrum. Taking into account the interference of adjacent phase slips and the segment or domain structure of physical samples, the authors interpret the finite width of steps, side wings, synchronization, incomplete and complete mode locking, and some other effects observed in numerous experiments of NbSe/sub 3/ and other quasi-one-dimensional materials with the CDW order.

interference effects ; nonlinear charge-density-wave dynamics

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Podaci o izdanju

38 (6)

1988.

4045-4055

objavljeno

0163-1829

1095-3795

10.1103/PhysRevB.38.4045

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Fizika

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