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Soliton like wave packets in quantum wires | P. Singha Deo
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15 Jun 2006 | Subject: | Mesoscopic Systems and Quantum Hall Effect | Abstract: | At a Fano resonance in a quantum wire there is strong quantum mechanical back-scattering. When identical wave packets are incident from all directions, each wave packet is strongly scattered. The scattered wave packets compensate each other in such a way that the outgoing wave packets are similar to the incoming wave packets. This is as if the wave packets are not scattered and not dispersed. This typically happens for the kink-antikink solution of the Sine-Gordon model. As a result of such non-dispersive behavior, the derivation of semiclassical formulas like the Friedel sum rule and the Wigner delay time are exact at Fano resonance. We also show that validity of the Friedel sum rule may or may not be related to the conservation of charge. If there are evanescent modes then even when charge is conserved, Friedel sum rule may break down away from the Fano resonances. | Source: | arXiv, cond-mat/0606412 | Services: | Forum | Review | PDF | Favorites |
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