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首页> 外文期刊>Physical review letters >Coherent Transport in a Homojunction between an Excitonic Insulator and Semimetal
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Coherent Transport in a Homojunction between an Excitonic Insulator and Semimetal

机译:激子绝缘体和半金属之间同质结中的相干传输

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摘要

From the solution of a two-band model, we predict that the thermal and electrical transport across the junction of a semimetal and an excitonic insulator will exhibit high resistance behavior and low entropy production at low temperatures, distinct from a junction of a semimetal and a normal semiconductor. This phenomenon, ascribed to the dissipationless exciton flow which dominates over the charge transport, is based on the much longer length scale of the change of the effective interface potential for electron scattering due to the coherence of the condensate than in the normal state.
机译:从两带模型的解中,我们预测,在半金属和激子绝缘子的交界处的热和电传输在低温下将表现出高电阻行为和低熵产生,这与半金属和硅的交界处截然不同。普通半导体。这种现象归因于在电荷传输中占主导地位的无耗散激子流,其原因是由于冷凝物的相干性,与正常状态相比,电子散射的有效界面电势变化的长度尺度更大。

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