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首页> 外文期刊>Journal of the Physical Society of Japan >Coulomb Blockade of the Collective Current in Charge-Density-Wave Systems
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Coulomb Blockade of the Collective Current in Charge-Density-Wave Systems

机译:电荷密度波系统中集体电流的库仑阻塞

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摘要

The Coulomb-interaction effect on the phase slip in charge-density-wave (CDW) systems is studied theoretically. Sliding motion of the CDW is accompanied by thermally activated phase-slip activated phase-slip processes near electrical contacts. We calculate the thermal nucleation rate of the phase slip taking account of the Coulomb-interaction effect on dislocation loops. We find that the effect manifests itself when the quasiparticle screening length λ_(qp) is much longer than the longitudinal phason screening length λ_(ph). It is shown that due to a large charging energy associated with the dislocation-loop nucleation, the phase-slip rate is greatly reduced when the applied voltage is smaller than the threshold voltage V_(th) ~ γhv_F/(eλ_(ph)) (γ: anisotropy constant, v_F: Fermi velocity). This indicates that the collective CDW current below the threshold voltage is strongly suppressed by the Coulomb blockade of the phase slip.
机译:理论上研究了电荷密度波(CDW)系统中库仑相互作用对相移的影响。 CDW的滑动运动伴随着电触点附近的热激活相移激活相移过程。考虑到位错环上的库仑相互作用,我们计算了相移的热成核率。我们发现,当准粒子屏蔽长度λ_(qp)远大于纵向相位屏蔽长度λ_(ph)时,这种效果就会显现出来。结果表明,由于位错环形核的充电能量大,当施加的电压小于阈值电压V_(th)〜γhv_F/(eλ_(ph))时,相滑率会大大降低( γ:各向异性常数,v_F:费米速度)。这表明,低于库伦电压的相位滑移会强烈抑制低于阈值电压的CDW总电流。

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