Xiang S, Xiao S, Fuji K, Shibuya K, Endo T, Yumoto N, Morimoto T, Aoki N, Bird J P, Ochiai Y
Graduate School of Advanced Integration Science, Chiba University, 1-33 Yayoi-cho, Inage-ku, Chiba 263-8522, Japan.
J Phys Condens Matter. 2014 Mar 26;26(12):125304. doi: 10.1088/0953-8984/26/12/125304. Epub 2014 Mar 6.
We investigate the linear and non-linear conductance of quantum point contacts (QPCs), in the region near pinch-off where Kondo physics has previously been connected to the appearance of the 0.7 feature. In studies of seven different QPCs, fabricated in the same high-mobility GaAs/AlGaAs heterojunction, the linear conductance is widely found to show the presence of the 0.7 feature. The differential conductance, on the other hand, does not generally exhibit the zero-bias anomaly (ZBA) that has been proposed to indicate the Kondo effect. Indeed, even in the small subset of QPCs found to exhibit such an anomaly, the linear conductance does not always follow the universal temperature-dependent scaling behavior expected for the Kondo effect. Taken collectively, our observations demonstrate that, unlike the 0.7 feature, the ZBA is not a generic feature of low-temperature QPC conduction. We furthermore conclude that the mere observation of the ZBA alone is insufficient evidence for concluding that Kondo physics is active. While we do not rule out the possibility that the Kondo effect may occur in QPCs, our results appear to indicate that its observation requires a very strict set of conditions to be satisfied. This should be contrasted with the case of the 0.7 feature, which has been apparent since the earliest experimental investigations of QPC transport.
我们研究了量子点接触(QPC)在夹断附近区域的线性和非线性电导,此前近藤物理已与0.7特征的出现联系起来。在对同一高迁移率砷化镓/铝镓砷异质结中制备的七个不同QPC的研究中,广泛发现线性电导显示出0.7特征的存在。另一方面,微分电导通常并不表现出被认为指示近藤效应的零偏置异常(ZBA)。实际上,即使在发现表现出这种异常的QPC的小子集中,线性电导也并不总是遵循近藤效应预期的普遍温度依赖标度行为。总体而言,我们的观察结果表明,与0.7特征不同,ZBA不是低温QPC传导的普遍特征。我们进一步得出结论,仅观察到ZBA本身不足以作为近藤物理活跃的结论性证据。虽然我们不排除近藤效应可能在QPC中发生的可能性,但我们的结果似乎表明,其观察需要满足一组非常严格的条件。这应与0.7特征的情况形成对比,自最早对QPC输运进行实验研究以来,0.7特征就很明显了。