CNRS, Laboratoire de Photonique et de Nanostructures—Phynano Team, route de Nozay, 91460 Marcoussis, France.
Phys Rev Lett. 2010 Nov 26;105(22):226804. doi: 10.1103/PhysRevLett.105.226804. Epub 2010 Nov 23.
The chiral edge channels in the quantum Hall regime are considered ideal ballistic quantum channels, and have quantum information processing potentialities. Here, we demonstrate experimentally, at a filling factor of ν(L)=2, the efficient tuning of the energy relaxation that limits quantum coherence and permits the return toward equilibrium. Energy relaxation along an edge channel is controllably enhanced by increasing its transmission toward a floating Ohmic contact, in quantitative agreement with predictions. Moreover, by forming a closed inner edge channel loop, we freeze energy exchanges in the outer channel. This result also elucidates the inelastic mechanisms at work at ν(L)=2, informing us, in particular, that those within the outer edge channel are negligible.
在量子霍尔效应 regime 中,手性边缘通道被认为是理想的弹道量子通道,具有量子信息处理的潜力。在这里,我们在填充因子 ν(L)=2 下实验证明了对限制量子相干性并允许返回平衡的能量弛豫的有效调节。通过增加边缘通道的传输到浮动欧姆接触,可以可控地增强沿边缘通道的能量弛豫,这与预测定量一致。此外,通过形成封闭的内边缘通道环,我们冻结了外通道中的能量交换。这一结果还阐明了在 ν(L)=2 时起作用的非弹性机制,特别告诉我们,外边缘通道中的非弹性机制可以忽略不计。