论文标题

低对称量子井中自旋螺旋的寿命增强

Enhanced longevity of the spin helix in low-symmetry quantum wells

论文作者

Iizasa, Daisuke, Kohda, Makoto, Zülicke, Ulrich, Nitta, Junsaku, Kammermeier, Michael

论文摘要

在半导体中,由于d'Yakonov-perel's自旋放松,旋转纹理的集体激发通常会很快衰减。后者源于自旋轨道耦合,该耦合诱导波矢量依赖性的自旋旋转,与随机疾病散射结合使用,产生了自旋反应。但是,在某些条件下发生的对称性可以防止特定均匀和不均匀的自旋纹理放松。不均匀的自旋纹理被称为持续的旋转螺旋,特别吸引人,因为它使我们能够在保持长期旋转寿命的同时操纵旋转方向。最近,据预测,如果至少两个生长方向米勒指数在模量中达成共识,并且Rashba和Lineareal frastelhaus Spin-Orbit耦合的系数至少可以匹配[PRL 117,236801(2016)]。在本文中,我们系统地分析了对称性的Cubic Dresselhaus旋转轨道耦合的影响,这些耦合在这些系统中通常在这些系统中共存,对新兴旋转螺旋在生长方向方面的稳定性。我们发现,作为由Cubic Dresselhaus术语引起的有效磁场的方向和强度之间的相互作用,对于低对称生长方向而言,自旋弛豫是最弱的,而[225]晶格载体可以很好地近似。与[001]面向的电子气体相比,这些量子井产生30 \%自旋螺旋寿命增强,并且显着需要可忽略不计的Rashba系数。相应的自旋螺旋的旋转轴仅略微从量子孔平面倾斜。这使得对旋转螺旋动力学的实验研究很容易访问常规的光旋转方向测量值,在这些测量中,沿量子孔孔生长方向激发并检测到旋转并检测到。

In a semiconductor, collective excitations of spin textures usually decay rather fast due to D'yakonov-Perel' spin relaxation. The latter arises from spin-orbit coupling, which induces wave-vector-dependent spin rotations that, in conjunction with random disorder scattering, generate spin decoherence. However, symmetries occurring under certain conditions can prevent the relaxation of particular homogeneous and inhomogeneous spin textures. The inhomogeneous spin texture, termed as persistent spin helix, is especially appealing as it enables us to manipulate the spin orientation while retaining a long spin lifetime. Recently, it was predicted that such symmetries can be realized in zinc-blende two-dimensional electron gases if at least two growth-direction Miller indices agree in modulus and the coefficients of the Rashba and linear Dresselhaus spin-orbit couplings are suitably matched [PRL 117, 236801 (2016)]. In the present paper, we systematically analyze the impact of the symmetry-breaking cubic Dresselhaus spin-orbit coupling, which generically coexists in these systems, on the stability of the emerging spin helices with respect to the growth direction. We find that, as an interplay between orientation and strength of the effective magnetic field induced by the cubic Dresselhaus terms, the spin relaxation is weakest for a low-symmetry growth direction that can be well approximated by a [225] lattice vector. These quantum wells yield a 30\% spin-helix lifetime enhancement compared to [001]-oriented electron gases and, remarkably, require a negligible Rashba coefficient. The rotation axis of the corresponding spin helix is only slightly tilted out of the quantum-well plane. This makes the experimental study of the spin-helix dynamics readily accessible for conventional optical spin orientation measurements where spins are excited and detected along the quantum-well growth direction.

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