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Magneto-Raman spectroscopy of spin-density excitations in (001)-grown GaAs-AlGaAs quantum wells in the regime of the persistent spin helix

机译:持久自旋螺旋状态下(001)生长的GaAs-AlGaAs量子阱中自旋密度激发的磁拉曼光谱

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We present inelastic light scattering experiments on low-energy intrasubband spin-density excitations (SDE) in 12-nm-wide (OOl)-oriented GaAs-AlGaAs single quantum well samples with balanced Rashba and Dresselhaus spin-orbit interaction strengths. This unique symmetry causes an effective spin-orbit field either parallel or antiparallel to specific in-plane crystal directions, which supports the persistent spin helix. This results in a highly anisotropic splitting of intrasubband SDEs in the conduction band. Measurements are performed in backscattering geometry, where the SDE is formed by spin-flip intrasubband transitions. A wave-vector transfer into the two-dimensional electron system is realized by tilting the sample. By rotating the sample with a rotary stage, we can precisely map the anisotropic spin splitting, which appears for various crystal directions as a double peak line shape of the spectra. In the presence of external magnetic fields, a superposition of both, the intrinsic spin-orbit field and the external magnetic field, occurs. We analyze our experimental spectra via a lineshape analysis, based on the Lindhard-Mennin lineshape, including the effects of the anisotropic spin splitting and the external magnetic field. This allows us to quantitatively deduce the spin-orbit parameters, the electron g factor, and the single-particle relaxation time from our observations.
机译:我们在12-NM宽的(OOL) - 型GaAs-Algaas单量子阱样品中呈现对低能量含有型旋转密度激发(SDE)的绝体光散射实验,具有平衡的Rashba和Temselhaus旋转轨道相互作用强度。这种独特的对称性使有效的旋转轨道场平行或反平行于特定的面内晶体方向,其支持持久的旋转螺旋。这导致在传导带中的intrasuband sdes的高度各向异性分裂。测量以反向散射几何进行,其中SDE通过旋转intrasuband转换形成。通过倾斜样品来实现在二维电子系统中的波矢量转移。通过用旋转级旋转样品,我们可以精确地映射各向异性自旋分裂,这将出现各种晶体方向作为光谱的双峰线形状。在存在外部磁场的情况下,发生叠加,内在的自旋轨道场和外部磁场。我们通过基于Lindhard-Mennin Lineshape的线性分析来分析我们的实验光谱,包括各向异性自旋分裂和外部磁场的影响。这使我们可以从我们的观察结果中定量地推导出旋转轨道参数,电子G因子和单粒子松弛时间。

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