论文标题
基于铁电CA的可切换二维电子气体:srtio $ _3 $
A switchable two-dimensional electron gas based on ferroelectric Ca:SrTiO$_3$
论文作者
论文摘要
二维电子气体(二维)可以在氧化物和半导体的表面或精心设计的量子井和界面中形成。根据限制电势的形状,2高的电场可能会产生相对论效应,例如Rashba旋转轨道耦合。尽管该电场的幅度可以通过外部门电压调节,这又可以调节2级载波密度,板电阻和其他相关特性,但该调制是挥发性的。在这里,我们报告了“铁电” 2DEG的设计,其运输特性可以以非挥发性方式进行静电切换。我们通过将薄层沉积到Srtio $ _3 $单晶中来产生2DEG,其中1%的SR被CA取代以使其成为铁电。在25 K处的铁电相变的特征在拉曼反应中可见,并且在载体密度和板电阻的温度依赖性中,由于铁电性的结果显示滞后依赖性对电场的依赖性。我们建议这种行为可以扩展到其他氧化物2级,从而导致新型的无铁磁性旋转式体系结构。
Two-dimensional electron gases (2DEGs) can form at the surface of oxides and semiconductors or in carefully designed quantum wells and interfaces. Depending on the shape of the confining potential, 2DEGs may experience a finite electric field, which gives rise to relativistic effects such as the Rashba spin-orbit coupling. Although the amplitude of this electric field can be modulated by an external gate voltage, which in turn tunes the 2DEG carrier density, sheet resistance and other related properties, this modulation is volatile. Here, we report the design of a ''ferroelectric'' 2DEG whose transport properties can be electrostatically switched in a non-volatile way. We generate a 2DEG by depositing a thin Al layer onto a SrTiO$_3$ single crystal in which 1 percent of Sr is substituted by Ca to make it ferroelectric. Signatures of the ferroelectric phase transition at 25 K are visible in the Raman response and in the temperature dependences of the carrier density and sheet resistance that shows a hysteretic dependence on electric field as a consequence of ferroelectricity. We suggest that this behavior may be extended to other oxide 2DEGs, leading to novel types of ferromagnet-free spintronic architectures.