Salman Z, Prokscha T, Amato A, Morenzoni E, Scheuermann R, Sedlak K, Suter A
Paul Scherrer Institute, Laboratory for Muon Spin Spectroscopy, CH-5232 Villigen PSI, Switzerland.
Phys Rev Lett. 2014 Oct 10;113(15):156801. doi: 10.1103/PhysRevLett.113.156801. Epub 2014 Oct 7.
We present a direct spectroscopic observation of a shallow hydrogenlike muonium state in SrTiO(3) which confirms the theoretical prediction that interstitial hydrogen may act as a shallow donor in this material. The formation of this muonium state is temperature dependent and appears below ∼ 70K. From the temperature dependence we estimate an activation energy of ∼ 50 meV in the bulk and ∼ 23 meV near the free surface. The field and directional dependence of the muonium precession frequencies further supports the shallow impurity state with a rare example of a fully anisotropic hyperfine tensor. From these measurements we determine the strength of the hyperfine interaction and propose that the muon occupies an interstitial site near the face of the oxygen octahedron in SrTiO(3). The observed shallow donor state provides new insight for tailoring the electronic and optical properties of SrTiO(3)-based oxide interface systems.
我们展示了对钛酸锶(SrTiO₃)中类氢浅μ子态的直接光谱观测,这证实了理论预测,即间隙氢在这种材料中可能作为浅施主。这种μ子态的形成与温度有关,出现在约70K以下。根据温度依赖性,我们估计在体相中激活能约为50毫电子伏特,在自由表面附近约为23毫电子伏特。μ子进动频率的场和方向依赖性进一步支持了浅杂质态,且具有完全各向异性超精细张量这一罕见例子。通过这些测量,我们确定了超精细相互作用的强度,并提出μ子占据了钛酸锶中氧八面体表面附近的间隙位置。观测到的浅施主态为定制基于钛酸锶的氧化物界面系统的电子和光学性质提供了新的见解。