论文标题
NAMBU纺纱器和铃铛不等式测试的纠缠而没有光束拆分器
Entanglement of Nambu Spinors and Bell Inequality Test Without Beam Splitters
论文作者
论文摘要
到目前为止,固体中电子纠缠的识别仍然难以捉摸,这是由于难以实现具有可调极化方向的旋转旋钮选择束分裂器。在这里,我们建议通过产生和检测在量子霍尔边缘状态激发的准颗粒的Nambu旋转器或电子孔成分中编码的特定类型的纠缠来克服这一障碍。由于电子和孔的相反电荷,NAMBU旋转器的检测转化为电荷电流测量,从而消除了对光束拆分器的需求并确保高检测率。方便地,固定有效极化的旋转相关函数源自单个电流噪声测量,检测器的极化方向通过将边缘状态耦合到电压栅极和一个超导体来轻松调节,这两者都在实验中实现。我们表明,违反贝尔不等式发生在大型参数区域中。我们的作品开辟了一条新的途径,以探测固态物理固定物质避免传统光束拆分器的纠缠。
The identification of electronic entanglement in solids remains elusive so far, which is owed to the difficulty of implementing spinor-selective beam splitters with tunable polarization direction. Here, we propose to overcome this obstacle by producing and detecting a particular type of entanglement encoded in the Nambu spinor or electron-hole components of quasiparticles excited in quantum Hall edge states. Due to the opposite charge of electrons and holes, the detection of the Nambu spinor translates into a charge-current measurement, which eliminates the need for beam splitters and assures a high detection rate. Conveniently, the spinor correlation function at fixed effective polarizations derives from a single current-noise measurement, with the polarization directions of the detector easily adjusted by coupling the edge states to a voltage gate and a superconductor, both having been realized in experiments. We show that the violation of Bell inequality occurs in a large parameter region. Our work opens a new route for probing quasiparticle entanglement in solid-state physics exempt from traditional beam splitters.