论文标题
反馈锁定:电气传输设备的多功能多末端测量系统
Feedback Lock-in: A versatile multi-terminal measurement system for electrical transport devices
论文作者
论文摘要
我们介绍了一个测量系统的设计和实现,该系统可以在多末端电气设备上进行许多电气接触时的平行驱动和检测。该系统将反馈锁定称为“反馈”,将数字控制环反馈与软件定义的锁定测量结果结合在一起,以动态源电流并测量小的,预扩增的电位。每个电流/电压探针的有效输入阻抗可以通过软件设置,允许任何给定的接触以开路电压为导线或实际接地的电流源/接收器。这可以实现测量配置的编程切换,并允许在多个排水接触处进行电流的测量,而无需使用当前的前置放大器。我们的32通道实施依赖于市售的数字输入/输出板,自制电压前置放大器和自定义开源软件。通过反馈锁定,我们展示了与广泛使用的市售锁定放大器相当的差异测量灵敏度,并对扭曲的双层石墨烯和$ SRTIO_3 $量子点接触进行有效的多端电运输测量。反馈锁定还可以使我们在弹道石墨烯设备上演示的新型电流偏见测量。
We present the design and implementation of a measurement system that enables parallel drive and detection of small currents and voltages at numerous electrical contacts to a multi-terminal electrical device. This system, which we term a feedback lock-in, combines digital control-loop feedback with software-defined lock-in measurements to dynamically source currents and measure small, pre-amplified potentials. The effective input impedance of each current/voltage probe can be set via software, permitting any given contact to behave as an open-circuit voltage lead or as a virtually grounded current source/sink. This enables programmatic switching of measurement configurations and permits measurement of currents at multiple drain contacts without the use of current preamplifiers. Our 32-channel implementation relies on commercially available digital input/output boards, home-built voltage preamplifiers, and custom open-source software. With our feedback lock-in, we demonstrate differential measurement sensitivity comparable to a widely used commercially available lock-in amplifier and perform efficient multi-terminal electrical transport measurements on twisted bilayer graphene and $SrTiO_3$ quantum point contacts. The feedback lock-in also enables a new style of current-biased measurement which we demonstrate on a ballistic graphene device.