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An integrated superconductive magnetic nanosensor for high-sensitivity nanoscale applications

机译:集成的超导磁性纳米传感器,用于高灵敏度纳米级应用

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摘要

An integrated magnetic nanosensor based on a niobium dc SQUID (superconducting quantum interference device) for nanoscale applications is presented. The sensor, having a washer shape with a hole of 200 nm and two Josephson-Dayem nanobridges of 80 nm x 100 nm, consists of a Nb(30 nm)/Al(30 nm) bilayer patterned by electron beam lithography (EBL) and shaped by lift-off and reactive ion etch (RIE) processes. The presence of the niobium coils, integrated on-chip and tightly coupled to the SQUID, allows us to easily excite the sensor in order to get the voltage-flux characteristics and to flux bias the SQUID at its optimal point. The measurements were performed at liquid helium temperature. A voltage swing of 75 mu V and a maximum voltage-flux transfer coefficient (responsivity) as high as 1 mV/Phi(0) were directly measured from the voltage-flux characteristic. The noise measurements were performed in open loop mode, biasing the SQUID with a dc magnetic flux at its maximum responsivity point and using direct-coupled low-noise readout electronics. A white magnetic flux noise spectral density as low as 2.5 mu Phi(0) Hz(-1/2) was achieved, corresponding to a magnetization or spin sensitivity in units of the Bohr magneton of 100 spin Hz(-1/2). Possible applications of this nanosensor can be envisaged in magnetic detection of nanoparticles and small clusters of atoms and molecules, in the measurement of nanoobject magnetization, and in quantum computing.
机译:提出了一种基于铌dc SQUID(超导量子干涉装置)的集成磁性纳米传感器,用于纳米级应用。该传感器具有带200 nm孔的垫圈形状和两个80 nm x 100 nm的Josephson-Dayem纳米桥,由通过电子束光刻(EBL)图案化的Nb(30 nm)/ Al(30 nm)双层和通过剥离和反应离子刻蚀(RIE)工艺成型。集成在芯片上并紧密耦合到SQUID的铌线圈的存在,使我们能够轻松激发传感器,以获得电压通量特性并在其最佳点上对SQUID进行磁通偏置。测量在液氦温度下进行。从电压通量特性直接测量出75μV的电压摆幅和高达1 mV / Phi(0)的最大电压通量传递系数(响应度)。噪声测量是在开环模式下进行的,使用直流磁通量在其最大响应点处对SQUID进行偏置,并使用直接耦合的低噪声读出电子设备。实现了低至2.5μPhi(0)Hz(-1/2)的白磁通噪声频谱密度,对应于以100自旋Hz(-1/2)的玻尔磁子为单位的磁化或自旋灵敏度。可以设想该纳米传感器的可能应用在纳米粒子以及原子和分子的小簇的磁检测,纳米物体磁化的测量以及量子计算中。

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