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Magnetic Nanoparticle Characterization Using Nano-SQUID based on Niobium Dayem Bridges

机译:基于铌Dayem桥的Nano-SQUID的磁性纳米粒子表征

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摘要

gnetic nano-sensors based on niobium dc SQUID (Superconducting Quantum Interference Device) for nanoparticle characterization are presented. The SQUIDs consists of two Dayem bridges of 90 nm x 250 nm and loop area of 4, 1 and 0.55 mu m(2). The SQUIDs were designed to have a hysteretic current-voltage characteristic in order to work as a magnetic flux-current transducer. Current-voltage characteristics, critical current as a function of the external magnetic field and switching current distributions were performed at liquid helium temperature. A critical current modulation of about 20% and a current-magnetic flux transfer coefficient (responsivity) of 30 mu A/Phi(0) have been obtained, resulting in a magnetic flux resolution better than 1 m Phi(0). In order to show the effectiveness of sensor for nanomagnetism applications, we performed measurements with and without magnetic nanoparticles on the SQUID loop applying a magnetic field parallel to the SQUID plane. In this configuration the magnetic flux coupled to the SQUID is mainly due to the presence of magnetic nanoparticles. The magnetic nanoparticles can be easily detected and their response to magnetic field studied. \ud\udMeasurements has been performed on Fe3O4 nanoparticles prepared by thermal decomposition method with a nominal particle size of 8 nm. Some examples of magnetization measurements were recorded at low temperature after Zero Field Cooling.
机译:提出了一种基于铌dc SQUID(超导量子干涉仪)的纳米纳米传感器,用于纳米粒子的表征。 SQUID由两个90 nm x 250 nm的Dayem电桥和4、1、5和0.55μm(2)的环路面积组成。 SQUID设计为具有磁滞电流-电压特性,以用作磁通量-电流传感器。在液氦温度下进行电流-电压特性,作为外部磁场的函数的临界电流和开关电流分布。已获得约20%的临界电流调制和30μA/ Phi(0)的电流-磁通量传递系数(响应度),从而导致磁通分辨率优于1 m Phi(0)。为了显示传感器在纳米磁性应用中的有效性,我们在施加或不施加磁性纳米粒子的情况下,在平行于SQUID平面的磁场下对SQUID回路进行了测量。在这种配置中,耦合到SQUID的磁通量主要是由于存在磁性纳米颗粒。磁性纳米粒子可以很容易地检测到,并研究其对磁场的响应。对通过热分解法制备的标称粒径为8 nm的Fe3O4纳米颗粒进行了测量。零磁场冷却后在低温下记录了一些磁化测量的例子。

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