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NanoSQUID magnetometry of individual cobalt nanoparticles grown by focused electron beam induced deposition

机译:通过聚焦电子束诱导沉积种植的单个钴纳米粒子的纳米模磁体

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摘要

We demonstrate the operation of low-noise nano superconducting quantum interference devices (SQUIDs) based on the high critical field and high critical temperature superconductor YBa2Cu3O7 (YBCO) as ultra-sensitive magnetometers for single magnetic nanoparticles (MNPs). The nanoSQUIDs exploit the Josephson behavior of YBCO grain boundaries and have been patterned by focused ion beam milling. This allows us to precisely define the lateral dimensions of the SQUIDs so as to achieve large magnetic coupling between the nanoloop and individual MNPs. By means of focused electron beam induced deposition, cobalt MNPs with a typical size of several tens of nm have been grown directly on the surface of the sensors with nanometric spatial resolution. Remarkably, the nanoSQUIDs are operative over extremely broad ranges of applied magnetic field (-1 T < mu H-0< 1 T) and temperature (0.3 K < T < 80 K). All these features together have allowed us to perform magnetization measurements under different ambient conditions and to detect the magnetization reversal of individual Co MNPs with magnetic moments (1-30) x 10(6) mu(B). Depending on the dimensions and shape of the particles we have distinguished between two different magnetic states yielding different reversal mechanisms. The magnetization reversal is thermally activated over an energy barrier, which has been quantified for the (quasi) single-domain particles. Our measurements serve to show not only the high sensitivity achievable with YBCO nanoSQUIDs, but also demonstrate that these sensors are exceptional magnetometers for the investigation of the properties of individual nanomagnets.
机译:我们证明了基于高临界场和高临界温度超导体YBA2CU3O7(YBCO)作为单磁性纳米颗粒(MNP)的超敏磁力计的低噪声纳米超导量子干扰装置(Squids)的操作。纳米态分布了YBCO晶界的约瑟夫森行为,并通过聚焦离子束铣削进行了图案化。这使我们能够精确地限定鱿鱼的横向尺寸,以便在纳米和单独的MNP之间实现大的磁耦合。通过聚焦电子束诱导的沉积,具有典型尺寸的典型尺寸为几十个NM的钴MNP直接在具有纳米空间分辨率的传感器的表面上生长。值得注意的是,纳米管道在施加的磁场(-1 T

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