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Magnetism and Magnetic Materials: Design and validation of magnetic particle spectrometer for characterization of magnetic nanoparticle relaxation dynamics

机译:磁性和磁性材料:用于表征磁性纳米粒子弛豫动力学的磁性粒子光谱仪的设计和验证

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摘要

The design and validation of a magnetic particle spectrometer (MPS) system used to study the linear and nonlinear behavior of magnetic nanoparticle suspensions is presented. The MPS characterizes the suspension dynamic response, both due to relaxation and saturation effects, which depends on the magnetic particles and their environment. The system applies sinusoidal excitation magnetic fields varying in amplitude and frequency and can be configured for linear measurements (1 mT at up to 120 kHz) and nonlinear measurements (50 mT at up to 24 kHz). Time-resolved data acquisition at up to 4 MS/s combined with hardware and software-based signal processing allows for wide-band measurements up to 50 harmonics in nonlinear mode. By cross-calibrating the instrument with a known sample, the instantaneous sample magnetization can be quantitatively reconstructed. Validation of the two MPS modes are performed for iron oxide and cobalt ferrite suspensions, exhibiting Néel and Brownian relaxation, respectively.
机译:介绍了用于研究磁性纳米粒子悬浮液线性和非线性行为的磁性粒子光谱仪(MPS)系统的设计和验证。由于松弛和饱和效应,MPS表征了悬架的动态响应,这取决于磁性粒子及其环境。该系统施加振幅和频率变化的正弦激励磁场,可以配置用于线性测量(在120 kHz时为1 mT)和非线性测量(在24 kHz时为50 mT)。高达4 MS / s的时间分辨数据采集与基于硬件和软件的信号处理相结合,可以在非线性模式下进行高达50次谐波的宽带测量。通过用已知样品对仪器进行交叉校准,可以定量重建瞬时样品磁化强度。对氧化铁和钴铁氧体悬浮液分别表现出Néel和布朗弛豫的两种MPS模式进行了验证。

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