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CLASSICAL AND QUANTUM MAGNETIC PHENOMENA IN NATURAL AND ARTIFICIAL FERRITIN PROTEINS

机译:天然和人工铁素体蛋白中的经典和量子磁性现象

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Artificial ferritin has been synthesized with control of both the magnetic state (antiferromagnetic or ferrimagnetic) and the particle size over an order of magnitude in the number of iron atoms. The magnetic properties of the artificial ferritin were compared with those of natural horse spleen ferritin in a range of temperatures (20 millikelvin to 300 kelvin) and fields (1 nanotesla to 27 tesla). In the classical regime, the blocking temperature was found to correlate with the average particle size. A correlation was also observed in the quantum regime between the resonance frequency of macroscopic quantum tunneling of the Neel vector and the particle size. At high magnetic fields (to 27 tesla), a spin flop transition with a strong dependence on orientation was seen in the natural ferritin, providing evidence of antiferromagnetism in this system.
机译:已经在控制铁原子数的数量级的磁性状态(反铁磁性或亚铁磁性)和粒径的同时合成了人工铁蛋白。在温度范围(20毫ikelvin至300开尔文)和磁场(1纳米特斯拉至27特斯拉)的范围内,将人工铁蛋白的磁性与天然马脾铁蛋白的磁性进行了比较。在经典方案中,发现封端温度与平均粒径相关。 Neel向量的宏观量子隧穿的共振频率与粒径之间的量子关系中也观察到相关性。在高磁场(达到27特斯拉)下,在天然铁蛋白中看到了与取向密切相关的自旋翻转转变,为该系统中的反铁磁性提供了证据。

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