CuMn合金磁滞的量热研究

P. Gilberd, T. Duffield, C. Guy
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摘要

对自旋玻璃的磁滞回线的量热测量表明,能量变化发生在回路的那些腿上,这些腿对应于剩余磁化的反转,并且无论施加磁场的方向如何,它总是在加热。通过连续的滞后回路循环会导致样品加热和回路面积的巨大初始变化,这两个量趋于与温度无关的极限。尽管极限环偏离了原点,但两条不可逆腿上的热能变化大致相等,这表明剩磁反转时内部磁能发生了变化。本文认为,在初始磁化逆转中释放的能量可归因于相对自旋方向的不可逆重排,并且只有在极限环中,能量变化才完全代表磁化逆转的固有不可逆过程。
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Calorimetric studies of magnetic hysteresis in CuMn alloys
Calorimetric measurements on the hysteresis loop of the spin glass CuMn show that the energy changes take place on those legs of the loop which correspond to reversals of the remanent magnetisation and that it is always heating which occurs, irrespective of the direction of the applied magnetic field. Cycling through successive hysteresis loops causes large initial changes in sample heating and loop area, with both of these quantities tending to a temperature-independent limit. Although the limit cycle is displaced from the origin, the thermal energy changes on both irreversible legs are approximately equal, indicating a change of internal magnetic energy on reversal of the remanence. It is argued that the energy released in the initial magnetisation reversals is attributable to irreversible rearrangements of the relative spin directions and that it is only in the limit cycle that energy changes represent exclusively the intrinsic irreversible processes of magnetisation reversal.
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