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A theoretical insight into an isentropic strategy for enhancing magnetoelectric coupling of organic multiferroics

机译:一种理论上深入了解增强有机多法学磁电耦合的概要策略

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摘要

The cross-coupling between magnetic and ferroelectric orders in spin-driven organic multiferroics provides great potential for realizing multi-state logic memory. Creating strong magnetoelectric coupling around room-temperature is the key to eliminate the main roadblock for practical application. Herein, quantum correlation controlled means are employed to tune the transition temperature T-C = 300 K, as the optimal operating temperature. After that, based on the magnetocaloric or electrocaloric effect, a temperature mediated mechanism is proposed to enhance magnetoelectric coupling within an isentropic rather than an isothermal process. Furthermore, a moderate magnetic field combined with a relatively weak electric field can jointly control and dramatically enhance the isentropic magnetoelectric coupling around room-temperature.
机译:旋转有机多法系中磁性和铁电订单之间的交叉耦合提供了实现多状态逻辑存储器的巨大潜力。 在室温下创建强电磁联轴器是消除实际应用的主要障碍的关键。 这里,使用量子相关控制装置调节过渡温度T-C = 300k,作为最佳操作温度。 之后,基于磁热或电热效应,提出了一种温度介导的机理,以增强驻罗内的磁电耦合而不是等温法。 此外,与相对弱的电场组合的适度磁场可以共同控制并显着增强室温周围的等熵磁电联接器。

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