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Properties of highly frustrated magnetic molecules studied by the finite-temperature Lanczos method

机译:有限温度Lanczos方法研究高度受挫的磁性分子的性质

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摘要

The very interesting magnetic properties of frustrated magnetic molecules are often hardly accessible due to the prohibitive size of the related Hilbert spaces. The finite-temperature Lanczos method is able to treat spin systems for Hilbert space sizes up to 109. Here we first demonstrate for exactly solvable systems that the method is indeed accurate. Then we discuss the thermal properties of one of the biggest magnetic molecules synthesized to date, the icosidodecahedron with antiferromagnetically coupled spins of s = 1/2. We show how genuine quantum features such as the magnetization plateau behave as a function of temperature.
机译:由于相关希尔伯特空间的尺寸过大,通常很难获得沮丧的磁性分子非常有趣的磁性。有限温度Lanczos方法能够处理最大109的希尔伯特空间尺寸的自旋系统。在这里,我们首先证明对于可精确求解的系统,该方法确实是准确的。然后,我们讨论迄今为止合成的最大磁性分子之一,具有s = 1/2的反铁磁耦合自旋的二十碳十二面体的热学性质。我们展示了真正的量子特征(如磁化平稳期)如何随温度变化。

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