论文标题
镍复合物[Ni4(CO3)2(aetpy)8](clo4)4的磁化高原性质的见解。
Insights into nature of magnetization plateaus of a nickel complex [Ni4(CO3)2(aetpy)8](ClO4)4 from a spin-1 Heisenberg diamond cluster
论文作者
论文摘要
根据KAMBE的方法,研究了具有两个不同耦合常数的自旋1海森堡钻石簇的磁性和磁联性性能,该钻石簇具有两个不同的耦合常数,该方法基于KAMBE的方法,该方法采用了位于钻石旋转群体相对角的Spin-1实体形成的局部保护复合旋转的局部保护。结果表明,Spin-1 Heisenberg Diamond簇表现出几种有趣的量子基态,在低温磁化曲线中表现为饱和磁化的1/4、1/2和3/4的中间高原。此外,Spin-1 Heisenberg Diamond簇也可能表现出增强的磁笼效应,这可能与通过绝热消除灭菌实现的低温制冷有关。可以证明,带有抗铁磁耦合常数J1/KB = 41.4 K和J2/KB = 9.2 K = 9.2 K的Spin-1 Heisenberg Diamond簇令人满意地复制了低体温磁化曲线,记录了Tetranuclear Nickel Compless [ni4(co3)2(aeetpy)2(a aetpy)8](a aetpy = aety = a aety = ni nike) 2-氨基乙基吡啶)包括在饱和磁化的1/2和3/4时检测到的中间高原的大小和位置。实验观察到的分数磁化高原的微观性质是用单个或双价键的价键晶体来澄清和解释的。有人建议,这种沮丧的磁分子可以提供前瞻性低温冷却剂,最大等温熵变化-Delta s = 10.6 j/(k.kg),温度范围低于2.3 k。
Magnetic and magnetocaloric properties of a spin-1 Heisenberg diamond cluster with two different coupling constants are investigated with the help of an exact diagonalization based on the Kambe's method, which employs a local conservation of composite spins formed by spin-1 entities located in opposite corners of a diamond spin cluster. It is shown that the spin-1 Heisenberg diamond cluster exhibits several intriguing quantum ground states, which are manifested in low-temperature magnetization curves as intermediate plateaus at 1/4, 1/2 and 3/4 of the saturation magnetization. Besides, the spin-1 Heisenberg diamond cluster may also exhibit an enhanced magnetocaloric effect, which may be relevant for a low-temperature refrigeration achieved through the adiabatic demagnetization. It is evidenced that the spin-1 Heisenberg diamond cluster with the antiferromagnetic coupling constants J1/kB = 41.4 K and J2/kB = 9.2 K satisfactorily reproduces a low-temperature magnetization curve recorded for the tetranuclear nickel complex [Ni4(CO3)2(aetpy)8](ClO4)4 (aetpy = 2-aminoethyl-pyridine) including a size and position of intermediate plateaus detected at 1/2 and 3/4 of the saturation magnetization. A microscopic nature of fractional magnetization plateaus observed experimentally is clarified and interpreted in terms of valence-bond crystal with either a single or double valence bond. It is suggested that this frustrated magnetic molecule can provide a prospective cryogenic coolant with the maximal isothermal entropy change - Delta S = 10.6 J/(K.kg) in a temperature range below 2.3 K.