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Ba3MxTi3-xO9 (M = Ir, Rh): A family of 5d/4d-based diluted quantum spin liquids

机译:Ba3MxTi3-xO9(M = Ir,Rh):一族基于5d / 4d的稀释量子自旋液体

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We report the structural and magnetic properties of the 4d (M = Rh) based and 5d ( M = Ir) based systems Ba3MxTi3-xO9 ( nominally x = 0.5, 1). The studied compositions were found to crystallize in a hexagonal structure with the centrosymmetric space group P6(3)/mmc. The structures comprise of A(2)O(9) polyhedra [ with the A site ( possibly) statistically occupied by M and Ti] in which pairs of transition metal ions are stacked along the crystallographic c axis. These pairs form triangular bilayers in the ab plane. The magnetic Rh and Ir ions occupy these bilayers, diluted by Ti ions even for x = 1. These bilayers are separated by a triangular layer which is dominantly occupied by Ti ions. From magnetization measurements we infer strong antiferromagnetic couplings for all of the materials but the absence of any spin-freezing or spin-ordering down to 2 K. Further, specific heat measurements down to 0.35 K show no sign of a phase transition for any of the compounds. Based on these thermodynamic measurements we propose the emergence of a quantum spin liquid ground state for Ba(3)Rh(0.)5Ti(2.5)O(9), and Ba3Ir0.5Ti2.5O9, in addition to the already reported Ba3IrTi2O9.
机译:我们报告了基于4d(M = Rh)和5d(M = Ir)的系统Ba3MxTi3-xO9(名义上x = 0.5,1)的结构和磁性。发现所研究的组成以具有中心对称空间群P6(3)/ mmc的六边形结构结晶。该结构包括A(2)O(9)多面体[A位置(可能被M和Ti统计占据)],其中过渡金属离子对沿晶体c轴堆叠。这些对在ab平面中形成三角形双层。磁性Rh和Ir离子占据了这些双层,即使x = 1,也被Ti离子稀释。这些双层被三角形层隔开,该三角形层主要被Ti离子占据。根据磁化测量,我们推断出所有材料都具有强反铁磁耦合,但是没有任何自旋冻结或自旋序低至2K。此外,低至0.35 K的比热测量没有显示任何一种材料的相变迹象。化合物。基于这些热力学测量,除了已经报道的Ba3IrTi2O9,我们还提出了Ba(3)Rh(0.)5Ti(2.5)O(9)和Ba3Ir0.5Ti2.5O9的量子自旋液态基态的出现。

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