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首页> 外文期刊>Nanoscale >Single-layer polymeric tetraoxa[8]circulene modified by s-block metals: toward stable spin qubits and novel superconductors
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Single-layer polymeric tetraoxa[8]circulene modified by s-block metals: toward stable spin qubits and novel superconductors

机译:单层聚合物tetraoxa [8] circulene修改s区金属:向稳定的旋转量子比特和新颖的超导体

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摘要

Tunable electronic properties of low-dimensional materials have been the object of extensive research, as such properties are highly desirable in order to provide flexibility in the design and optimization of functional devices. In this study, we account for the fact that such properties can be tuned by embedding diverse metal atoms and theoretically study a series of new organometallic porous sheets based on two-dimensional tetraoxa[8]circulene (TOC) polymers doped with alkali or alkaline-earth metals. The results reveal that the metal-decorated sheets change their electronic structure from semiconducting to metallic behaviour due to n-doping. Complete active space self-consistent field (CASSCF) calculations reveal a unique open-shell singlet ground state in the TOC-Ca complex, which is formed by two closed-shell species. Moreover, Ca becomes a doublet state, which is promising for magnetic quantum bit applications due to the long spin coherence time. Ca-doped TOC also demonstrates a high density of states in the vicinity of the Fermi level and induced superconductivity. Using the ab initio Eliashberg formalism, we find that the TOC-Ca polymers are phonon-mediated superconductors with a critical temperature T-C = 14.5 K, which is within the range of typical carbon based superconducting materials. Therefore, combining the proved superconductivity and the long spin lifetime in doublet Ca, such materials could be an ideal platform for the realization of quantum bits.
机译:可调电子低维的属性材料已经广泛的对象研究,因为这些属性是非常可取的为了提供在设计和灵活性优化功能的设备。研究中,我们考虑这样的事实属性可以被嵌入不同的调谐金属原子和一系列的理论研究基于新的有机金属多孔表二维tetraoxa [8] circulene (TOC)聚合物掺杂碱金属或碱土金属。metal-decorated表改变他们的电子从半导体到金属结构由于n-doping行为。自洽场理论(CASSCF)计算揭示了一个独特的开壳层单线态基态TOC-Ca复杂,是由两个闭壳的物种。紧身上衣的状态,这是磁性的承诺量子点的应用程序由于长旋转相干时间。高密度的州附近的费米能级和诱发超导。从头开始的Eliashberg形式主义,我们发现phonon-mediated TOC-Ca聚合物超导体的临界温度温度系数=14.5 K,这是典型的范围内基于碳的超导材料。因此,结合超导和紧身上衣,长旋转一生材料可以是一个理想的平台实现量子比特。

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