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Structural, electronic, vibrational, and superconducting properties of hydrogenated chlorine

机译:氢化氯的结构,电子,振动和超导性能

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Recent measurements have set a new record for the superconducting transition temperature (T-c) at which a material losses electrical resistivity and exhibits ideal diamagnetism. Theory-oriented experiments show that the compressed hydride of Group VI (hydrogen sulfide, H3S) exhibits a superconducting state at 203 K. Moreover, a Group V hydride (phosphorus hydride, PH3) has also been studied and its T-c reached a maximum of 103 K. The experimental realisation of the superconductivity in H3S and PH3 inspired us to search for other hydride superconductors. Herein, we report theoretical studies of the electronic, vibrational, and superconducting properties of hydrogenated chlorine (H3Cl, representative of the Group VII hydride). First-principles calculations performed for H3Cl in the pressure range 150-250 GPa show that the investigated Im (3) over barm phase has a large electronphonon coupling parameter and the resulting application of the Migdal-Eliashberg formalism yields a remarkably high superconducting temperature of 198 K at 150 GPa. Published by AIP Publishing.
机译:最近的测量设定了用于超导转变温度(T-C)的新记录,其中材料损失电阻率并且表现出理想的抗磁场。理论导向的实验表明,VI(硫化氢,H3S)的压缩氢化物在203k下表现出超导状态。此外,还研究了v氢化物(磷酸磷,pH3),其TC最多达到103 K. H3S和PH3中超导性的实验性实现启发了我们寻找其他氢化物超导体。在此,我们报告了氢化氯的电子,振动和超导性能的理论研究(H3Cl,族氢化物的代表)。对于H3CL在压力范围内的第一原理计算,在150-250GPa中,CARMIDATED IM(3)在BARM相中具有大型电偶联参数,并且所得到的MIGDAL-ELIASHBERG形式的应用产生了一个非常高的超导温度为198 k在150 GPA。通过AIP发布发布。

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