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T_(c) Enhancement Induced by Quantum Ionic Vibrations in Compressed Stannane of P6_(3)/mmc Phase

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摘要 High-pressure hydrides have emerged as promising superconducting materials,attracting considerable attention in recent years.In this work,by combining the stochastic self-consistent harmonic approximation with first-principles calculations,we elucidate crucial corrections to the vibrational and superconducting properties arising from quantum and anharmonic ionic vibrations of SnH4 in P63/mmc phase at 150–240 GPa.Compared with the classical harmonic approximation,inclusion of these effects results in a pronounced softening(over 500 cm^(−1))of hydrogen-derived optical phonon modes,and increases the superconducting critical temperature(Tc)from 65 K to 79 K(μ^(*)=0.1;isotropic Migdal–Eliashberg theory),corresponding to a 22%enhancement.For μ^(*)=0.13,the predicted Tc is approximately 70 K.Analysis of the Eliashberg spectral function confirms that hydrogen vibrational modes constitute the dominant tuning mechanism.These results provide quantitative insights into quantum ionic effects in hydride superconductors.
作者 Mi Pang Pugeng Hou Mingqi Li Wenjia Shi Yao Ma 庞蜜;侯朴赓;李明奇;史文佳;马遥
出处 《Chinese Physics Letters》 2026年第3期260-269,共10页 中国物理快报(英文版)
基金 supported by the Scientific Research Program Funded by Shaanxi Provincial Education Department (Grant No.24JP126) the National Natural Science Foundation of China (Grant No.62174136) the Natural Science Basic Research Program of Shaanxi Province (Grant No.2025JC-YBMS-063)。
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