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相关论文: The superconducting state in the B2H6 compound at …

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The thermodynamic parameters of the superconducting state, that induces in ${\rm Si_{2}H_{6}}$ under the pressure at 275 GPa, have been calculated. In the framework of the Eliashberg formalism, it has been shown that the critical…

超导电性 · 物理学 2015-06-11 R. Szczȩśniak , A. P. Durajski

The ab initio calculations suggest that the superconducting state in CaH6 under the pressure at 150 GPa has the highest critical temperature among the examined hydrogen-rich compounds. For this reason, the relevant thermodynamic parameters…

超导电性 · 物理学 2013-09-17 R. Szczesniak , A. P. Durajski

A superconducting state, that induces in ${\rm GeH_{4}}$ under the pressure at 20 GPa, is being characterized by a high critical temperature $T_{C}\in<54.54,31.23>$ K, for a wide range of the Coulomb pseudopotential…

超导电性 · 物理学 2016-08-14 R. Szczęśniak , A. P. Durajski , D. Szczęśniak

The present paper determines the thermodynamic properties of the superconducting state in the ${\rm H_{2}S}$ compound. The values of the pressure from $130$ GPa to $180$ GPa were taken into consideration. The calculations were performed in…

超导电性 · 物理学 2015-05-21 Artur P. Durajski , Radoslaw Szczesniak , Yinwei Li

The thermodynamic parameters of the superconducting state in PtH at the pressure 76 GPa have been examined. The calculations have been carried out in the framework of the Eliashberg formalism. It has been found that the critical temperature…

超导电性 · 物理学 2015-10-28 R. Szczȩśniak , D. Szczȩśniak , K. M. Huras

The paper determines the thermodynamic parameters of the superconducting state in the metallic atomic hydrogen under the pressure at $1$ TPa, $1.5$ TPa, and $2.5$ TPa. The calculations were conducted in the framework of the Eliashberg…

超导电性 · 物理学 2016-07-20 A. M. Duda , R. Szczęśniak , M. A. Sowińska , A. H. Kosiacka

The thermodynamic parameters of the superconducting state in Calcium under the pressure at 200 GPa were calculated. The Coulomb pseudopotential values ($\mu^{\star}$) from 0.1 to 0.3 were taken into consideration. It has been shown, that…

超导电性 · 物理学 2012-04-23 R. Szczęśniak , A. P. Durajski

In the framework of strong-coupling formalism, we have calculated the thermodynamic parameters of superconducting state in the ${\rm YB_{6}}$ compound. The values of critical temperature ($T_{C}$) are $9.5$~K and $7.9$~K for the Coulomb…

超导电性 · 物理学 2018-08-15 A. M. Bujak , K. A. Szewczyk , M. Kostrzewa , K. M. Szczȩśniak , M. A. Sowińska

The thermodynamic parameters of the superconducting state in calcium under the pressure at 161 GPa have been calculated within the framework of the Eliashberg approach. It has been shown that the value of the Coulomb pseudopotential is high…

超导电性 · 物理学 2012-07-03 R. Szczȩśniak , D. Szczȩśniak

The ab initio calculations suggest (Y. Ma et al.), that the high-pressure ($p=200$~GPa) superconducting state in $\rm{BiH_{5}}$ and $\rm{BiH_{6}}$ compounds characterizes with a high value of the critical temperature ($T_{C}\sim 100$~K).…

超导电性 · 物理学 2018-07-04 M. W. Jarosik , E. A. Drzazga , I. A. Domagalska , K. M. Szczęśniak , U. Stępień

In the paper, the thermodynamic parameters of the high-pressure superconducting state in the SiH$_4$ compound have been determined ($p=250$ GPa). By using the Eliashberg equations in the mixed representation, the critical temperature, the…

超导电性 · 物理学 2015-06-15 R. Szczesniak , A. P. Durajski

The detailed study of the selected thermodynamic properties of the superconducting phase in the molecular hydrogen under the pressure at 428 GPa has been presented. For the increasing value of the Coulomb pseudopotential,…

超导电性 · 物理学 2023-07-19 R. Szczesniak , M. W. Jarosik

In the paper, the thermodynamic properties of the CaLi$_2$ superconductor have been studied. It has been assumed the high value of the pressure: $p=100$ GPa. The thermodynamic critical field ($H_{C}$) and the specific heats for the…

超导电性 · 物理学 2016-08-14 R. Szczęśniak , A. P. Durajski , P. W. Pach

The thermodynamic parameters of the superconducting state in Calcium under the pressure at 200 GPa have been determined. The numerical analysis by using the Eliashberg equations in the mixed representation has been conducted. It has been…

超导电性 · 物理学 2012-06-27 R. Szczęśniak , A. P. Durajski

The thermodynamic properties of the superconducting state in the amorphous ${\rm Sn_{1-x}Cu_{x}}$ thin films have been characterized. The concentration of copper changes in the range from $0.08$ to $0.41$. The calculations have been…

超导电性 · 物理学 2016-10-23 E. A. Drzazga , R. Szczęśniak , I. A. Domagalska , and K. Piwowarska

The critical temperature ($T_{C}$) and the energy gap ($2\Delta(T)$) for the superconductor SiH$_4$(H$_2$)$_2$ at 250 GPa have been calculated. The wide range of the Coulomb pseudopotential's values has been considered:…

超导电性 · 物理学 2012-12-12 R. Szczȩśniak , A. P. Durajski

The superconducting state in vanadium characterizes with the critical temperature ($T_{c}$) equal to $5.3$~K. The Coulomb pseudopotential, calculated with the help of the Eliashberg equations, possesses anomalously high value…

超导电性 · 物理学 2017-07-27 E. A. Drzazga , I. A. Domagalska , M. W. Jarosik , R. Szczȩśniak , J. K. Kalaga

The thermodynamic properties of the superconducting state induced in metallic molecular hydrogen under the influence of pressure 347 GPa were determined. In particular, it has been shown that the critical temperature ($T_{C}$) changes in…

超导电性 · 物理学 2012-04-24 R. Szczęśniak , M. W. Jarosik

The thermodynamic properties of the superconducting state in Sulphur under the pressure at 160 GPa were determined. It has been shown that: (i) the critical value of the Coulomb pseudopotential is equal to 0.127; (ii) the critical…

超导电性 · 物理学 2016-08-14 A. P. Durajski , R. Szczęśniak , M. W. Jarosik

The free energy difference between the superconducting and normal state for Calcium under the pressure at 120 GPa has been determined. The numerical calculations have been made in the framework of the imaginary axis Eliashberg approach. On…

超导电性 · 物理学 2012-04-23 R. Szczęśniak , A. P. Durajski , M. W. Jarosik
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