關鍵字查詢 | 類別:期刊論文 | | 關鍵字:Effect of Oxygen Concentration on Superconducting Properties of Rubidium Tungsten Bronzes RbxWOy

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序號 學年期 教師動態
1 95/2 物理系 林大欽 教授 期刊論文 發佈 Effect of Oxygen Concentration on Superconducting Properties of Rubidium Tungsten Bronzes RbxWOy , [95-2] :Effect of Oxygen Concentration on Superconducting Properties of Rubidium Tungsten Bronzes RbxWOy期刊論文Effect of Oxygen Concentration on Superconducting Properties of Rubidium Tungsten Bronzes RbxWOyTing, L. C.; Hsieh, H. H.; Kang, H. H.; Ling, D. C.; Liu, H. L.; Pong, W. F.; Chien, F. Z.; Hor, P. H.淡江大學物理學系New York: Springer New York LLCJournal of Superconductivity and Novel Magnetism 20(3), pp.249-253Superconducting transition temperature (T c) as a function of oxygen concentration for hexagonal rubidium tungsten bronzes Rb x WO y with 2.80 ≤ y ≤ 3.07 and x = 0.19, 0.23, and 0.27 has been systematically investigated. Three regions corresponding to T c < 2 K (denoted as superconductivity suppressed region), T c∼ 3 K (superconductivity uniform region) and T c > 3 K (superconductivity enhanced region) were identified in T c–y phase diagram for Rb0.19WO y and Rb0.23WO y . No superconductivity enhanced region was observed for Rb0.27WO y . The superconductivity suppressed region shifts toward
2 95/2 物理系 錢凡之 教授 期刊論文 發佈 Effect of Oxygen Concentration on Superconducting Properties of Rubidium Tungsten Bronzes RbxWOy , [95-2] :Effect of Oxygen Concentration on Superconducting Properties of Rubidium Tungsten Bronzes RbxWOy期刊論文Effect of Oxygen Concentration on Superconducting Properties of Rubidium Tungsten Bronzes RbxWOyTing, L.-C.; Hsieh, H.-H.; Kang, H.-H.; Ling, D.-C.; Liu, H.-L.; Pong, W.-F.; Chien, F.-Z.; Hor, P.-H.淡江大學物理學系rubidium tungsten bronzes; oxygen concentration; superconductivityKluwer Academic Publishers-Plenum PublishersJournal of Superconductivity and Incorporating Novel Magnetism 20(3), pp.249-253Superconducting transition temperature (T c) as a function of oxygen concentration for hexagonal rubidium tungsten bronzes Rb x WO y with 2.80 ≤ y ≤ 3.07 and x = 0.19, 0.23, and 0.27 has been systematically investigated. Three regions corresponding to T c < 2 K (denoted as superconductivity suppressed region), T c∼ 3 K (superconductivity uniform region) and T c > 3 K (superconductivity enhanced region) were identified in T c–y phase diagram for Rb0.19WO y and Rb0.23WOy. No superconductivity enhanced
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