配对
物理
凝聚态物理
等离子体子
超导电性
动量(技术分析)
费米子
玻色子
从玻色子
声子
电荷(物理)
库仑
量子力学
电子
赫巴德模型
经济
财务
作者
Abel Mukubwa,John W. Makokha
摘要
A Bose-Einstein condensate (BEC) of a nonzero momentum Cooper pair constitutes a composite boson or simply a boson. We demonstrated that the quantum coherence of the two-component BEC (boson and fermion condensates) is controlled by plasmons. It has been proposed that plasmons, observed in both electron-doped and hole-doped cuprates, originates from the long-range Coulomb screening, where the transfer momentum . We further show that the screening mediates boson-fermion pairing at condensate state. While only about 1 of plasmon energy mediates the charge pairing, most of the plasmon energy is used to overcome the modes that compete against superconductivity such as phonons, charge density waves, antiferromagnetism, and damping effects. Additionally, the dependence of frequency of plasmons on the material of a superconductor is also explored. This study gives a quantum explanation of the modes that enhance and those that inhibit superconductivity. The study informs the nature of electromagnetic radiations (EMR) that can enhance the critical temperature of such materials.
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