论文标题
超导性的统一描述:电子密度动态对Brillouin区边界驱动的真实空间电子孔配对的反应,其特征是CP对称性
A Unified Description of Superconductivity: Electron Density Dynamic's Response to Phonons at the Brillouin Zone Boundary Driven Real Space Electron-Hole Pairing Characterized by CP Symmetry
论文作者
论文摘要
It is argued that electron density dynamic's response to phonons at the Brillouin zone boundary is the key factor in the superconductivity mechanism of MgB2 as well as of all superconducting compounds leading to a real space electron-hole pairing characterized by CP symmetry (Charge and Parity symmetries) that enables a unified description of superconductivity phenomenon.First principle calculation of the electron density difference is determined by减去晶体的电子密度,该晶体的电子密度与完美晶体的边界处的纵向声音子扭曲。该电子密度动态对这种失真的响应的起源是在实际的空间孔中通过CP对称性粘附的真实太空孔配对,该孔由CP对称性进行了讨论,该响应是由局部性转换和荷兰传递的转换而导致的,或者是由Olderization dyromized转移的转换。杂交。这种方法还提供了清晰,快速的准则,以寻找新的超导体。
It is argued that electron density dynamic's response to phonons at the Brillouin zone boundary is the key factor in the superconductivity mechanism of MgB2 as well as of all superconducting compounds leading to a real space electron-hole pairing characterized by CP symmetry (Charge and Parity symmetries) that enables a unified description of superconductivity phenomenon.First principle calculation of the electron density difference is determined by subtracting the electron density of the crystal distorted by longitudinal acoustical phonons at the Brillouin zone boundary from that of the perfect crystal.The origin of this electron density dynamic's response to this kind of distortion that leads to in real space electron hole pairing caracterized by CP symmetry is discussed in terms of local polarizabilities and delocalized transfer of charge caused by phonon-distortion driven dynamical change of orbital hybridization. This approach also provides clear and quick guidelines in the search for a new superconductors.