TY - JOUR
T1 - Interplay between single particle coherence and kinetic energy driven superconductivity in doped cuprates
AU - Ma, Tianxing
AU - Guo, Huaiming
AU - Feng, Shiping
PY - 2004/7/30
Y1 - 2004/7/30
N2 - Within the kinetic energy driven superconducting mechanism, the interplay between the single particle coherence and superconducting instability in doped cuprates is studied. The superconducting transition temperature increases with increasing doping in the underdoped regime, and reaches a maximum in the optimal doping, then decreases in the overdoped regime, however, the values of this superconducting transition temperature in the whole superconducting range are suppressed to low temperature due to the single particle coherence. Within this superconducting mechanism, we calculate the dynamical spin structure factor of cuprate superconductors, and reproduce all main features of inelastic neutron scattering experiments in the superconducting-state.
AB - Within the kinetic energy driven superconducting mechanism, the interplay between the single particle coherence and superconducting instability in doped cuprates is studied. The superconducting transition temperature increases with increasing doping in the underdoped regime, and reaches a maximum in the optimal doping, then decreases in the overdoped regime, however, the values of this superconducting transition temperature in the whole superconducting range are suppressed to low temperature due to the single particle coherence. Within this superconducting mechanism, we calculate the dynamical spin structure factor of cuprate superconductors, and reproduce all main features of inelastic neutron scattering experiments in the superconducting-state.
KW - Commensurate resonance
KW - Doped cuprates
KW - Incommensurate scattering
KW - Single particle coherence
KW - Superconductivity
UR - https://www.scopus.com/pages/publications/14244263815
U2 - 10.1142/S0217984904007438
DO - 10.1142/S0217984904007438
M3 - 文章
AN - SCOPUS:14244263815
SN - 0217-9849
VL - 18
SP - 895
EP - 907
JO - Modern Physics Letters B
JF - Modern Physics Letters B
IS - 17
ER -