On the charged boson gas model as a theory of high Tc superconductivity
arXiv:1402.6241
Abstract
We consider a hypothetical bound state of two electrons even if we leave the binding mechanism unknown. The bound electron pairs should behave as bosons and we conclude that the paired electrons are 'apparently' in the highest energy states of all the occupied states. We call this multi-particle state an 'apparent' Fermi surface. Then the solid in concern must be a type 2 superconductor for a charged boson fluid is theoretically known to be as such. Moreover the Bose-Einstein condensation is known to be closely related to the critical temperatures of high Tc superconductors, which is consistent with our model. Most notably the model may describe a superconductor either with or without a Fermi surface. We propose two experimental methods to detect a bound electron pair, low energy electron-electron scattering and photoemission from high Tc superconductors.
18 pages. The possibility that the excess energy might be negative has been additionally discussed. Detection of bound pair by photoemission has been rewritten with the diverse possibilities being considered. This will be the final version
References in corpus (7)
- Quantum oscillations and the Fermi surface in an underdoped high-Tc superconductor
- A multi-component Fermi surface in the vortex state of an underdoped high-Tc superconductor
- Spin dynamics in the pseudogap state of a high-temperature superconductor
- Universal quantum oscillations in the underdoped cuprate superconductors
- Condensation, excitation, pairing, and superfluid density in high- superconductors: magnetic resonance mode as a roton analogue and a possible spin-mediated pairing
- The Origin and Non-quasiparticle Nature of Fermi Arcs in BiSrCaCuO
- BCS theory of superconductivity: the world's largest Madoff scheme?