Title of article :
Spin–charge separation and electron pairing instabilities in Hubbard nanoclusters
Author/Authors :
Kocharian، نويسنده , , A.N. and Fernando، نويسنده , , G.W. and Palandage، نويسنده , , Baljit K. and Davenport، نويسنده , , J.W.، نويسنده ,
Pages :
8
From page :
1066
To page :
1073
Abstract :
Electron charge and spin pairing instabilities in various cluster geometries for attractive and repulsive electrons are studied exactly under variation of interaction strength, electron doping and temperature. The exact diagonalization, level crossing degeneracies, spin–charge separation and separate condensation of paired electron charge and opposite spins yield intriguing insights into the origin of magnetism, ferroelectricity and superconductivity seen in inhomogeneous bulk nanomaterials and various phenomena in cold fermionic atoms in optical lattices. Phase diagrams resemble a number of inhomogeneous, coherent and incoherent nanoscale phases found recently in high- T c cuprates, manganites and multiferroic nanomaterials probed by scanning tunneling microscopy. Separate condensation of electron charge and spin degrees at various crossover temperatures offers a new route for superconductivity, different from the BCS scenario. The calculated phase diagrams resemble a number of inhomogeneous paired phases, superconductivity, ferromagnetism and ferroelectricity found in Nb and Co nanoparticles. The phase separation and electron pairing, monitored by electron doping and magnetic field surprisingly resemble incoherent electron pairing in the family of doped high- T c cuprates, ruthenocuprates, iron pnictides and spontaneous ferroelectricity in multiferroic materials.
Keywords :
Ultra-cold fermions , High- T c superconductivity , Coherent and incoherent pairing , Spin–charge separation , Scanning tunneling microscopy , magnetism , Charge and spin pseudogaps
Journal title :
Astroparticle Physics
Record number :
2049724
Link To Document :
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