An interpretation of the transport and magnetic relaxation properties of underdoped cuprates based on the recently proposed U(1) × SU(2) Chern-Simons gauge field theory is proposed, which takes into account the short-range antiferromagnetic order. The interplay of the doping-dependent spin-gap (explicitly derived by us) effect and dissipation due to gauge fluctuations gives rise to a crossover from metallic to insulating behaviour of the conductivity as temperature decreases, in semi-quantitative agreement with experimental data. For the same reason the magnetic relaxation rate shows a maximum nearby. Various crossover temperatures related to spin-gap effects are shown to be different manifestations of the same energy scale.

Gauge field theory of transport and magnetic relaxation in underdoped cuprates

MARCHETTI, PIERALBERTO;
2000

Abstract

An interpretation of the transport and magnetic relaxation properties of underdoped cuprates based on the recently proposed U(1) × SU(2) Chern-Simons gauge field theory is proposed, which takes into account the short-range antiferromagnetic order. The interplay of the doping-dependent spin-gap (explicitly derived by us) effect and dissipation due to gauge fluctuations gives rise to a crossover from metallic to insulating behaviour of the conductivity as temperature decreases, in semi-quantitative agreement with experimental data. For the same reason the magnetic relaxation rate shows a maximum nearby. Various crossover temperatures related to spin-gap effects are shown to be different manifestations of the same energy scale.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/1354950
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