Here we present the direct observation of macroscopic quantum properties in an all high-criticaltemperature superconductor d-wave Josephson junction. Although dissipation caused by low-energy excitations is expected to strongly suppress macroscopic quantum effects, we demonstrate energy level quantization in our d-wave Josephson junction. The result indicates that the role of dissipation mechanisms in high-temperature superconductors has to be revised, and it may also have consequences for the class of solid-state ‘‘quiet’’ quantum bits with superior coherence time.

Quantum dynamics of a d-wave Josephson junction

TAFURI, Francesco;ROTOLI, Giacomo;
2006

Abstract

Here we present the direct observation of macroscopic quantum properties in an all high-criticaltemperature superconductor d-wave Josephson junction. Although dissipation caused by low-energy excitations is expected to strongly suppress macroscopic quantum effects, we demonstrate energy level quantization in our d-wave Josephson junction. The result indicates that the role of dissipation mechanisms in high-temperature superconductors has to be revised, and it may also have consequences for the class of solid-state ‘‘quiet’’ quantum bits with superior coherence time.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11591/189175
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